Open Access. Powered by Scholars. Published by Universities.®

Medicine and Health Sciences Commons™

Open Access. Powered by Scholars. Published by Universities.®

Mice

Discipline
Institution
Publication Year
Publication
Publication Type
File Type

Articles 1651 - 1680 of 5130

Full-Text Articles in Medicine and Health Sciences

Pb-05204, A Supercritical Co2 Extract Of Nerium Oleander, Suppresses Glioblastoma Stem Cells By Inhibiting Grp78 And Inducing Programmed Necroptotic Cell Death, Sharmistha Chakraborty, Daoyan Wei, Megan Tran, Frederick F Lang, Robert A Newman, Peiying Yang Aug 2024

Pb-05204, A Supercritical Co2 Extract Of Nerium Oleander, Suppresses Glioblastoma Stem Cells By Inhibiting Grp78 And Inducing Programmed Necroptotic Cell Death, Sharmistha Chakraborty, Daoyan Wei, Megan Tran, Frederick F Lang, Robert A Newman, Peiying Yang

Faculty, Staff and Student Publications

Successful treatment of glioblastoma multiforme (GBM), an aggressive form of primary brain neoplasm, mandates the need to develop new therapeutic strategies. In this study, we investigated the potential of PBI-05204 in targeting GBM stem cells (GSCs) and the underlying mechanisms. Treatment with PBI-05204 significantly reduced both the number and size of tumor spheres derived from patient-derived GSCs (GBM9, GSC28 and TS543), and suppressed the tumorigenesis of GBM9 xenografts. Moreover, PBI-05204 treatment led to a significant decrease in the expression of CD44 and NANOG, crucial markers of progenitor stem cells, in GBM9 and GSC28 GSCs. This treatment also down-regulated GRP78 expression …


A First-In-Class Selective Inhibitor Of Egfr And Pi3k Offers A Single-Molecule Approach To Targeting Adaptive Resistance, Christopher E Whitehead, Elizabeth K Ziemke, Christy L Frankowski-Mcgregor, Rachel A Mumby, June Chung, Jinju Li, Nathaniel Osher, Oluwadara Coker, Veerabhadran Baladandayuthapani, Scott Kopetz, Judith S Sebolt-Leopold Aug 2024

A First-In-Class Selective Inhibitor Of Egfr And Pi3k Offers A Single-Molecule Approach To Targeting Adaptive Resistance, Christopher E Whitehead, Elizabeth K Ziemke, Christy L Frankowski-Mcgregor, Rachel A Mumby, June Chung, Jinju Li, Nathaniel Osher, Oluwadara Coker, Veerabhadran Baladandayuthapani, Scott Kopetz, Judith S Sebolt-Leopold

Faculty, Staff and Student Publications

Despite tremendous progress in precision oncology, adaptive resistance mechanisms limit the long-term effectiveness of molecularly targeted agents. Here we evaluated the pharmacological profile of MTX-531 that was computationally designed to selectively target two key resistance drivers, epidermal growth factor receptor and phosphatidylinositol 3-OH kinase (PI3K). MTX-531 exhibits low-nanomolar potency against both targets with a high degree of specificity predicted by cocrystal structural analyses. MTX-531 monotherapy uniformly resulted in tumor regressions of squamous head and neck patient-derived xenograft (PDX) models. The combination of MTX-531 with mitogen-activated protein kinase kinase or KRAS-G12C inhibitors led to durable regressions of BRAF-mutant or KRAS-mutant colorectal …


Central Irf4/5 Signaling Are Critical For Microglial Activation And Impact On Stroke Outcomes, Conelius Ngwa, Abdullah Al Mamun, Shaohua Qi, Romana Sharmeen, Maria P Blasco Conesa, Bhanu P Ganesh, Bharti Manwani, Fudong Liu Aug 2024

Central Irf4/5 Signaling Are Critical For Microglial Activation And Impact On Stroke Outcomes, Conelius Ngwa, Abdullah Al Mamun, Shaohua Qi, Romana Sharmeen, Maria P Blasco Conesa, Bhanu P Ganesh, Bharti Manwani, Fudong Liu

Faculty, Staff and Student Publications

Microglia and monocytes play a critical role in immune responses to cerebral ischemia. Previous studies have demonstrated that interferon regulatory factor 4 (IRF4) and IRF5 direct microglial polarization after stroke and impact outcomes. However, IRF4/5 are expressed by both microglia and monocytes, and it is not clear if it is the microglial (central) or monocytic (peripheral) IRF4-IRF5 regulatory axis that functions in stroke. In this work, young (8-12 weeks) male pep boy (PB), IRF4 or IRF5 flox, and IRF4 or IRF5 conditional knockout (CKO) mice were used to generate 8 types of bone marrow chimeras, to differentiate the role of …


P53r172h And P53r245w Hotspot Mutations Drive Distinct Transcriptomes In Mouse Mammary Tumors Through A Convergent Transcriptional Mediator, Joy M Mcdaniel, Rhiannon L Morrissey, Denada Dibra, Lalit R Patel, Shunbin Xiong, Yun Zhang, Gilda P Chau, Xiaoping Su, Yuan Qi, Adel K El-Naggar, Guillermina Lozano Aug 2024

P53r172h And P53r245w Hotspot Mutations Drive Distinct Transcriptomes In Mouse Mammary Tumors Through A Convergent Transcriptional Mediator, Joy M Mcdaniel, Rhiannon L Morrissey, Denada Dibra, Lalit R Patel, Shunbin Xiong, Yun Zhang, Gilda P Chau, Xiaoping Su, Yuan Qi, Adel K El-Naggar, Guillermina Lozano

Faculty, Staff and Student Publications

Aggressive breast cancers harbor TP53 missense mutations. Tumor cells with TP53 missense mutations exhibit enhanced growth and survival through transcriptional rewiring. To delineate how TP53 mutations in breast cancer contribute to tumorigenesis and progression in vivo, we created a somatic mouse model driven by mammary epithelial cell-specific expression of Trp53 mutations. Mice developed primary mammary tumors reflecting the human molecular subtypes of luminal A, luminal B, HER2-enriched, and triple-negative breast cancer with metastases. Transcriptomic analyses comparing MaPR172H/− or MaPR245W/− mammary tumors to MaP−/− tumors revealed (1) differences in cancer-associated pathways activated in both p53 …


Intestinal Crypt Apoptosis As An Orchestrator Of Necrotizing Enterocolitis: A New Mechanism?, Wei Yu, Aparna Venkatraman, Venkatesh Sampath Aug 2024

Intestinal Crypt Apoptosis As An Orchestrator Of Necrotizing Enterocolitis: A New Mechanism?, Wei Yu, Aparna Venkatraman, Venkatesh Sampath

Manuscripts, Articles, Book Chapters and Other Papers

No abstract provided.


A Cell Cycle-Aware Network For Data Integration And Label Transferring Of Single-Cell Rna-Seq And Atac-Seq, Jiajia Liu, Jian Ma, Jianguo Wen, Xiaobo Zhou Aug 2024

A Cell Cycle-Aware Network For Data Integration And Label Transferring Of Single-Cell Rna-Seq And Atac-Seq, Jiajia Liu, Jian Ma, Jianguo Wen, Xiaobo Zhou

Faculty, Staff and Student Publications

In recent years, the integration of single-cell multi-omics data has provided a more comprehensive understanding of cell functions and internal regulatory mechanisms from a non-single omics perspective, but it still suffers many challenges, such as omics-variance, sparsity, cell heterogeneity, and confounding factors. As it is known, the cell cycle is regarded as a confounder when analyzing other factors in single-cell RNA-seq data, but it is not clear how it will work on the integrated single-cell multi-omics data. Here, a cell cycle-aware network (CCAN) is developed to remove cell cycle effects from the integrated single-cell multi-omics data while keeping the cell …


T-Bet Suppresses Proliferation Of Malignant B Cells In Chronic Lymphocytic Leukemia, Philipp M Roessner, Isabelle Seufert, Vicente Chapaprieta, Ruparoshni Jayabalan, Hannah Briesch, Ramon Massoni-Badosa, Pavle Boskovic, Julian Benckendorff, Tobias Roider, Lavinia Arseni, Mariana Coelho, Supriya Chakraborty, Alicia M Vaca, Mariela Sivina, Markus Muckenhuber, Sonia Rodriguez-Rodriguez, Alice Bonato, Sophie A Herbst, Marc Zapatka, Clare Sun, Helene Kretzmer, Thomas Naake, Peter-Martin Bruch, Felix Czernilofsky, Elisa Ten Hacken, Martin Schneider, Dominic Helm, Deyan Y Yosifov, Joseph Kauer, Alexey V Danilov, Moritz Bewarder, Kristina Heyne, Christof Schneider, Stephan Stilgenbauer, Adrian Wiestner, Jan-Philipp Mallm, Jan A Burger, Dimitar G Efremov, Peter Lichter, Sascha Dietrich, José I Martin-Subero, Karsten Rippe, Martina Seiffert Aug 2024

T-Bet Suppresses Proliferation Of Malignant B Cells In Chronic Lymphocytic Leukemia, Philipp M Roessner, Isabelle Seufert, Vicente Chapaprieta, Ruparoshni Jayabalan, Hannah Briesch, Ramon Massoni-Badosa, Pavle Boskovic, Julian Benckendorff, Tobias Roider, Lavinia Arseni, Mariana Coelho, Supriya Chakraborty, Alicia M Vaca, Mariela Sivina, Markus Muckenhuber, Sonia Rodriguez-Rodriguez, Alice Bonato, Sophie A Herbst, Marc Zapatka, Clare Sun, Helene Kretzmer, Thomas Naake, Peter-Martin Bruch, Felix Czernilofsky, Elisa Ten Hacken, Martin Schneider, Dominic Helm, Deyan Y Yosifov, Joseph Kauer, Alexey V Danilov, Moritz Bewarder, Kristina Heyne, Christof Schneider, Stephan Stilgenbauer, Adrian Wiestner, Jan-Philipp Mallm, Jan A Burger, Dimitar G Efremov, Peter Lichter, Sascha Dietrich, José I Martin-Subero, Karsten Rippe, Martina Seiffert

Faculty, Staff and Student Publications

The T-box transcription factor T-bet is known as a master regulator of the T-cell response but its role in malignant B cells has not been sufficiently explored. Here, we conducted single-cell resolved multi-omics analyses of malignant B cells from patients with chronic lymphocytic leukemia (CLL) and studied a CLL mouse model with a genetic knockout of Tbx21. We found that T-bet acts as a tumor suppressor in malignant B cells by decreasing their proliferation rate. NF-κB activity, induced by inflammatory signals provided by the microenvironment, triggered T-bet expression, which affected promoter-proximal and distal chromatin coaccessibility and controlled a specific gene …


Tumoral Interferon Beta Induces An Immune-Stimulatory Phenotype In Tumor-Associated Macrophages In Melanoma Brain Metastases, Julia Gellert, Dennis A Agardy, Swaminathan Kumar, Alexandros Kourtesakis, Tamara Boschert, Kristine Jähne, Michael O Breckwoldt, Lukas Bunse, Wolfgang Wick, Michael A Davies, Michael Platten, Theresa Bunse Aug 2024

Tumoral Interferon Beta Induces An Immune-Stimulatory Phenotype In Tumor-Associated Macrophages In Melanoma Brain Metastases, Julia Gellert, Dennis A Agardy, Swaminathan Kumar, Alexandros Kourtesakis, Tamara Boschert, Kristine Jähne, Michael O Breckwoldt, Lukas Bunse, Wolfgang Wick, Michael A Davies, Michael Platten, Theresa Bunse

Faculty, Staff and Student Publications

Type I interferons (IFN) are immune-stimulatory cytokines involved in antiviral and antitumor immune responses. They enhance the efficacy of immunogenic anticancer therapies such as radiotherapy by activating both innate and adaptive immune cells. Macrophages are one of the most abundant innate immune cells in the immune microenvironment of melanoma brain metastases (MBM) and can exert potent immune-suppressive functions. Here, we investigate the potential of tumoral type I IFNs to repolarize tumor-associated macrophages (TAM) in two murine MBM models and assess the effects of radiotherapy-induced type I IFN on TAMs in a transcriptomic MBM patient dataset. In mice, we describe a …


Smyd5 Methylation Of Rpl40 Links Ribosomal Output To Gastric Cancer, Juhyung Park, Jibo Wu, Krzysztof J Szkop, Jinho Jeong, Predrag Jovanovic, Dylan Husmann, Natasha M Flores, Joel W Francis, Ying-Jiun C Chen, Ana Morales Benitez, Emily Zahn, Shumei Song, Jaffer A Ajani, Linghua Wang, Kamini Singh, Ola Larsson, Benjamin A Garcia, Ivan Topisirovic, Or Gozani, Pawel K Mazur Aug 2024

Smyd5 Methylation Of Rpl40 Links Ribosomal Output To Gastric Cancer, Juhyung Park, Jibo Wu, Krzysztof J Szkop, Jinho Jeong, Predrag Jovanovic, Dylan Husmann, Natasha M Flores, Joel W Francis, Ying-Jiun C Chen, Ana Morales Benitez, Emily Zahn, Shumei Song, Jaffer A Ajani, Linghua Wang, Kamini Singh, Ola Larsson, Benjamin A Garcia, Ivan Topisirovic, Or Gozani, Pawel K Mazur

Faculty, Staff and Student Publications

Dysregulated transcription due to disruption in histone lysine methylation dynamics is an established contributor to tumorigenesis1,2. However, whether analogous pathologic epigenetic mechanisms act directly on the ribosome to advance oncogenesis is unclear. Here we find that trimethylation of the core ribosomal protein L40 (rpL40) at lysine 22 (rpL40K22me3) by the lysine methyltransferase SMYD5 regulates mRNA translation output to promote malignant progression of gastric adenocarcinoma (GAC) with lethal peritoneal ascites. A biochemical-proteomics strategy identifies the monoubiquitin fusion protein partner rpL40 (ref. 3) as the principal physiological substrate of SMYD5 across diverse samples. Inhibiting the SMYD5-rpL40K22me3 axis in GAC cell lines reprogrammes …


Antitumor Activity Of A Novel Lair1 Antagonist In Combination With Anti-Pd1 To Treat Collagen-Rich Solid Tumors, Bertha L Rodriguez, Jiawei Huang, Laura Gibson, Jared J Fradette, Hung-I H Chen, Kikuye Koyano, Czrina Cortez, Betty Li, Carmence Ho, Amir M Ashique, Vicky Y Lin, Suzanne Crawley, Julie M Roda, Peirong Chen, Bin Fan, Jeong Kim, James Sissons, Jonathan Sitrin, Daniel D Kaplan, Don L Gibbons, Lee B Rivera Aug 2024

Antitumor Activity Of A Novel Lair1 Antagonist In Combination With Anti-Pd1 To Treat Collagen-Rich Solid Tumors, Bertha L Rodriguez, Jiawei Huang, Laura Gibson, Jared J Fradette, Hung-I H Chen, Kikuye Koyano, Czrina Cortez, Betty Li, Carmence Ho, Amir M Ashique, Vicky Y Lin, Suzanne Crawley, Julie M Roda, Peirong Chen, Bin Fan, Jeong Kim, James Sissons, Jonathan Sitrin, Daniel D Kaplan, Don L Gibbons, Lee B Rivera

Faculty, Staff and Student Publications

We recently reported that resistance to PD-1 blockade in a refractory lung cancer-derived model involved increased collagen deposition and the collagen-binding inhibitory receptor leukocyte-associated immunoglobulin-like receptor 1 (LAIR1). Thus, we hypothesized that LAIR1 and collagen cooperated to suppress therapeutic response. In this study, we report that LAIR1 is associated with tumor stroma and is highly expressed by intratumoral myeloid cells in both human tumors and mouse models of cancer. Stroma-associated myeloid cells exhibit a suppressive phenotype and correlate with LAIR1 expression in human cancer. NGM438, a novel humanized LAIR1 antagonist mAb, elicits myeloid inflammation and allogeneic T-cell responses by binding …


Human Platelet Lysate Enhances In Vivo Activity Of Car-Vδ2 T Cells By Reducing Cellular Senescence And Apoptosis, Feiyan Mo, Chiou-Tsun Tsai, Rong Zheng, Chonghui Cheng, Helen E Heslop, Malcolm K Brenner, Maksim Mamonkin, Norihiro Watanabe Aug 2024

Human Platelet Lysate Enhances In Vivo Activity Of Car-Vδ2 T Cells By Reducing Cellular Senescence And Apoptosis, Feiyan Mo, Chiou-Tsun Tsai, Rong Zheng, Chonghui Cheng, Helen E Heslop, Malcolm K Brenner, Maksim Mamonkin, Norihiro Watanabe

Faculty, Staff and Students Publications

BACKGROUND AIMS: Vγ9Vδ2 T cells are an attractive cell platform for the off-the-shelf cancer immunotherapy as the result of their lack of alloreactivity and inherent multi-pronged cytotoxicity, which could be further amplified with chimeric antigen receptors (CARs). In this study, we sought to enhance the in vivo longevity of CAR-Vδ2 T cells by modulating ex vivo manufacturing conditions and selecting an optimal CAR costimulatory domain.

METHODS: Specifically, we compared the anti-tumor activity of Vδ2 T cells expressing anti-CD19 CARs with costimulatory endodomains derived from CD28, 4-1BB or CD27 and generated in either standard fetal bovine serum (FBS)- or human platelet …


Bigh3 Mediates Apoptosis And Gap Junction Failure In Osteocytes During Renal Cell Carcinoma Bone Metastasis Progression, Tianhong Pan, Fengshuo Liu, Xiaoxin Hao, Shubo Wang, Murtaza Wasi, Jian H Song, Valerae O Lewis, Patrick P Lin, Bryan Moon, Justin E Bird, Theocharis Panaretakis, Sue-Hwa Lin, Danielle Wu, Mary C Farach-Carson, Liyun Wang, Ningyan Zhang, Zhiqiang An, Xiang H-F Zhang, Robert L Satcher Aug 2024

Bigh3 Mediates Apoptosis And Gap Junction Failure In Osteocytes During Renal Cell Carcinoma Bone Metastasis Progression, Tianhong Pan, Fengshuo Liu, Xiaoxin Hao, Shubo Wang, Murtaza Wasi, Jian H Song, Valerae O Lewis, Patrick P Lin, Bryan Moon, Justin E Bird, Theocharis Panaretakis, Sue-Hwa Lin, Danielle Wu, Mary C Farach-Carson, Liyun Wang, Ningyan Zhang, Zhiqiang An, Xiang H-F Zhang, Robert L Satcher

Faculty, Staff and Student Publications

Renal cell carcinoma (RCC) bone metastatis progression is driven by crosstalk between tumor cells and the bone microenvironment, which includes osteoblasts, osteoclasts, and osteocytes. RCC bone metastases (RCCBM) are predominantly osteolytic and resistant to antiresorptive therapy. The molecular mechanisms underlying pathologic osteolysis and disruption of bone homeostasis remain incompletely understood. We previously reported that BIGH3/TGFBI (transforming growth factor-beta-induced protein ig-h3, shortened to BIGH3 henceforth) secreted by colonizing RCC cells drives osteolysis by inhibiting osteoblast differentiation, impairing healing of osteolytic lesions, which is reversible with osteoanabolic agents. Here, we report that BIGH3 induces osteocyte apoptosis in both human RCCBM tissue specimens …


Deletion Of Mipep In Adipocytes Protects Against Obesity And Insulin Resistance By Boosting Muscle Metabolism, Alexis Diaz-Vegas, Kristen C Cooke, Harry B Cutler, Belinda Yau, Stewart W C Masson, Dylan Harney, Oliver K Fuller, Meg Potter, Søren Madsen, Niamh R Craw, Yiju Zhang, Cesar L Moreno, Melkam A Kebede, G Gregory Neely, Jacqueline Stöckli, James G Burchfield, David E James Aug 2024

Deletion Of Mipep In Adipocytes Protects Against Obesity And Insulin Resistance By Boosting Muscle Metabolism, Alexis Diaz-Vegas, Kristen C Cooke, Harry B Cutler, Belinda Yau, Stewart W C Masson, Dylan Harney, Oliver K Fuller, Meg Potter, Søren Madsen, Niamh R Craw, Yiju Zhang, Cesar L Moreno, Melkam A Kebede, G Gregory Neely, Jacqueline Stöckli, James G Burchfield, David E James

Faculty, Staff and Students Publications

Mitochondria facilitate thousands of biochemical reactions, covering a broad spectrum of anabolic and catabolic processes. Here we demonstrate that the adipocyte mitochondrial proteome is markedly altered across multiple models of insulin resistance and reveal a consistent decrease in the level of the mitochondrial processing peptidase miPEP.

OBJECTIVE: To determine the role of miPEP in insulin resistance.

METHODS: To experimentally test this observation, we generated adipocyte-specific miPEP knockout mice to interrogate its role in the aetiology of insulin resistance.

RESULTS: We observed a strong phenotype characterised by enhanced insulin sensitivity and reduced adiposity, despite normal food intake and physical activity. Strikingly, …


Aging-Associated Metabolite Methylmalonic Acid Increases Susceptibility To Pulmonary Fibrosis, Kai Xu, Linke Ding, Wenwen Li, Yaxuan Wang, Shuaichen Ma, Hui Lian, Xiaoyue Pan, Ruyan Wan, Weiming Zhao, Juntang Yang, Ivan Rosas, Lan Wang, Guoying Yu Aug 2024

Aging-Associated Metabolite Methylmalonic Acid Increases Susceptibility To Pulmonary Fibrosis, Kai Xu, Linke Ding, Wenwen Li, Yaxuan Wang, Shuaichen Ma, Hui Lian, Xiaoyue Pan, Ruyan Wan, Weiming Zhao, Juntang Yang, Ivan Rosas, Lan Wang, Guoying Yu

Faculty, Staff and Students Publications

Idiopathic pulmonary fibrosis (IPF) is a progressive interstitial lung disease characterized by pulmonary fibroblast overactivation, resulting in the accumulation of abnormal extracellular matrix and lung parenchymal damage. Although the pathogenesis of IPF remains unclear, aging was proposed as the most prominent nongenetic risk factor. Propionate metabolism undergoes reprogramming in the aging population, leading to the accumulation of the by-product methylmalonic acid (MMA). This study aimed to explore alterations in propionate metabolism in IPF and the impact of the by-product MMA on pulmonary fibrosis. It revealed alterations in the expression of enzymes involved in propionate metabolism within IPF lung tissues, characterized …


Neoantigen-Specific Cytotoxic Tr1 Cd4 T Cells Suppress Cancer Immunotherapy, Hussein Sultan, Yoshiko Takeuchi, Jeffrey P Ward, Tian-Tian Liu, Vladimir Sukhov, Yuang Song, Samuel Ameh, Simone Brioschi, Darya Khantakova, Cora D Arthur, J Michael White, Heather Kohlmiller, Kathleen C F Sheehan, Marco Colonna, Kenneth M Murphy, Maxim N Artyomov, Robert D Schreiber, Et Al. Aug 2024

Neoantigen-Specific Cytotoxic Tr1 Cd4 T Cells Suppress Cancer Immunotherapy, Hussein Sultan, Yoshiko Takeuchi, Jeffrey P Ward, Tian-Tian Liu, Vladimir Sukhov, Yuang Song, Samuel Ameh, Simone Brioschi, Darya Khantakova, Cora D Arthur, J Michael White, Heather Kohlmiller, Kathleen C F Sheehan, Marco Colonna, Kenneth M Murphy, Maxim N Artyomov, Robert D Schreiber, Et Al.

2020-Current year OA Pubs

CD4


Nlrp1 Inflammasome Promotes Senescence And Senescence-Associated Secretory Phenotype, Inés Muela-Zarzuela, Juan Miguel Suarez-Rivero, Andrea Gallardo-Orihuela, Chun Wang, Kumi Izawa, Marta De Gregorio-Procopio, Isabelle Couillin, Bernhard Ryffel, Jiro Kitaura, Alberto Sanz, Thomas Von Zglinicki, Gabriel Mbalaviele, Mario D Cordero Aug 2024

Nlrp1 Inflammasome Promotes Senescence And Senescence-Associated Secretory Phenotype, Inés Muela-Zarzuela, Juan Miguel Suarez-Rivero, Andrea Gallardo-Orihuela, Chun Wang, Kumi Izawa, Marta De Gregorio-Procopio, Isabelle Couillin, Bernhard Ryffel, Jiro Kitaura, Alberto Sanz, Thomas Von Zglinicki, Gabriel Mbalaviele, Mario D Cordero

2020-Current year OA Pubs

BACKGROUND: Senescence is a cellular aging-related process triggered by different stresses and characterized by the secretion of various inflammatory factors referred to as senescence-associated secretory phenotype (SASP), some of which are produced by the NLRP3 inflammasome. Here, we present evidence that the NLRP1 inflammasome is a DNA damage sensor and a key mediator of senescence.

METHODS: Senescence was induced in fibroblasts in vitro and in mice. Cellular senescence was assessed by Western blot analysis of several proteins, including p16, p21, p53, and SASP factors, released in the culture media or serum. Inflammasome components, including NLRP1, NLRP3 and GSDMD were knocked …


Fine-Tuning Ampk In Physiology And Disease Using Point-Mutant Mouse Models, Naghmana Ashraf, Jeanine L Van Nostrand Aug 2024

Fine-Tuning Ampk In Physiology And Disease Using Point-Mutant Mouse Models, Naghmana Ashraf, Jeanine L Van Nostrand

Faculty, Staff and Students Publications

AMP-activated protein kinase (AMPK) is an evolutionarily conserved serine/threonine kinase that monitors the cellular energy status to adapt it to the fluctuating nutritional and environmental conditions in an organism. AMPK plays an integral part in a wide array of physiological processes, such as cell growth, autophagy and mitochondrial function, and is implicated in diverse diseases, including cancer, metabolic disorders, cardiovascular diseases and neurodegenerative diseases. AMPK orchestrates many different physiological outcomes by phosphorylating a broad range of downstream substrates. However, the importance of AMPK-mediated regulation of these substrates in vivo remains an ongoing area of investigation to better understand its precise …


A Group 3 Medulloblastoma Stem Cell Program Is Maintained By Otx2-Mediated Alternative Splicing, Olivier Saulnier, Jamie Zagozewski, Lisa Liang, Liam D Hendrikse, Paul Layug, Victor Gordon, Kimberly A Aldinger, Parthiv Haldipur, Stephanie Borlase, Ludivine Coudière-Morrison, Ting Cai, Emma Martell, Naomi M Gonzales, Gareth Palidwor, Christopher J Porter, Stéphane Richard, Tanveer Sharif, Kathleen J Millen, Brad W Doble, Michael D Taylor, Tamra E Werbowetski-Ogilvie Aug 2024

A Group 3 Medulloblastoma Stem Cell Program Is Maintained By Otx2-Mediated Alternative Splicing, Olivier Saulnier, Jamie Zagozewski, Lisa Liang, Liam D Hendrikse, Paul Layug, Victor Gordon, Kimberly A Aldinger, Parthiv Haldipur, Stephanie Borlase, Ludivine Coudière-Morrison, Ting Cai, Emma Martell, Naomi M Gonzales, Gareth Palidwor, Christopher J Porter, Stéphane Richard, Tanveer Sharif, Kathleen J Millen, Brad W Doble, Michael D Taylor, Tamra E Werbowetski-Ogilvie

Faculty, Staff and Students Publications

OTX2 is a transcription factor and known driver in medulloblastoma (MB), where it is amplified in a subset of tumours and overexpressed in most cases of group 3 and group 4 MB. Here we demonstrate a noncanonical role for OTX2 in group 3 MB alternative splicing. OTX2 associates with the large assembly of splicing regulators complex through protein-protein interactions and regulates a stem cell splicing program. OTX2 can directly or indirectly bind RNA and this may be partially independent of its DNA regulatory functions. OTX2 controls a pro-tumorigenic splicing program that is mirrored in human cerebellar rhombic lip origins. Among …


Ca2+/Calmodulin-Dependent Kinase Iiδc-Induced Chronic Heart Failure Does Not Depend On Sarcoplasmic Reticulum Ca2+ Leak, Matthias Dewenter, Tilmann Seitz, Julia H Steinbrecher, B Daan Westenbrink, Haiyun Ling, Stephan E Lehnart, Xander H T Wehrens, Johannes Backs, Joan Heller Brown, Lars S Maier, Stefan Neef Aug 2024

Ca2+/Calmodulin-Dependent Kinase Iiδc-Induced Chronic Heart Failure Does Not Depend On Sarcoplasmic Reticulum Ca2+ Leak, Matthias Dewenter, Tilmann Seitz, Julia H Steinbrecher, B Daan Westenbrink, Haiyun Ling, Stephan E Lehnart, Xander H T Wehrens, Johannes Backs, Joan Heller Brown, Lars S Maier, Stefan Neef

Faculty, Staff and Students Publications

Aims: Hyperactivity of Ca2+/calmodulin-dependent protein kinase II (CaMKII) has emerged as a central cause of pathologic remodelling in heart failure. It has been suggested that CaMKII-induced hyperphosphorylation of the ryanodine receptor 2 (RyR2) and consequently increased diastolic Ca2+ leak from the sarcoplasmic reticulum (SR) is a crucial mechanism by which increased CaMKII activity leads to contractile dysfunction. We aim to evaluate the relevance of CaMKII-dependent RyR2 phosphorylation for CaMKII-induced heart failure development in vivo.

Methods and results: We crossbred CaMKIIδC overexpressing [transgenic (TG)] mice with RyR2-S2814A knock-in mice that are resistant to CaMKII-dependent RyR2 phosphorylation. Ca2+-spark measurements on isolated ventricular …


A Rare Variant In Mrc2 Associated With Familial Supraventricular Tachycardia And Wolff-Parkinson-White Syndrome, Adam S Potter, Christina Y Miyake, Claudia Gonzaga-Jauregui, Yuriana Aguilar-Sanchez, Mohit M Hulsurkar, Satadru K Lahiri, Lucia M Moreira, Neelam Mehta, Mahshid S Azamian, James R Lupski, Svetlana Reilly, Seema R Lalani, Xander H T Wehrens Aug 2024

A Rare Variant In Mrc2 Associated With Familial Supraventricular Tachycardia And Wolff-Parkinson-White Syndrome, Adam S Potter, Christina Y Miyake, Claudia Gonzaga-Jauregui, Yuriana Aguilar-Sanchez, Mohit M Hulsurkar, Satadru K Lahiri, Lucia M Moreira, Neelam Mehta, Mahshid S Azamian, James R Lupski, Svetlana Reilly, Seema R Lalani, Xander H T Wehrens

Faculty, Staff and Students Publications

Background: Accessory pathways are a common cause of supraventricular tachycardia (SVT) and can lead to sudden cardiac death in otherwise healthy children and adults when associated with Wolff-Parkinson-White syndrome. The goal of this study was to identify genetic variants within a large family with structurally normal hearts affected by SVT and Wolff-Parkinson-White syndrome and determine causality of the gene deficit in a corresponding mouse model.

Methods: Whole exome sequencing performed on 2 distant members of a 3-generation family in which multiple members were affected by SVT or Wolff-Parkinson-White pattern (preexcitation) on ECG identified MRC2 as a candidate gene. Serial electrocardiograms, …


Histone Serotonylation Regulates Ependymoma Tumorigenesis, Hsiao-Chi Chen, Peihao He, Malcolm Mcdonald, Michael R Williamson, Srinidhi Varadharajan, Brittney Lozzi, Junsung Woo, Dong-Joo Choi, Debosmita Sardar, Emmet Huang-Hobbs, Hua Sun, Siri M Ippagunta, Antrix Jain, Ganesh Rao, Thomas E Merchant, David W Ellison, Jeffrey L Noebels, Kelsey C Bertrand, Stephen C Mack, Benjamin Deneen Aug 2024

Histone Serotonylation Regulates Ependymoma Tumorigenesis, Hsiao-Chi Chen, Peihao He, Malcolm Mcdonald, Michael R Williamson, Srinidhi Varadharajan, Brittney Lozzi, Junsung Woo, Dong-Joo Choi, Debosmita Sardar, Emmet Huang-Hobbs, Hua Sun, Siri M Ippagunta, Antrix Jain, Ganesh Rao, Thomas E Merchant, David W Ellison, Jeffrey L Noebels, Kelsey C Bertrand, Stephen C Mack, Benjamin Deneen

Faculty, Staff and Students Publications

Bidirectional communication between tumors and neurons has emerged as a key facet of the tumor microenvironment that drives malignancy1,2. Another hallmark feature of cancer is epigenomic dysregulation, where alterations in gene expression influences cell states and interactions with the tumor microenvironment3. Ependymoma (EPN) is a pediatric brain tumor that relies on epigenomic remodeling to engender malignancy4,5; how these epigenetic mechanisms intersect with extrinsic neuronal signaling during EPN tumor progression is unknown. Here we show that activity of serotonergic neurons regulates EPN tumorigenesis, while serotonin itself also serves as an activating …


Chick Embryo Chorioallantoic Membrane As A Platform For Assessing The In Vivo Efficacy Of Chimeric Antigen Receptor T-Cell Therapy In Solid Tumors, Allison J Nipper, Emilie A K Warren, Kershena S Liao, Hsuan-Chen Liu, Chieko Michikawa, Caroline E Porter, Gabrielle A Wells, Mariana Villanueva, Fabio Henrique Brasil Da Costa, Ratna Veeramachaneni, Hugo Villanueva, Masataka Suzuki, Andrew G Sikora Aug 2024

Chick Embryo Chorioallantoic Membrane As A Platform For Assessing The In Vivo Efficacy Of Chimeric Antigen Receptor T-Cell Therapy In Solid Tumors, Allison J Nipper, Emilie A K Warren, Kershena S Liao, Hsuan-Chen Liu, Chieko Michikawa, Caroline E Porter, Gabrielle A Wells, Mariana Villanueva, Fabio Henrique Brasil Da Costa, Ratna Veeramachaneni, Hugo Villanueva, Masataka Suzuki, Andrew G Sikora

Faculty, Staff and Student Publications

The fertilized chicken egg chorioallantoic membrane (CAM), a highly vascularized membrane nourishing the developing embryo, also supports rapid growth of three-dimensional vascularized tumors from engrafted cells and tumor explants. Because murine xenograft models suffer limitations of time, cost, and scalability, we propose CAM tumors as a rapid, efficient screening tool for assessing anti-tumor efficacy of chimeric Ag receptor (CAR) T cells against solid tumors. We tested the efficacy of human epidermal growth factor receptor 2 (HER2)-specific CAR T cells against luminescent, HER2-expressing (FaDu, SCC-47) or HER2-negative (MDA-MB-468) CAM-engrafted tumors. Three days after tumor engraftment, HER2-specific CAR T cells were applied …


Systematic Transcriptome Profiling Of Hpsc-Derived Osteoblasts Unveils Corin’S Mastery In Governing Osteogenesis Through Cebpd Modulation, Dandan Zhu, Mo-Fan Huang, An Xu, Xueqin Gao, Yu-Wen Huang, Trinh T T Phan, Linchao Lu, Ting-Yen Chi, Yulin Dai, Lon Kai Pang, Julian A Gingold, Jian Tu, Zijun Huo, Danielle A Bazer, Rachel Shoemaker, Jun Wang, Catherine G Ambrose, Jingnan Shen, Jun Kameoka, Zhongming Zhao, Lisa L Wang, Yang Zhang, Ruiying Zhao, Dung-Fang Lee Aug 2024

Systematic Transcriptome Profiling Of Hpsc-Derived Osteoblasts Unveils Corin’S Mastery In Governing Osteogenesis Through Cebpd Modulation, Dandan Zhu, Mo-Fan Huang, An Xu, Xueqin Gao, Yu-Wen Huang, Trinh T T Phan, Linchao Lu, Ting-Yen Chi, Yulin Dai, Lon Kai Pang, Julian A Gingold, Jian Tu, Zijun Huo, Danielle A Bazer, Rachel Shoemaker, Jun Wang, Catherine G Ambrose, Jingnan Shen, Jun Kameoka, Zhongming Zhao, Lisa L Wang, Yang Zhang, Ruiying Zhao, Dung-Fang Lee

Faculty, Staff and Student Publications

The commitment of stem cells to differentiate into osteoblasts is a highly regulated and complex process that involves the coordination of extrinsic signals and intrinsic transcriptional machinery. While rodent osteoblastic differentiation has been extensively studied, research on human osteogenesis has been limited by cell sources and existing models. Here, we systematically dissect human pluripotent stem cell-derived osteoblasts to identify functional membrane proteins and their downstream transcriptional networks involved in human osteogenesis. Our results reveal an enrichment of type II transmembrane serine protease CORIN in humans but not rodent osteoblasts. Functional analyses demonstrated that CORIN depletion significantly impairs osteogenesis. Genome-wide chromatin …


A Maternal Brain Hormone That Builds Bone, Muriel E Babey, Xiao Zhang, Erica L Scheller, Et Al. Aug 2024

A Maternal Brain Hormone That Builds Bone, Muriel E Babey, Xiao Zhang, Erica L Scheller, Et Al.

2020-Current year OA Pubs

In lactating mothers, the high calcium (Ca


Development Of New Cd38 Targeted Peptides For Cancer Imaging, Alexander Zheleznyak, Rui Tang, Kathleen Duncan, Brad Manion, Kexian Liang, Baogang Xu, Alexander Vanover, Anchal Ghai, Julie Prior, Stephen Lees, Samuel Achilefu, Kimberly Kelly, Monica Shokeen Aug 2024

Development Of New Cd38 Targeted Peptides For Cancer Imaging, Alexander Zheleznyak, Rui Tang, Kathleen Duncan, Brad Manion, Kexian Liang, Baogang Xu, Alexander Vanover, Anchal Ghai, Julie Prior, Stephen Lees, Samuel Achilefu, Kimberly Kelly, Monica Shokeen

2020-Current year OA Pubs

PURPOSE: Multiple myeloma (MM) affects over 35,000 patients each year in the US. There remains a need for versatile Positron Emission Tomography (PET) tracers for the detection, accurate staging, and monitoring of treatment response of MM that have optimal specificity and translational attributes. CD38 is uniformly overexpressed in MM and thus represents an ideal target to develop CD38-targeted small molecule PET radiopharmaceuticals to address these challenges.

PROCEDURES: Using phage display peptide libraries and pioneering algorithms, we identified novel CD38 specific peptides. Imaging bioconjugates were synthesized using solid phase peptide chemistry, and systematically analyzed in vitro and in vivo in relevant …


Nf1 Mutation Disrupts Activity-Dependent Oligodendroglial Plasticity And Motor Learning In Mice, Yuan Pan, Corina Anastasaki, Jit Chatterjee, Suzanne Scheaffer, David H Gutmann, Et Al. Aug 2024

Nf1 Mutation Disrupts Activity-Dependent Oligodendroglial Plasticity And Motor Learning In Mice, Yuan Pan, Corina Anastasaki, Jit Chatterjee, Suzanne Scheaffer, David H Gutmann, Et Al.

2020-Current year OA Pubs

Neurogenetic disorders, such as neurofibromatosis type 1 (NF1), can cause cognitive and motor impairments, traditionally attributed to intrinsic neuronal defects such as disruption of synaptic function. Activity-regulated oligodendroglial plasticity also contributes to cognitive and motor functions by tuning neural circuit dynamics. However, the relevance of oligodendroglial plasticity to neurological dysfunction in NF1 is unclear. Here we explore the contribution of oligodendrocyte progenitor cells (OPCs) to pathological features of the NF1 syndrome in mice. Both male and female littermates (4-24 weeks of age) were used equally in this study. We demonstrate that mice with global or OPC-specific Nf1 heterozygosity exhibit defects …


Mitochondrial Ca2+-Coupled Generation Of Reactive Oxygen Species, Peroxynitrite Formation, And Endothelial Dysfunction In Cantú Syndrome, Elsayed Metwally, Alfredo Sanchez Solano, Boris Lavanderos, Evan Yamasaki, Pratish Thakore, Conor Mcclenaghan, Natalia Rios, Rafael Radi, Yumei Feng Earley, Colin G. Nichols, Scott Earley Aug 2024

Mitochondrial Ca2+-Coupled Generation Of Reactive Oxygen Species, Peroxynitrite Formation, And Endothelial Dysfunction In Cantú Syndrome, Elsayed Metwally, Alfredo Sanchez Solano, Boris Lavanderos, Evan Yamasaki, Pratish Thakore, Conor Mcclenaghan, Natalia Rios, Rafael Radi, Yumei Feng Earley, Colin G. Nichols, Scott Earley

2020-Current year OA Pubs

Cantú syndrome is a multisystem disorder caused by gain-of-function (GOF) mutations in KCNJ8 and ABCC9, the genes encoding the pore-forming inward rectifier Kir6.1 and regulatory sulfonylurea receptor SUR2B subunits, respectively, of vascular ATP-sensitive K+ (KATP) channels. In this study, we investigated changes in the vascular endothelium in mice in which Cantú syndrome-associated Kcnj8 or Abcc9 mutations were knocked in to the endogenous loci. We found that endothelium-dependent dilation was impaired in small mesenteric arteries from Cantú mice. Loss of endothelium-dependent vasodilation led to increased vasoconstriction in response to intraluminal pressure or treatment with the adrenergic receptor agonist phenylephrine. We also …


Cholesterol Accumulation Promotes Photoreceptor Senescence And Retinal Degeneration, Ryo Terao, Brian S Sohn, Taku Yamamoto, Tae Jun Lee, Jason Colasanti, Charles W Pfeifer, Joseph B Lin, Andrea Santeford, Shinobu Yamaguchi, Mitsukuni Yoshida, Rajendra S Apte Aug 2024

Cholesterol Accumulation Promotes Photoreceptor Senescence And Retinal Degeneration, Ryo Terao, Brian S Sohn, Taku Yamamoto, Tae Jun Lee, Jason Colasanti, Charles W Pfeifer, Joseph B Lin, Andrea Santeford, Shinobu Yamaguchi, Mitsukuni Yoshida, Rajendra S Apte

2020-Current year OA Pubs

PURPOSE: Dysregulated cholesterol metabolism is critical in the pathogenesis of AMD. Cellular senescence contributes to the development of numerous age-associated diseases. In this study, we investigated the link between cholesterol burden and the cellular senescence of photoreceptors.

METHODS: Retinas from rod-specific ATP binding cassette subfamily A member 1 (Abca1) and G member 1 (Abcg1) (Abca1/g1-rod/-rod) knockout mice fed with a high-fat diet were analyzed for the signs of cellular senescence. Real-time quantitative PCR and immunofluorescence were used to characterize the senescence profile of the retina and cholesterol-treated photoreceptor cell line (661W). Inducible elimination of p16(Ink4a)-positive senescent cells (INK-ATTAC) mice or …


Accumulation Of Alkyl-Lysophosphatidylcholines In Niemann-Pick Disease Type C1, Sonali Mishra, Pamela Kell, David Scherrer, Dennis J Dietzen, Charles H Vite, Elizabeth Berry-Kravis, Cristin Davidson, Stephanie M Cologna, Forbes D Porter, Daniel S Ory, Xuntian Jiang Aug 2024

Accumulation Of Alkyl-Lysophosphatidylcholines In Niemann-Pick Disease Type C1, Sonali Mishra, Pamela Kell, David Scherrer, Dennis J Dietzen, Charles H Vite, Elizabeth Berry-Kravis, Cristin Davidson, Stephanie M Cologna, Forbes D Porter, Daniel S Ory, Xuntian Jiang

2020-Current year OA Pubs

Lysosomal function is impaired in Niemann-Pick disease type C1 (NPC1), a rare and inherited neurodegenerative disorder, resulting in late endosomal/lysosomal accumulation of unesterified cholesterol. The precise pathogenic mechanism of NPC1 remains incompletely understood. In this study, we employed metabolomics to uncover secondary accumulated substances in NPC1. Our findings unveiled a substantial elevation in the levels of three alkyl-lysophosphatidylcholine [alkyl-LPC, also known as lyso-platelet activating factor (PAF)] species in NPC1 compared to controls across various tissues, including brain tissue from individuals with NPC1, liver, spleen, cerebrum, cerebellum, and brain stem from NPC1 mice, as well as in both brain and liver …


Adaptation Of The Protein Misfolding Cyclic Amplification (Pmca) Technique For The Screening Of Anti-Prion Compounds, Katherine Do, Rebeca Benavente, Celso S G Catumbela, Uffaf Khan, Carlos Kramm, Claudio Soto, Rodrigo Morales Jul 2024

Adaptation Of The Protein Misfolding Cyclic Amplification (Pmca) Technique For The Screening Of Anti-Prion Compounds, Katherine Do, Rebeca Benavente, Celso S G Catumbela, Uffaf Khan, Carlos Kramm, Claudio Soto, Rodrigo Morales

Faculty, Staff and Student Publications

Prion diseases result from the misfolding of the physiological prion protein (PrPC) to a pathogenic conformation (PrPSc). Compelling evidence indicates that prevention and/or reduction of PrPSc replication are promising therapeutic strategies against prion diseases. However, the existence of different PrPSc conformations (or strains) associated with disease represents a major problem when identifying anti-prion compounds. Efforts to identify strain-specific anti-prion molecules are limited by the lack of biologically relevant high-throughput screening platforms to interrogate compound libraries. Here, we describe adaptations to the protein misfolding cyclic amplification (PMCA) technology (able to faithfully replicate PrPSc strains) that increase its throughput to facilitate the …