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Articles 901 - 930 of 2945

Full-Text Articles in Medical Specialties

Junctophilin-2 Regulates Mitochondrial Metabolism, Sasha Z Prisco, Lynn M Hartweck, Felipe Kazmirczak, Jenna B Mendelson, Stephanie L Deng, Madelyn Blake, Satadru K Lahiri, Xander H T Wehrens, Kurt W Prins Aug 2024

Junctophilin-2 Regulates Mitochondrial Metabolism, Sasha Z Prisco, Lynn M Hartweck, Felipe Kazmirczak, Jenna B Mendelson, Stephanie L Deng, Madelyn Blake, Satadru K Lahiri, Xander H T Wehrens, Kurt W Prins

Faculty, Staff and Students Publications

No abstract provided.


Epcam-Targeted Betulinic Acid Analogue Nanotherapy Improves Therapeutic Efficacy And Induces Anti-Tumorigenic Immune Response In Colorectal Cancer Tumor Microenvironment, Debasmita Dutta, Ashique Al Hoque, Brahamacharry Paul, Jun Hyoung Park, Chinmay Chowdhury, Mohiuddin Quadir, Soumyabrata Banerjee, Arghadip Choudhury, Soumik Laha, Nayim Sepay, Priyanka Boro, Benny Abraham Kaipparettu, Biswajit Mukherjee Aug 2024

Epcam-Targeted Betulinic Acid Analogue Nanotherapy Improves Therapeutic Efficacy And Induces Anti-Tumorigenic Immune Response In Colorectal Cancer Tumor Microenvironment, Debasmita Dutta, Ashique Al Hoque, Brahamacharry Paul, Jun Hyoung Park, Chinmay Chowdhury, Mohiuddin Quadir, Soumyabrata Banerjee, Arghadip Choudhury, Soumik Laha, Nayim Sepay, Priyanka Boro, Benny Abraham Kaipparettu, Biswajit Mukherjee

Faculty, Staff and Students Publications

Background: Betulinic acid (BA) has been well investigated for its antiproliferative and mitochondrial pathway-mediated apoptosis-inducing effects on various cancers. However, its poor solubility and off-target activity have limited its utility in clinical trials. Additionally, the immune modulatory role of betulinic acid analogue in the tumor microenvironment (TME) is largely unknown. Here, we designed a potential nanotherapy for colorectal cancer (CRC) with a lead betulinic acid analogue, named as 2c, carrying a 1,2,3-triazole-moiety attached to BA through a linker, found more effective than BA for inhibiting CRC cell lines, and was chosen here for this investigation. Epithelial cell adhesion molecule (EpCAM) …


A Single-Cell Transcriptomic Map Of The Developing Atoh1 Lineage Identifies Neural Fate Decisions And Neuronal Diversity In The Hindbrain, Jessica C Butts, Sih-Rong Wu, Mark A Durham, Ryan S Dhindsa, Jean-Pierre Revelli, M Cecilia Ljungberg, Olivier Saulnier, Madison E Mclaren, Michael D Taylor, Huda Y Zoghbi Aug 2024

A Single-Cell Transcriptomic Map Of The Developing Atoh1 Lineage Identifies Neural Fate Decisions And Neuronal Diversity In The Hindbrain, Jessica C Butts, Sih-Rong Wu, Mark A Durham, Ryan S Dhindsa, Jean-Pierre Revelli, M Cecilia Ljungberg, Olivier Saulnier, Madison E Mclaren, Michael D Taylor, Huda Y Zoghbi

Duncan NRI Faculty and Staff Publications

Proneural transcription factors establish molecular cascades to orchestrate neuronal diversity. One such transcription factor, Atonal homolog 1 (Atoh1), gives rise to cerebellar excitatory neurons and over 30 distinct nuclei in the brainstem critical for hearing, breathing, and balance. Although Atoh1 lineage neurons have been qualitatively described, the transcriptional programs that drive their fate decisions and the full extent of their diversity remain unknown. Here, we analyzed single-cell RNA sequencing and ATOH1 DNA binding in Atoh1 lineage neurons of the developing mouse hindbrain. This high-resolution dataset identified markers for specific brainstem nuclei and demonstrated that transcriptionally heterogeneous progenitors require ATOH1 for …


Immunoregulatory Properties Of Immune Cells That Associate With The Lens Capsule Surface During Acute And Resolution Phases Of Experimental Autoimmune Uveitis, Phuong M. Le, Mary J. Mattapallil, Rachel R. Caspi, Mary Ann Stepp, A. Sue Menko Aug 2024

Immunoregulatory Properties Of Immune Cells That Associate With The Lens Capsule Surface During Acute And Resolution Phases Of Experimental Autoimmune Uveitis, Phuong M. Le, Mary J. Mattapallil, Rachel R. Caspi, Mary Ann Stepp, A. Sue Menko

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Inflammation in the eye is tightly regulated to prevent vision impairment and irreversible blindness. Emerging evidence shows that immune cells are specifically recruited to the lens capsule in response to autoimmune uveitis, yet the potential that they have a role in regulating this inflammatory disease remained unexplored. Here, an immunolocalization approach combined with high-resolution confocal microscopy was used to investigate whether the immune cells that become stably associated with the lens capsule in the eyes of C57BL/6J mice with experimental autoimmune uveitis (EAU) have an immunoregulatory phenotype. These studies revealed that during the acute phase of uveitis, at day 18 …


Injectable, Reversibly Thermoresponsive Captopril-Laden Hydrogel For The Local Treatment Of Sensory Loss In Diabetic Neuropathy, Amit Chandra Das, James M Nichols, Caitlin V Crelli, Lu Liu, Riddhi Vichare, Hoang Vu Pham, Caitlyn M Gaffney, Fisher R Cherry, Peter M Grace, Andrew J Shepherd, Jelena M Janjic Aug 2024

Injectable, Reversibly Thermoresponsive Captopril-Laden Hydrogel For The Local Treatment Of Sensory Loss In Diabetic Neuropathy, Amit Chandra Das, James M Nichols, Caitlin V Crelli, Lu Liu, Riddhi Vichare, Hoang Vu Pham, Caitlyn M Gaffney, Fisher R Cherry, Peter M Grace, Andrew J Shepherd, Jelena M Janjic

Faculty, Staff and Student Publications

A major and irreversible complication of diabetes is diabetic peripheral neuropathy (DPN), which can lead to significant disability and decreased quality of life. Prior work demonstrates the peptide hormone Angiotensin II (Ang II) is released locally in neuropathy and drives inflammation and impaired endoneurial blood flow. Therefore, we proposed that by utilizing a local thermoresponsive hydrogel injection, we could deliver inhibitors of angiotensin-converting enzyme (ACE) to suppress Ang II production and reduce nerve dysfunction in DPN through local drug release. The ACE inhibitor captopril was encapsulated into a micelle, which was then embedded into a reversibly thermoresponsive pluronics-based hydrogel matrix. …


Biological And Procedural Predictors Of Outcome In The Stroke Preclinical Assessment Network (Span) Trial, Andreia Morais, Takahiko Imai, Xuyan Jin, Joseph J Locascio, Ligia Boisserand, Alison L Herman, Anjali Chauhan, Jessica Lamb, Karisma Nagarkatti, Marcio A Diniz, Mariia Kumskova, Nirav Dhanesha, Pradip K Kamat, Mohammad Badruzzaman Khan, Krishnan M Dhandapani, Rakesh B Patel, Brijesh Sutariya, Yanrong Shi, Klaus Van Leyen, W Taylor Kimberly, David C Hess, Jaroslaw Aronowski, Enrique C Leira, Raymond C Koehler, Anil K Chauhan, Lauren H Sansing, Patrick D Lyden, Cenk Ayata Aug 2024

Biological And Procedural Predictors Of Outcome In The Stroke Preclinical Assessment Network (Span) Trial, Andreia Morais, Takahiko Imai, Xuyan Jin, Joseph J Locascio, Ligia Boisserand, Alison L Herman, Anjali Chauhan, Jessica Lamb, Karisma Nagarkatti, Marcio A Diniz, Mariia Kumskova, Nirav Dhanesha, Pradip K Kamat, Mohammad Badruzzaman Khan, Krishnan M Dhandapani, Rakesh B Patel, Brijesh Sutariya, Yanrong Shi, Klaus Van Leyen, W Taylor Kimberly, David C Hess, Jaroslaw Aronowski, Enrique C Leira, Raymond C Koehler, Anil K Chauhan, Lauren H Sansing, Patrick D Lyden, Cenk Ayata

Faculty, Staff and Student Publications

BACKGROUND: The SPAN trial (Stroke Preclinical Assessment Network) is the largest preclinical study testing acute stroke interventions in experimental focal cerebral ischemia using endovascular filament middle cerebral artery occlusion (MCAo). Besides testing interventions against controls, the prospective design captured numerous biological and procedural variables, highlighting the enormous heterogeneity introduced by the multicenter structure that might influence stroke outcomes. Here, we leveraged the unprecedented sample size achieved by the SPAN trial and the prospective design to identify the biological and procedural variables that affect experimental stroke outcomes in transient endovascular filament MCAo.

METHODS: The study cohort included all mice enrolled and …


A Thalamic Nucleus Reuniens-Lateral Septum-Lateral Hypothalamus Circuit For Comorbid Anxiety-Like Behaviors In Chronic Itch, Su-Shan Guo, Yu Gong, Ting-Ting Zhang, Xin-Yu Su, Yan-Jiao Wu, Yi-Xiao Yan, Yue Cao, Xing-Lei Song, Jian-Cheng Xie, Dehua Wu, Qin Jiang, Ying Li, Xuan Zhao, Michael X Zhu, Tian-Le Xu, Ming-Gang Liu Aug 2024

A Thalamic Nucleus Reuniens-Lateral Septum-Lateral Hypothalamus Circuit For Comorbid Anxiety-Like Behaviors In Chronic Itch, Su-Shan Guo, Yu Gong, Ting-Ting Zhang, Xin-Yu Su, Yan-Jiao Wu, Yi-Xiao Yan, Yue Cao, Xing-Lei Song, Jian-Cheng Xie, Dehua Wu, Qin Jiang, Ying Li, Xuan Zhao, Michael X Zhu, Tian-Le Xu, Ming-Gang Liu

Faculty, Staff and Student Publications

Chronic itch often clinically coexists with anxiety symptoms, creating a vicious cycle of itch-anxiety comorbidities that are difficult to treat. However, the neuronal circuit mechanisms underlying the comorbidity of anxiety in chronic itch remain elusive. Here, we report anxiety-like behaviors in mouse models of chronic itch and identify γ-aminobutyric acid-releasing (GABAergic) neurons in the lateral septum (LS) as the key player in chronic itch-induced anxiety. In addition, chronic itch is accompanied with enhanced activity and synaptic plasticity of excitatory projections from the thalamic nucleus reuniens (Re) onto LS GABAergic neurons. Selective chemogenetic inhibition of the Re → LS circuit notably …


Hematopoietic Growth Factors Regulate The Entry Of Monocytes Into The Adult Brain Via Chemokine Receptor Ccr5, Xuefang Sophie Ren, Junchi He, Songruo Li, Heng Hu, Michele Kyle, Shinichi Kohsaka, Li-Ru Zhao Aug 2024

Hematopoietic Growth Factors Regulate The Entry Of Monocytes Into The Adult Brain Via Chemokine Receptor Ccr5, Xuefang Sophie Ren, Junchi He, Songruo Li, Heng Hu, Michele Kyle, Shinichi Kohsaka, Li-Ru Zhao

Faculty, Staff and Student Publications

Monocytes are circulating macrophage precursors generated from bone marrow hematopoietic stem cells. In adults, monocytes continuously replenish cerebral border-associated macrophages under physiological conditions. Monocytes also rapidly infiltrate the brain in pathological settings. The mechanisms of recruiting monocyte-derived macrophages into the brain under pathological conditions have been extensively studied. However, it remains unclear how monocytes enter the brain to renew border-associated macrophages under physiological conditions. Using both in vitro and in vivo approaches, this study reveals that a combination of two hematopoietic growth factors, stem cell factor (SCF) and granulocyte colony-stimulating factor (G-CSF), complementarily and synergistically enhances the adhesion of monocytes …


3dmousenest: A Volumetric Label-Free Imaging Method Evaluating Embryo-Uterine Interaction And Decidualization Efficacy, Audrey Savolainen, Emmi Kapiainen, Veli-Pekka Ronkainen, Valerio Izzi, Martin M Matzuk, Diana Monsivais, Renata Prunskaite-Hyyryläinen Aug 2024

3dmousenest: A Volumetric Label-Free Imaging Method Evaluating Embryo-Uterine Interaction And Decidualization Efficacy, Audrey Savolainen, Emmi Kapiainen, Veli-Pekka Ronkainen, Valerio Izzi, Martin M Matzuk, Diana Monsivais, Renata Prunskaite-Hyyryläinen

Faculty, Staff and Students Publications

Effective interplay between the uterus and the embryo is essential for pregnancy establishment; however, convenient methods to screen embryo implantation success and maternal uterine response in experimental mouse models are currently lacking. Here, we report 3DMOUSEneST, a groundbreaking method for analyzing mouse implantation sites based on label-free higher harmonic generation microscopy, providing unprecedented insights into the embryo-uterine dynamics during early pregnancy. The 3DMOUSEneST method incorporates second-harmonic generation microscopy to image the three-dimensional structure formed by decidual fibrillar collagen, named 'decidual nest', and third-harmonic generation microscopy to evaluate early conceptus (defined as the embryo and extra-embryonic tissues) growth. We demonstrate that …


Tfeb Activation Hallmarks Antigenic Experience Of B Lymphocytes And Directs Germinal Center Fate Decisions, Matthias Münchhalfen, Richard Görg, Michael Haberl, Jens Löber, Jakob Willenbrink, Laura Schwarzt, Charlotte Höltermann, Christian Ickes, Leonard Hammermann, Jan Kus, Björn Chapuy, Andrea Ballabio, Sybille D Reichardt, Alexander Flügel, Niklas Engels, Jürgen Wienands Aug 2024

Tfeb Activation Hallmarks Antigenic Experience Of B Lymphocytes And Directs Germinal Center Fate Decisions, Matthias Münchhalfen, Richard Görg, Michael Haberl, Jens Löber, Jakob Willenbrink, Laura Schwarzt, Charlotte Höltermann, Christian Ickes, Leonard Hammermann, Jan Kus, Björn Chapuy, Andrea Ballabio, Sybille D Reichardt, Alexander Flügel, Niklas Engels, Jürgen Wienands

Duncan NRI Faculty and Staff Publications

Ligation of the B cell antigen receptor (BCR) initiates humoral immunity. However, BCR signaling without appropriate co-stimulation commits B cells to death rather than to differentiation into immune effector cells. How BCR activation depletes potentially autoreactive B cells while simultaneously primes for receiving rescue and differentiation signals from cognate T lymphocytes remains unknown. Here, we use a mass spectrometry-based proteomic approach to identify cytosolic/nuclear shuttling elements and uncover transcription factor EB (TFEB) as a central BCR-controlled rheostat that drives activation-induced apoptosis, and concurrently promotes the reception of co-stimulatory rescue signals by supporting B cell migration and antigen presentation. CD40 co-stimulation …


Pediatric Glioma Immune Profiling Identifies Tim3 As A Therapeutic Target In Braf Fusion Pilocytic Astrocytoma, Shashwat Tripathi, Hinda Najem, Corey Dussold, Sebastian Pacheco, Ruochen Du, Moloud Sooreshjani, Lisa Hurley, James P Chandler, Roger Stupp, Adam M Sonabend, Craig M Horbinski, Rimas V Lukas, Joanne Xiu, Giselle Lopez, Theodore P Nicolaides, Valerie Brown, Nitin R Wadhwani, Sandi K Lam, Charles David James, Ganesh Rao, Maria G Castro, Amy B Heimberger, Michael Decuypere Aug 2024

Pediatric Glioma Immune Profiling Identifies Tim3 As A Therapeutic Target In Braf Fusion Pilocytic Astrocytoma, Shashwat Tripathi, Hinda Najem, Corey Dussold, Sebastian Pacheco, Ruochen Du, Moloud Sooreshjani, Lisa Hurley, James P Chandler, Roger Stupp, Adam M Sonabend, Craig M Horbinski, Rimas V Lukas, Joanne Xiu, Giselle Lopez, Theodore P Nicolaides, Valerie Brown, Nitin R Wadhwani, Sandi K Lam, Charles David James, Ganesh Rao, Maria G Castro, Amy B Heimberger, Michael Decuypere

Faculty, Staff and Students Publications

Despite being the leading cause of cancer-related childhood mortality, pediatric gliomas have been relatively understudied, and the repurposing of immunotherapies has not been successful. Whole-transcriptome sequencing, single-cell sequencing, and sequential multiplex immunofluorescence were used to identify an immunotherapeutic strategy that could be applied to multiple preclinical glioma models. MAPK-driven pediatric gliomas have a higher IFN signature relative to other molecular subgroups. Single-cell sequencing identified an activated and cytotoxic microglia (MG) population designated MG-Act in BRAF-fused, MAPK-activated pilocytic astrocytoma (PA), but not in high-grade gliomas or normal brain. T cell immunoglobulin and mucin domain 3 (TIM3) was expressed on MG-Act and …


Pediatric Glioma Immune Profiling Identifies Tim3 As A Therapeutic Target In Braf Fusion Pilocytic Astrocytoma, Shashwat Tripathi, Hinda Najem, Corey Dussold, Sebastian Pacheco, Ruochen Du, Moloud Sooreshjani, Lisa Hurley, James P Chandler, Roger Stupp, Adam M Sonabend, Craig M Horbinski, Rimas V Lukas, Joanne Xiu, Giselle Lopez, Theodore P Nicolaides, Valerie Brown, Nitin R Wadhwani, Sandi K Lam, Charles David James, Ganesh Rao, Maria G Castro, Amy B Heimberger, Michael Decuypere Aug 2024

Pediatric Glioma Immune Profiling Identifies Tim3 As A Therapeutic Target In Braf Fusion Pilocytic Astrocytoma, Shashwat Tripathi, Hinda Najem, Corey Dussold, Sebastian Pacheco, Ruochen Du, Moloud Sooreshjani, Lisa Hurley, James P Chandler, Roger Stupp, Adam M Sonabend, Craig M Horbinski, Rimas V Lukas, Joanne Xiu, Giselle Lopez, Theodore P Nicolaides, Valerie Brown, Nitin R Wadhwani, Sandi K Lam, Charles David James, Ganesh Rao, Maria G Castro, Amy B Heimberger, Michael Decuypere

Faculty, Staff and Students Publications

Despite being the leading cause of cancer-related childhood mortality, pediatric gliomas have been relatively understudied, and the repurposing of immunotherapies has not been successful. Whole-transcriptome sequencing, single-cell sequencing, and sequential multiplex immunofluorescence were used to identify an immunotherapeutic strategy that could be applied to multiple preclinical glioma models. MAPK-driven pediatric gliomas have a higher IFN signature relative to other molecular subgroups. Single-cell sequencing identified an activated and cytotoxic microglia (MG) population designated MG-Act in BRAF-fused, MAPK-activated pilocytic astrocytoma (PA), but not in high-grade gliomas or normal brain. T cell immunoglobulin and mucin domain 3 (TIM3) was expressed on MG-Act and …


Prostate Cancer-Induced Endothelial-Cell-To-Osteoblast Transition Drives Immunosuppression In The Bone-Tumor Microenvironment Through Wnt Pathway-Induced M2 Macrophage Polarization, Guoyu Yu, Paul G Corn, Celia Sze Ling Mak, Xin Liang, Miao Zhang, Patricia Troncoso, Jian H Song, Song-Chang Lin, Xingzhi Song, Jingjing Liu, Jianhua Zhang, Christopher J Logothetis, Marites P Melancon, Theocharis Panaretakis, Guocan Wang, Sue-Hwa Lin Aug 2024

Prostate Cancer-Induced Endothelial-Cell-To-Osteoblast Transition Drives Immunosuppression In The Bone-Tumor Microenvironment Through Wnt Pathway-Induced M2 Macrophage Polarization, Guoyu Yu, Paul G Corn, Celia Sze Ling Mak, Xin Liang, Miao Zhang, Patricia Troncoso, Jian H Song, Song-Chang Lin, Xingzhi Song, Jingjing Liu, Jianhua Zhang, Christopher J Logothetis, Marites P Melancon, Theocharis Panaretakis, Guocan Wang, Sue-Hwa Lin

Faculty, Staff and Student Publications

Immune checkpoint therapy has limited efficacy for patients with bone-metastatic castration-resistant prostate cancer (bmCRPC). To improve immunotherapy for bmCRPC, we aimed to identify the mechanism of bmCRPC-induced changes in the immune microenvironment. Among bmCRPC patients, higher levels of a 32-gene M2-like macrophage signature in bone metastasis samples correlated with shorter overall survival. Immunohistochemistry showed that CD206-positive (CD206+) macrophages were enriched in bmCRPC bone biopsy specimens compared with primary tumors or lymph node metastases. In preclinical osteogenic prostate cancer (Pca) xenograft models, CD206+ macrophages were recruited to areas with tumor-induced bone. RNA sequencing (RNAseq) analysis showed higher expression of an M2-like …


Interleukin-21 Engineering Enhances Nk Cell Activity Against Glioblastoma Via Cebpd, Mayra Shanley, May Daher, Jinzhuang Dou, Sufang Li, Rafet Basar, Hind Rafei, Merve Dede, Joy Gumin, Jezreel Pantaleόn Garcίa, Ana Karen Nunez Cortes, Shan He, Corry M Jones, Sunil Acharya, Natalie W Fowlkes, Donghai Xiong, Sanjay Singh, Hila Shaim, Samantha Claire Hicks, Bin Liu, Abhinav Jain, Mohammad Fayyad Zaman, Qi Miao, Ye Li, Nadima Uprety, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Vakul Mohanty, Patrick Zhang, Scott E Evans, Elizabeth J Shpall, Frederick F Lang, Ken Chen, Katayoun Rezvani Aug 2024

Interleukin-21 Engineering Enhances Nk Cell Activity Against Glioblastoma Via Cebpd, Mayra Shanley, May Daher, Jinzhuang Dou, Sufang Li, Rafet Basar, Hind Rafei, Merve Dede, Joy Gumin, Jezreel Pantaleόn Garcίa, Ana Karen Nunez Cortes, Shan He, Corry M Jones, Sunil Acharya, Natalie W Fowlkes, Donghai Xiong, Sanjay Singh, Hila Shaim, Samantha Claire Hicks, Bin Liu, Abhinav Jain, Mohammad Fayyad Zaman, Qi Miao, Ye Li, Nadima Uprety, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Vakul Mohanty, Patrick Zhang, Scott E Evans, Elizabeth J Shpall, Frederick F Lang, Ken Chen, Katayoun Rezvani

Faculty, Staff and Student Publications

Glioblastoma (GBM) is an aggressive brain cancer with limited therapeutic options. Natural killer (NK) cells are innate immune cells with strong anti-tumor activity and may offer a promising treatment strategy for GBM. We compared the anti-GBM activity of NK cells engineered to express interleukin (IL)-15 or IL-21. Using multiple in vivo models, IL-21 NK cells were superior to IL-15 NK cells both in terms of safety and long-term anti-tumor activity, with locoregionally administered IL-15 NK cells proving toxic and ineffective at tumor control. IL-21 NK cells displayed a unique chromatin accessibility signature, with CCAAT/enhancer-binding proteins (C/EBP), especially CEBPD, serving as …


Mif/Nr3c2 Axis Regulates Glucose Metabolism Reprogramming In Pancreatic Cancer Through Mapk-Erk And Ap-1 Pathways, Shouhui Yang, Wei Tang, Azadeh Azizian, Jochen Gaedcke, Yuuki Ohara, Helen Cawley, Nader Hanna, Michael Ghadimi, Trisha Lal, Subrata Sen, Chad J Creighton, Jianjun Gao, Nagireddy Putluri, Stefan Ambs, Perwez Hussain Aug 2024

Mif/Nr3c2 Axis Regulates Glucose Metabolism Reprogramming In Pancreatic Cancer Through Mapk-Erk And Ap-1 Pathways, Shouhui Yang, Wei Tang, Azadeh Azizian, Jochen Gaedcke, Yuuki Ohara, Helen Cawley, Nader Hanna, Michael Ghadimi, Trisha Lal, Subrata Sen, Chad J Creighton, Jianjun Gao, Nagireddy Putluri, Stefan Ambs, Perwez Hussain

Faculty, Staff and Student Publications

Inflammation and aberrant cellular metabolism are widely recognized as hallmarks of cancer. In pancreatic ductal adenocarcinoma (PDAC), inflammatory signaling and metabolic reprogramming are tightly interwoven, playing pivotal roles in the pathogenesis and progression of the disease. However, the regulatory functions of inflammatory mediators in metabolic reprogramming in pancreatic cancer have not been fully explored. Earlier, we demonstrated that pro-inflammatory mediator macrophage migration inhibitory factor (MIF) enhances disease progression by inhibiting its downstream transcriptional factor nuclear receptor subfamily 3 group C member 2 (NR3C2). Here, we provide evidence that MIF and NR3C2 interactively regulate metabolic reprogramming, resulting in MIF-induced cancer growth …


Dual Inhibition Of The Trka And Jak2 Pathways Using Entrectinib And Pacritinib Suppresses The Growth And Metastasis Of Her2-Positive And Triple-Negative Breast Cancers, Angelina T Regua, Shivani Bindal, Mariana K Najjar, Chuling Zhuang, Munazza Khan, Austin B J Arrigo, Anneliese O Gonzalez, Xinhai R Zhang, Jay-Jiguang Zhu, Kounosuke Watabe, Hui-Wen Lo Aug 2024

Dual Inhibition Of The Trka And Jak2 Pathways Using Entrectinib And Pacritinib Suppresses The Growth And Metastasis Of Her2-Positive And Triple-Negative Breast Cancers, Angelina T Regua, Shivani Bindal, Mariana K Najjar, Chuling Zhuang, Munazza Khan, Austin B J Arrigo, Anneliese O Gonzalez, Xinhai R Zhang, Jay-Jiguang Zhu, Kounosuke Watabe, Hui-Wen Lo

Faculty, Staff and Student Publications

HER2-positive and triple-negative breast cancers (TNBC) are difficult to treat and associated with poor prognosis. Despite showing initial response, HER2-positive breast cancers often acquire resistance to HER2-targeted therapies, and TNBC lack effective therapies. To overcome these clinical challenges, we evaluated the therapeutic utility of co-targeting TrkA and JAK2/STAT3 pathways in these breast cancer subtypes. Here, we report the novel combination of FDA-approved TrkA inhibitors (Entrectinib or Larotrectinib) and JAK2 inhibitors (Pacritinib or Ruxolitinib) synergistically inhibited in vitro growth of HER2-positive breast cancer cells and TNBC cells. The Entrectinib-Pacritinib combination inhibited the breast cancer stem cell subpopulation, reduced expression of stemness …


Proximity Analysis Of Native Proteomes Reveals Phenotypic Modifiers In A Mouse Model Of Autism And Related Neurodevelopmental Conditions, Yudong Gao, Daichi Shonai, Matthew Trn, Jieqing Zhao, Erik J Soderblom, S Alexandra Garcia-Moreno, Charles A Gersbach, William C Wetsel, Geraldine Dawson, Dmitry Velmeshev, Yong-Hui Jiang, Laura G Sloofman, Joseph D Buxbaum, Scott H Soderling Aug 2024

Proximity Analysis Of Native Proteomes Reveals Phenotypic Modifiers In A Mouse Model Of Autism And Related Neurodevelopmental Conditions, Yudong Gao, Daichi Shonai, Matthew Trn, Jieqing Zhao, Erik J Soderblom, S Alexandra Garcia-Moreno, Charles A Gersbach, William C Wetsel, Geraldine Dawson, Dmitry Velmeshev, Yong-Hui Jiang, Laura G Sloofman, Joseph D Buxbaum, Scott H Soderling

Faculty, Staff and Students Publications

One of the main drivers of autism spectrum disorder is risk alleles within hundreds of genes, which may interact within shared but unknown protein complexes. Here we develop a scalable genome-editing-mediated approach to target 14 high-confidence autism risk genes within the mouse brain for proximity-based endogenous proteomics, achieving the identification of high-specificity spatial proteomes. The resulting native proximity proteomes are enriched for human genes dysregulated in the brain of autistic individuals, and reveal proximity interactions between proteins from high-confidence risk genes with those of lower-confidence that may provide new avenues to prioritize genetic risk. Importantly, the datasets are enriched for …


Mitochondrial Permeability Transition Dictates Mitochondrial Maturation Upon Switch In Cellular Identity Of Hematopoietic Precursors, Sandeep P Dumbali, Paulina D Horton, Travis I Moore, Pamela L Wenzel Aug 2024

Mitochondrial Permeability Transition Dictates Mitochondrial Maturation Upon Switch In Cellular Identity Of Hematopoietic Precursors, Sandeep P Dumbali, Paulina D Horton, Travis I Moore, Pamela L Wenzel

Faculty, Staff and Student Publications

The mitochondrial permeability transition pore (mPTP) is a supramolecular channel that regulates exchange of solutes across cristae membranes, with executive roles in mitochondrial function and cell death. The contribution of the mPTP to normal physiology remains debated, although evidence implicates the mPTP in mitochondrial inner membrane remodeling in differentiating progenitor cells. Here, we demonstrate that strict control over mPTP conductance shapes metabolic machinery as cells transit toward hematopoietic identity. Cells undergoing the endothelial-to-hematopoietic transition (EHT) tightly control chief regulatory elements of the mPTP. During EHT, maturing arterial endothelium restricts mPTP activity just prior to hematopoietic commitment. After transition in cellular …


Loss Of Transient Receptor Potential Channel 5 Causes Obesity And Postpartum Depression, Yongxiang Li, Tessa M Cacciottolo, Na Yin, Yang He, Hesong Liu, Hailan Liu, Yuxue Yang, Elana Henning, Julia M Keogh, Katherine Lawler, Edson Mendes De Oliveira, Eugene J Gardner, Katherine A Kentistou, Panayiotis Laouris, Rebecca Bounds, Ken K Ong, John R B Perry, Inês Barroso, Longlong Tu, Jonathan C Bean, Meng Yu, Kristine M Conde, Mengjie Wang, Olivia Ginnard, Xing Fang, Lydia Tong, Junying Han, Tia Darwich, Kevin W Williams, Yongjie Yang, Chunmei Wang, Shelagh Joss, Helen V Firth, Yong Xu, I Sadaf Farooqi Aug 2024

Loss Of Transient Receptor Potential Channel 5 Causes Obesity And Postpartum Depression, Yongxiang Li, Tessa M Cacciottolo, Na Yin, Yang He, Hesong Liu, Hailan Liu, Yuxue Yang, Elana Henning, Julia M Keogh, Katherine Lawler, Edson Mendes De Oliveira, Eugene J Gardner, Katherine A Kentistou, Panayiotis Laouris, Rebecca Bounds, Ken K Ong, John R B Perry, Inês Barroso, Longlong Tu, Jonathan C Bean, Meng Yu, Kristine M Conde, Mengjie Wang, Olivia Ginnard, Xing Fang, Lydia Tong, Junying Han, Tia Darwich, Kevin W Williams, Yongjie Yang, Chunmei Wang, Shelagh Joss, Helen V Firth, Yong Xu, I Sadaf Farooqi

Duncan NRI Faculty and Staff Publications

Hypothalamic neural circuits regulate instinctive behaviors such as food seeking, the fight/flight response, socialization, and maternal care. Here, we identified microdeletions on chromosome Xq23 disrupting the brain-expressed transient receptor potential (TRP) channel 5 (TRPC5). This family of channels detects sensory stimuli and converts them into electrical signals interpretable by the brain. Male TRPC5 deletion carriers exhibited food seeking, obesity, anxiety, and autism, which were recapitulated in knockin male mice harboring a human loss-of-function TRPC5 mutation. Women carrying TRPC5 deletions had severe postpartum depression. As mothers, female knockin mice exhibited anhedonia and depression-like behavior with impaired care of offspring. Deletion of …


Translational Potential Of Mouse Models Of Human Metabolic Disease, I Sadaf Farooqi, Yong Xu Aug 2024

Translational Potential Of Mouse Models Of Human Metabolic Disease, I Sadaf Farooqi, Yong Xu

Children’s Nutrition Research Center Staff Publications

Obesity causes significant morbidity and mortality globally. Research in the last three decades has delivered a step-change in our understanding of the fundamental mechanisms that regulate energy homeostasis, building on foundational discoveries in mouse models of metabolic disease. However, not all findings made in rodents have translated to humans, hampering drug discovery in this field. Here, we review how studies in mice and humans have informed our current framework for understanding energy homeostasis, discuss their challenges and limitations, and offer a perspective on how human studies may play an increasingly important role in the discovery of disease mechanisms and identification …


Novel Il-4/Hb-Egf-Dependent Crosstalk Between Eosinophils And Macrophages Controls Liver Regeneration After Ischaemia And Reperfusion Injury, Yang Yang, Long Xu, Constance Atkins, Lily Kuhlman, Jie Zhao, Jong-Min Jeong, Yankai Wen, Nicolas Moreno, Kang Ho Kim, Yu A An, Fenfen Wang, Steve Bynon, Vincenzo Villani, Bin Gao, Frank Brombacher, Raymond Harris, Holger K Eltzschig, Elizabeth Jacobsen, Cynthia Ju Aug 2024

Novel Il-4/Hb-Egf-Dependent Crosstalk Between Eosinophils And Macrophages Controls Liver Regeneration After Ischaemia And Reperfusion Injury, Yang Yang, Long Xu, Constance Atkins, Lily Kuhlman, Jie Zhao, Jong-Min Jeong, Yankai Wen, Nicolas Moreno, Kang Ho Kim, Yu A An, Fenfen Wang, Steve Bynon, Vincenzo Villani, Bin Gao, Frank Brombacher, Raymond Harris, Holger K Eltzschig, Elizabeth Jacobsen, Cynthia Ju

Faculty, Staff and Student Publications

OBJECTIVE: Previous studies indicate that eosinophils are recruited into the allograft following orthotopic liver transplantation and protect from ischaemia reperfusion (IR) injury. In the current studies, we aim to explore whether their protective function could outlast during liver repair.

DESIGN: Eosinophil-deficient mice and adoptive transfer of bone marrow-derived eosinophils (bmEos) were employed to investigate the effects of eosinophils on tissue repair and regeneration after hepatic IR injury. Aside from exogenous cytokine or neutralising antibody treatments, mechanistic studies made use of a panel of mouse models of eosinophil-specific IL-4/IL-13-deletion, cell-specific IL-4rα-deletion in liver macrophages and hepatocytes and macrophage-specific deletion of heparin-binding …


Pkd1 Mutant Clones Within Cirrhotic Livers Inhibit Steatohepatitis Without Promoting Cancer, Min Zhu, Yunguan Wang, Tianshi Lu, Jason Guo, Lin Li, Meng-Hsiung Hsieh, Purva Gopal, Yi Han, Naoto Fujiwara, Darren P Wallace, Alan S L Yu, Xiangyi Fang, Crystal Ransom, Sara Verschleisser, David Hsiehchen, Yujin Hoshida, Amit G Singal, Adam Yopp, Tao Wang, Hao Zhu Aug 2024

Pkd1 Mutant Clones Within Cirrhotic Livers Inhibit Steatohepatitis Without Promoting Cancer, Min Zhu, Yunguan Wang, Tianshi Lu, Jason Guo, Lin Li, Meng-Hsiung Hsieh, Purva Gopal, Yi Han, Naoto Fujiwara, Darren P Wallace, Alan S L Yu, Xiangyi Fang, Crystal Ransom, Sara Verschleisser, David Hsiehchen, Yujin Hoshida, Amit G Singal, Adam Yopp, Tao Wang, Hao Zhu

Faculty, Staff and Student Publications

Somatic mutations in non-malignant tissues are selected for because they confer increased clonal fitness. However, it is uncertain whether these clones can benefit organ health. Here, ultra-deep targeted sequencing of 150 liver samples from 30 chronic liver disease patients revealed recurrent somatic mutations. PKD1 mutations were observed in 30% of patients, whereas they were only detected in 1.3% of hepatocellular carcinomas (HCCs). To interrogate tumor suppressor functionality, we perturbed PKD1 in two HCC cell lines and six in vivo models, in some cases showing that PKD1 loss protected against HCC, but in most cases showing no impact. However, Pkd1 haploinsufficiency …


The Oncolytic Adenovirus Delta-24-Rgd In Combination With Onc201 Induces A Potent Antitumor Response In Pediatric High-Grade And Diffuse Midline Glioma Models, Daniel De La Nava, Iker Ausejo-Mauleon, Virginia Laspidea, Marisol Gonzalez-Huarriz, Andrea Lacalle, Noelia Casares, Marta Zalacain, Lucía Marrodan, Marc García-Moure, Maria C Ochoa, Antonio Carlos Tallon-Cobos, Reyes Hernandez-Osuna, Javier Marco-Sanz, Laasya Dhandapani, Irati Hervás-Corpión, Oren J Becher, Javad Nazarian, Sabine Mueller, Timothy N Phoenix, Jasper Van Der Lugt, Mikel Hernaez, Elizabeth Guruceaga, Carl Koschmann, Sriram Venneti, Joshua E Allen, Matthew D Dun, Juan Fueyo, Candelaria Gomez-Manzano, Jaime Gallego Perez-Larraya, Ana Patiño-García, Sara Labiano, Marta M Alonso Aug 2024

The Oncolytic Adenovirus Delta-24-Rgd In Combination With Onc201 Induces A Potent Antitumor Response In Pediatric High-Grade And Diffuse Midline Glioma Models, Daniel De La Nava, Iker Ausejo-Mauleon, Virginia Laspidea, Marisol Gonzalez-Huarriz, Andrea Lacalle, Noelia Casares, Marta Zalacain, Lucía Marrodan, Marc García-Moure, Maria C Ochoa, Antonio Carlos Tallon-Cobos, Reyes Hernandez-Osuna, Javier Marco-Sanz, Laasya Dhandapani, Irati Hervás-Corpión, Oren J Becher, Javad Nazarian, Sabine Mueller, Timothy N Phoenix, Jasper Van Der Lugt, Mikel Hernaez, Elizabeth Guruceaga, Carl Koschmann, Sriram Venneti, Joshua E Allen, Matthew D Dun, Juan Fueyo, Candelaria Gomez-Manzano, Jaime Gallego Perez-Larraya, Ana Patiño-García, Sara Labiano, Marta M Alonso

Faculty, Staff and Student Publications

BACKGROUND: Pediatric high-grade gliomas (pHGGs), including diffuse midline gliomas (DMGs), are aggressive pediatric tumors with one of the poorest prognoses. Delta-24-RGD and ONC201 have shown promising efficacy as single agents for these tumors. However, the combination of both agents has not been evaluated.

METHODS: The production of functional viruses was assessed by immunoblotting and replication assays. The antitumor effect was evaluated in a panel of human and murine pHGG and DMG cell lines. RNAseq, the seahorse stress test, mitochondrial DNA content, and γH2A.X immunofluorescence were used to perform mechanistic studies. Mouse models of both diseases were used to assess the …


Tumour-Intrinsic Endomembrane Trafficking By Arf6 Shapes An Immunosuppressive Microenvironment That Drives Melanomagenesis And Response To Checkpoint Blockade Therapy, Yinshen Wee, Junhua Wang, Emily C Wilson, Coulson P Rich, Aaron Rogers, Zongzhong Tong, Evelyn Degroot, Y N Vashisht Gopal, Michael A Davies, H Atakan Ekiz, Joshua K H Tay, Chris Stubben, Kenneth M Boucher, Juan M Oviedo, Keke C Fairfax, Matthew A Williams, Sheri L Holmen, Roger K Wolff, Allie H Grossmann Aug 2024

Tumour-Intrinsic Endomembrane Trafficking By Arf6 Shapes An Immunosuppressive Microenvironment That Drives Melanomagenesis And Response To Checkpoint Blockade Therapy, Yinshen Wee, Junhua Wang, Emily C Wilson, Coulson P Rich, Aaron Rogers, Zongzhong Tong, Evelyn Degroot, Y N Vashisht Gopal, Michael A Davies, H Atakan Ekiz, Joshua K H Tay, Chris Stubben, Kenneth M Boucher, Juan M Oviedo, Keke C Fairfax, Matthew A Williams, Sheri L Holmen, Roger K Wolff, Allie H Grossmann

Faculty, Staff and Student Publications

Tumour-host immune interactions lead to complex changes in the tumour microenvironment (TME), impacting progression, metastasis and response to therapy. While it is clear that cancer cells can have the capacity to alter immune landscapes, our understanding of this process is incomplete. Herein we show that endocytic trafficking at the plasma membrane, mediated by the small GTPase ARF6, enables melanoma cells to impose an immunosuppressive TME that accelerates tumour development. This ARF6-dependent TME is vulnerable to immune checkpoint blockade therapy (ICB) but in murine melanoma, loss of Arf6 causes resistance to ICB. Likewise, downregulation of ARF6 in patient tumours correlates with …


Caspase-2 Is Essential For Proliferation And Self-Renewal Of Nucleophosmin-Mutated Acute Myeloid Leukemia, Dharaniya Sakthivel, Alexandra N Brown-Suedel, Karla E Lopez, Suruchi Salgar, Luiza E Coutinho, Francesca Keane, Shixia Huang, Kenneth Mc Sherry, Chloé I Charendoff, Kevin P Dunne, Dexter J Robichaux, Alexander Vargas-Hernández, Baochau Le, Crystal S Shin, Alexandre F Carisey, Marcin Poreba, Jonathan M Flanagan, Lisa Bouchier-Hayes Aug 2024

Caspase-2 Is Essential For Proliferation And Self-Renewal Of Nucleophosmin-Mutated Acute Myeloid Leukemia, Dharaniya Sakthivel, Alexandra N Brown-Suedel, Karla E Lopez, Suruchi Salgar, Luiza E Coutinho, Francesca Keane, Shixia Huang, Kenneth Mc Sherry, Chloé I Charendoff, Kevin P Dunne, Dexter J Robichaux, Alexander Vargas-Hernández, Baochau Le, Crystal S Shin, Alexandre F Carisey, Marcin Poreba, Jonathan M Flanagan, Lisa Bouchier-Hayes

Faculty, Staff and Students Publications

Mutation in nucleophosmin (NPM1) causes relocalization of this normally nucleolar protein to the cytoplasm (NPM1c+). Despite NPM1 mutation being the most common driver mutation in cytogenetically normal adult acute myeloid leukemia (AML), the mechanisms of NPM1c+-induced leukemogenesis remain unclear. Caspase-2 is a proapoptotic protein activated by NPM1 in the nucleolus. Here, we show that caspase-2 is also activated by NPM1c+ in the cytoplasm and DNA damage–induced apoptosis is caspase-2 dependent in NPM1c+ but not in NPM1wt AML cells. Strikingly, in NPM1c+ cells, caspase-2 loss results in profound cell cycle arrest, differentiation, and down-regulation of stem cell pathways that regulate …


Kinesin Facilitates Phenotypic Targeting Of Therapeutic Resistance In Advanced Prostate Cancer, Maddison Archer, Diane Begemann, Edgar Gonzalez-Kozlova, Prerna R Nepali, Estefania Labanca, Peter Shepherd, Navneet Dogra, Nora Navone, Natasha Kyprianou Aug 2024

Kinesin Facilitates Phenotypic Targeting Of Therapeutic Resistance In Advanced Prostate Cancer, Maddison Archer, Diane Begemann, Edgar Gonzalez-Kozlova, Prerna R Nepali, Estefania Labanca, Peter Shepherd, Navneet Dogra, Nora Navone, Natasha Kyprianou

Faculty, Staff and Student Publications

Understanding the mechanisms underlying resistance is critical to improving therapeutic outcomes in patients with metastatic castration-resistant prostate cancer. Previous work showed that dynamic interconversions between epithelial-mesenchymal transition to mesenchymal-epithelial transition defines the phenotypic landscape of prostate tumors, as a potential driver of the emergence of therapeutic resistance. In this study, we use in vitro and in vivo preclinical MDA PCa patient-derived xenograft models of resistant human prostate cancer to determine molecular mechanisms of cross-resistance between antiandrogen therapy and taxane chemotherapy, underlying the therapeutically resistant phenotype. Transcriptomic profiling revealed that resistant and sensitive prostate cancer C4-2B cells have a unique differential …


Lipid Droplet-Associated Hydrolase Mobilizes Stores Of Liver X Receptor Sterol Ligands And Protects Against Atherosclerosis, Young-Hwa Goo, Janeesh Plakkal Ayyappan, Francis D Cheeran, Sushant Bangru, Pradip K Saha, Paula Baar, Sabine Schulz, Todd A Lydic, Bernhard Spengler, Andreas H Wagner, Auinash Kalsotra, Vijay K Yechoor, Antoni Paul Aug 2024

Lipid Droplet-Associated Hydrolase Mobilizes Stores Of Liver X Receptor Sterol Ligands And Protects Against Atherosclerosis, Young-Hwa Goo, Janeesh Plakkal Ayyappan, Francis D Cheeran, Sushant Bangru, Pradip K Saha, Paula Baar, Sabine Schulz, Todd A Lydic, Bernhard Spengler, Andreas H Wagner, Auinash Kalsotra, Vijay K Yechoor, Antoni Paul

Faculty, Staff and Students Publications

Foam cells in atheroma are engorged with lipid droplets (LDs) that contain esters of regulatory lipids whose metabolism remains poorly understood. LD-associated hydrolase (LDAH) has a lipase structure and high affinity for LDs of foam cells. Using knockout and transgenic mice of both sexes, here we show that LDAH inhibits atherosclerosis development and promotes stable lesion architectures. Broad and targeted lipidomic analyzes of primary macrophages and comparative lipid profiling of atheroma identified a broad impact of LDAH on esterified sterols, including natural liver X receptor (LXR) sterol ligands. Transcriptomic analyzes coupled with rescue experiments show that LDAH modulates the expression …


Brca1-Mediated Dual Regulation Of Ferroptosis Exposes A Vulnerability To Gpx4 And Parp Co-Inhibition In Brca1-Deficient Cancers, Guang Lei, Chao Mao, Amber D Horbath, Yuelong Yan, Shirong Cai, Jun Yao, Yan Jiang, Mingchuang Sun, Xiaoguang Liu, Jun Cheng, Zhihao Xu, Hyemin Lee, Qidong Li, Zhengze Lu, Li Zhuang, Mei-Kuang Chen, Anagha Alapati, Timothy A Yap, Mien-Chie Hung, Mingjian James You, Helen Piwnica-Worms, Boyi Gan Aug 2024

Brca1-Mediated Dual Regulation Of Ferroptosis Exposes A Vulnerability To Gpx4 And Parp Co-Inhibition In Brca1-Deficient Cancers, Guang Lei, Chao Mao, Amber D Horbath, Yuelong Yan, Shirong Cai, Jun Yao, Yan Jiang, Mingchuang Sun, Xiaoguang Liu, Jun Cheng, Zhihao Xu, Hyemin Lee, Qidong Li, Zhengze Lu, Li Zhuang, Mei-Kuang Chen, Anagha Alapati, Timothy A Yap, Mien-Chie Hung, Mingjian James You, Helen Piwnica-Worms, Boyi Gan

Faculty, Staff and Student Publications

Resistance to poly (ADP-ribose) polymerase inhibitors (PARPi) limits the therapeutic efficacy of PARP inhibition in treating breast cancer susceptibility gene 1 (BRCA1)-deficient cancers. Here we reveal that BRCA1 has a dual role in regulating ferroptosis. BRCA1 promotes the transcription of voltage-dependent anion channel 3 (VDAC3) and glutathione peroxidase 4 (GPX4); consequently, BRCA1 deficiency promotes cellular resistance to erastin-induced ferroptosis but sensitizes cancer cells to ferroptosis induced by GPX4 inhibitors (GPX4i). In addition, nuclear receptor coactivator 4 (NCOA4)-mediated ferritinophagy and defective GPX4 induction unleash potent ferroptosis in BRCA1-deficient cancer cells upon PARPi and GPX4i …


Rosiglitazone And Trametinib Exhibit Potent Anti-Tumor Activity In A Mouse Model Of Muscle Invasive Bladder Cancer, Sakina A Plumber, Tiffany Tate, Hikmat Al-Ahmadie, Xiao Chen, Woonyoung Choi, Merve Basar, Chao Lu, Aaron Viny, Ekatherina Batourina, Jiaqi Li, Kristjan Gretarsson, Besmira Alija, Andrei Molotkov, Gregory Wiessner, Byron Hing Lung Lee, James Mckiernan, David J Mcconkey, Colin Dinney, Bogdan Czerniak, Cathy Lee Mendelsohn Aug 2024

Rosiglitazone And Trametinib Exhibit Potent Anti-Tumor Activity In A Mouse Model Of Muscle Invasive Bladder Cancer, Sakina A Plumber, Tiffany Tate, Hikmat Al-Ahmadie, Xiao Chen, Woonyoung Choi, Merve Basar, Chao Lu, Aaron Viny, Ekatherina Batourina, Jiaqi Li, Kristjan Gretarsson, Besmira Alija, Andrei Molotkov, Gregory Wiessner, Byron Hing Lung Lee, James Mckiernan, David J Mcconkey, Colin Dinney, Bogdan Czerniak, Cathy Lee Mendelsohn

Faculty, Staff and Student Publications

Muscle invasive bladder cancers (BCs) can be divided into 2 major subgroups-basal/squamous (BASQ) tumors and luminal tumors. Since Pparg has low or undetectable expression in BASQ tumors, we tested the effects of rosiglitazone, Pparg agonist, in a mouse model of BASQ BC. We find that rosiglitazone reduces proliferation while treatment with rosiglitazone plus trametinib, a MEK inhibitor, induces apoptosis and reduces tumor volume by 91% after 1 month. Rosiglitazone and trametinib also induce a shift from BASQ to luminal differentiation in tumors, which our analysis suggests is mediated by retinoid signaling, a pathway known to drive the luminal differentiation program. …


Znf397 Deficiency Triggers Tet2-Driven Lineage Plasticity And Ar-Targeted Therapy Resistance In Prostate Cancer, Yaru Xu, Yuqiu Yang, Zhaoning Wang, Martin Sjöström, Yuyin Jiang, Yitao Tang, Siyuan Cheng, Su Deng, Choushi Wang, Julisa Gonzalez, Nickolas A Johnson, Xiang Li, Xiaoling Li, Lauren A Metang, Atreyi Mukherji, Quanhui Xu, Carla R Tirado, Garrett Wainwright, Xinzhe Yu, Spencer Barnes, Mia Hofstad, Yu Chen, Hong Zhu, Ariella B Hanker, Ganesh V Raj, Guanghui Zhu, Housheng H He, Zhao Wang, Carlos L Arteaga, Han Liang, Felix Y Feng, Yunguan Wang, Tao Wang, Ping Mu Aug 2024

Znf397 Deficiency Triggers Tet2-Driven Lineage Plasticity And Ar-Targeted Therapy Resistance In Prostate Cancer, Yaru Xu, Yuqiu Yang, Zhaoning Wang, Martin Sjöström, Yuyin Jiang, Yitao Tang, Siyuan Cheng, Su Deng, Choushi Wang, Julisa Gonzalez, Nickolas A Johnson, Xiang Li, Xiaoling Li, Lauren A Metang, Atreyi Mukherji, Quanhui Xu, Carla R Tirado, Garrett Wainwright, Xinzhe Yu, Spencer Barnes, Mia Hofstad, Yu Chen, Hong Zhu, Ariella B Hanker, Ganesh V Raj, Guanghui Zhu, Housheng H He, Zhao Wang, Carlos L Arteaga, Han Liang, Felix Y Feng, Yunguan Wang, Tao Wang, Ping Mu

Faculty, Staff and Students Publications

Cancer cells exhibit phenotypical plasticity and epigenetic reprogramming that allows them to evade lineage-dependent targeted treatments by adopting lineage plasticity. The underlying mechanisms by which cancer cells exploit the epigenetic regulatory machinery to acquire lineage plasticity and therapy resistance remain poorly understood. We identified zinc finger protein 397 (ZNF397) as a bona fide coactivator of the androgen receptor (AR), essential for the transcriptional program governing AR-driven luminal lineage. ZNF397 deficiency facilitates the transition of cancer cell from an AR-driven luminal lineage to a ten-eleven translocation 2 (TET2)-driven lineage plastic state, ultimately promoting resistance to therapies inhibiting AR signaling. Intriguingly, our …