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Articles 511 - 540 of 4655
Full-Text Articles in Entire DC Network
Sepsis Restructures The Mitochondrial Calcium Uniporter Complex In The Lymphoid Tissues Of Mice And Humans, Xianghong Zhang, Jianguo Lin, Baobo Zou, Jack R Killinger, Andrew C Sayce, Thiagarajan Meyyappan, Zeyu Xiong, Melanie J Scott, Janet S Lee, Matthew R Rosengart
Sepsis Restructures The Mitochondrial Calcium Uniporter Complex In The Lymphoid Tissues Of Mice And Humans, Xianghong Zhang, Jianguo Lin, Baobo Zou, Jack R Killinger, Andrew C Sayce, Thiagarajan Meyyappan, Zeyu Xiong, Melanie J Scott, Janet S Lee, Matthew R Rosengart
2020-Current year OA Pubs
Survivors of sepsis suffer from an elevated risk of premature death that is not explained by a higher burden of chronic diseases prior to the infection. Nearly 1 out of 4 survivors have persistent elevations of inflammation biomarkers, such as interleukin (IL) 6. These observations suggest that sepsis imparts durable changes to organismal biology. Eukaryotic life depends upon ATP and calcium (Ca
Templating Of Monomeric Alpha-Synuclein Results In Inflammation And Snpc Dopamine Neuron Death In A Genetic Mouse Model Of Induced Synucleinopathy, Matthew D. Byrne, Peyman Petramfar, Jae-Kyung Lee, Richard J. Smeyne
Templating Of Monomeric Alpha-Synuclein Results In Inflammation And Snpc Dopamine Neuron Death In A Genetic Mouse Model Of Induced Synucleinopathy, Matthew D. Byrne, Peyman Petramfar, Jae-Kyung Lee, Richard J. Smeyne
Department of Neuroscience Faculty Papers
While the etiology of most cases of Parkinson's disease (PD) are idiopathic, it has been estimated that 5-10% of PD arise from known genetic mutations. The first mutations described that leads to the development of an autosomal dominant form of PD are in the SNCA gene that codes for the protein alpha-synuclein (α-syn). α-syn is an abundant presynaptic protein that is natively disordered and whose function is still unclear. In PD, α-syn misfolds into multimeric b-pleated sheets that aggregate in neurons (Lewy Bodies/neurites) and spread throughout the neuraxis in a pattern that aligns with disease progression. Here, using IHC, HC, …
Role Of Progesterone Action In Inguinal Hernia Formation Via Skeletal Muscle Fibrosis And Atrophy, Tianming You, Mehrdad Zandigohar, Tanvi Potluri, Natalie Piehl, John S Coon V, Elizabeth Baker, Maya Kafali, Yang Dai, Jonah J Stulberg, David J Escobar, Richard L Lieber, Hong Zhao, Serdar E Bulun
Role Of Progesterone Action In Inguinal Hernia Formation Via Skeletal Muscle Fibrosis And Atrophy, Tianming You, Mehrdad Zandigohar, Tanvi Potluri, Natalie Piehl, John S Coon V, Elizabeth Baker, Maya Kafali, Yang Dai, Jonah J Stulberg, David J Escobar, Richard L Lieber, Hong Zhao, Serdar E Bulun
Faculty, Staff and Student Publications
More than 1 in 4 men will undergo surgery for inguinal hernia, which is commonly associated with fibrotic degeneration of the lower abdominal muscle (LAM) in the groin region. Utilizing a male mouse model expressing the human aromatase gene (Aromhum), previous studies showed that locally produced estradiol acting via estrogen receptor α in LAM fibroblasts leads to fibrosis, myofiber atrophy, and hernia development. Here, we found that upregulation of progesterone receptor (PGR) in a LAM fibroblast population mediates this estrogenic effect. A PGR-selective progesterone antagonist in Aromhum mice decreased LAM fibrosis and atrophy, preventing hernia formation and stopping progression of …
Mouse Metastable Epialleles Are Extremely Rare, Chathura J Gunasekara, Uditha Maduranga, Taylor Zhang, Jonathan N Wells, Maria S Baker, Eleonora Laritsky, Yumei Li, Cristian Coarfa, Yi Zhu, Robert A Waterland
Mouse Metastable Epialleles Are Extremely Rare, Chathura J Gunasekara, Uditha Maduranga, Taylor Zhang, Jonathan N Wells, Maria S Baker, Eleonora Laritsky, Yumei Li, Cristian Coarfa, Yi Zhu, Robert A Waterland
Faculty, Staff and Students Publications
Metastable epialleles (MEs) are genomic loci at which epigenetic marks are established stochastically during early embryonic development and maintained during subsequent differentiation and throughout life, leading to stable epigenetic and phenotypic variation among genetically identical individuals. Although MEs were first described in mice over 20 years ago, the extent of epigenetic metastability in the mouse genome remains unknown. We present the first unbiased genome-wide screen for MEs in mice. Using deep whole-genome bisulfite sequencing across tissues derived from the three embryonic germ layers in isogenic C57BL/6J mice, we identified only 29 MEs, precisely localizing them and documenting their rarity. Consistent …
Cdc1s Promote Atherosclerosis Via Local Immunity And Are Targetable For Therapy, Miguel Galán, Suin Jo, Tian-Tian Liu, Kenneth M. Murphy, Et Al.
Cdc1s Promote Atherosclerosis Via Local Immunity And Are Targetable For Therapy, Miguel Galán, Suin Jo, Tian-Tian Liu, Kenneth M. Murphy, Et Al.
2020-Current year OA Pubs
BACKGROUND: Atherosclerosis is characterized by immune cell accumulation in the arterial wall and adaptive CD4
METHODS: We tested atherosclerosis in
RESULTS: Expansion of DCs in
CONCLUSIONS: Using state-of-the-art strategies, our results establish that cDC1s have a proatherogenic role in atherosclerosis by boosting CD4
Electrophysiological Characterization Of Sex-Dependent Hypnosis By An Endogenous Neuroactive Steroid Epipregnanolone, Tamara Timic Stamenic, Ian Coulter, Douglas F Covey, Slobodan M Todorovic
Electrophysiological Characterization Of Sex-Dependent Hypnosis By An Endogenous Neuroactive Steroid Epipregnanolone, Tamara Timic Stamenic, Ian Coulter, Douglas F Covey, Slobodan M Todorovic
2020-Current year OA Pubs
Neuroactive steroids (NAS) have long been recognized for their hypnotic and anesthetic properties in both clinical and preclinical settings. While sex differences in NAS sensitivity are acknowledged, the underlying mechanisms remain poorly understood. Here, we examined sex-specific responses to an endogenous NAS epipregnanolone (EpiP) in wild-type mice using behavioral assessment of hypnosis (loss of righting reflex, LORR) and in vivo electrophysiological recordings. Specifically, local field potentials (LFPs) were recorded from the central medial thalamus (CMT) and electroencephalogram (EEG) signals were recorded from the barrel cortex. We found that EpiP-induced LORR exhibited clear sex differences, with females showing increased sensitivity. Spectral …
Spase: Spatially Resolved Pathology Scores Using Optimal Transport On Spatial Transcriptomics Data, Mohammad Nuwaisir Rahman, Mohammed Abid Abrar, Vikram Rakesh Shaw, James F Martin, M Saifur Rahman, Md Abul Hassan Samee
Spase: Spatially Resolved Pathology Scores Using Optimal Transport On Spatial Transcriptomics Data, Mohammad Nuwaisir Rahman, Mohammed Abid Abrar, Vikram Rakesh Shaw, James F Martin, M Saifur Rahman, Md Abul Hassan Samee
Faculty, Staff and Students Publications
Pathological events often impact tissue regions in a spatial variable manner, making it challenging to identify therapeutic targets. Spatial transcriptomics (ST) is a powerful technology to map spatially variable molecular mechanisms, yet suitable analytical methods have been lacking. We introduce SPaSE (Spatially-resolved Pathology ScorE), an optimal transport-based algorithm to compare ST data from diseased and control tissues. SPaSE computes a “pathology score” for each spot in the diseased sample, quantifying the pathological impact at that spot. In post-MI (myocardial infarction) mouse hearts, these scores delineated zones that matched independent expert annotations. Modeling pathology scores from gene expression revealed signatures predictive …
Altered Patterning Of Neural Activity In A Neuropathology, Clarissa Hoffman, Jingheng Cheng, Rodrigo Morales, Daoyun Ji, Yuri Dabaghian
Altered Patterning Of Neural Activity In A Neuropathology, Clarissa Hoffman, Jingheng Cheng, Rodrigo Morales, Daoyun Ji, Yuri Dabaghian
Faculty, Staff and Students Publications
The dynamics of neural circuits and their role in mediating cellular and organismal phenomena remain poorly understood, despite numerous efforts to dissect these processes through precise instantaneous measurements or longer-time averages and approximations. We use an alternative approach: we investigate these dynamics at the system's mesoscale by analyzing spike trains and waveforms. These extended activity patterns carry robust, tractable information, are highly responsive to physiological specifics, and enable detailed tracking of circuit behavior. In particular, this methodology allows for characterizing the functionality of tau-pathology-afflicted hippocampal circuits and identifying circuit-level abnormalities that are missed by through traditional analyses. In healthy mice, …
The Integrated Stress Response Pathway Coordinates Translational Control Of Multiple Immune Checkpoints In Lung Cancer, Shayna Thomas-Jardin, Shruthy Suresh, Ariana Arce, Nicole Novaresi, Qing Deng, Emily Stein, Lisa Thomas, Cheryl Lewis, Chul Ahn, Bret M Evers, Esra A Akbay, Maria E Salvatierra, Wei Lu, Khaja Khan, Luisa M Solis Soto, Ignacio I Wistuba, John D Minna, Kathryn A O'Donnell
The Integrated Stress Response Pathway Coordinates Translational Control Of Multiple Immune Checkpoints In Lung Cancer, Shayna Thomas-Jardin, Shruthy Suresh, Ariana Arce, Nicole Novaresi, Qing Deng, Emily Stein, Lisa Thomas, Cheryl Lewis, Chul Ahn, Bret M Evers, Esra A Akbay, Maria E Salvatierra, Wei Lu, Khaja Khan, Luisa M Solis Soto, Ignacio I Wistuba, John D Minna, Kathryn A O'Donnell
Faculty, Staff and Student Publications
The integrated stress response (ISR) is an adaptive pathway hijacked by cancer cells to survive cellular stresses in the tumor microenvironment. ISR activation potently induces PD-L1, leading to suppression of antitumor immunity. In this study, we sought to uncover additional immune checkpoint proteins regulated by the ISR to elucidate mechanisms of tumor immune escape. The ISR coordinately induced cluster of differentiation 155 (CD155) and PD-L1, enhancing translation of both immune checkpoint proteins through bypass of inhibitory upstream open reading frames in their 5' untranslated regions. Analysis of primary human lung tumors identified a significant correlation between expression of PD-L1 and …
Met Pathway Inhibition Increases Chemo-Immunotherapy Efficacy In Small Cell Lung Cancer, Raúl Del Rey-Vergara, Miguel Alejandro Galindo-Campos, Pedro Rocha, Marina Carpes, Carlos Martínez, Laura Masfarré, Silvia Menéndez, Fabricio Quimis, Adrià Rossell, Albert Iñañez, Sandra Pérez-Buira, Federico Rojo, Ramon Gimeno, Dolores Isla, Jon Zugazagoitia, Cristina Martí Blanco, Rosario García-Campelo, Alberto Moreno-Vega, Luis León-Mateos, Ángel Callejo Mellén, Kwon-Sik Park, Simon Heeke, John V Heymach, Álvaro Taus, Luis Paz-Ares, Ana Rovira, Edurne Arriola
Met Pathway Inhibition Increases Chemo-Immunotherapy Efficacy In Small Cell Lung Cancer, Raúl Del Rey-Vergara, Miguel Alejandro Galindo-Campos, Pedro Rocha, Marina Carpes, Carlos Martínez, Laura Masfarré, Silvia Menéndez, Fabricio Quimis, Adrià Rossell, Albert Iñañez, Sandra Pérez-Buira, Federico Rojo, Ramon Gimeno, Dolores Isla, Jon Zugazagoitia, Cristina Martí Blanco, Rosario García-Campelo, Alberto Moreno-Vega, Luis León-Mateos, Ángel Callejo Mellén, Kwon-Sik Park, Simon Heeke, John V Heymach, Álvaro Taus, Luis Paz-Ares, Ana Rovira, Edurne Arriola
Faculty, Staff and Student Publications
The introduction of immunotherapy as a first-line treatment for advanced small cell lung cancer (SCLC) represents significant progress, yet there remains an opportunity to further improve patient outcomes. Hepatocyte growth factor (HGF) receptor (MET) pathway activation promotes epithelial-mesenchymal transition, driving chemoresistance and potentially impairing the efficacy of immunotherapy. In SCLC mouse models, adding MET inhibition to chemo-immunotherapy (anti-PD-L1) reduces tumor growth, extends survival, and reshapes the tumor microenvironment by decreasing suppressive myeloid cell infiltration and enhancing the immune response. Analysis of pretreatment human SCLC tumor samples reveals that myeloid-enriched immune infiltrates may contribute to chemo-immunotherapy resistance. Elevated serum HGF levels …
Synergistic Activity Of Combined Flt3-Itd And Mdm2 Inhibition With Quizartinib And Milademetan In Flt3-Itd Mutant/Tp53 Wild-Type Acute Myeloid Leukemias, Weiguo Zhang, Li Li, Muharrem Muftuoglu, Mahesh Basyal, Noriko Togashi, Koichi Iwanaga, Fumie Tanzawa, Masashi Numata, Dale L Bixby, Harry P Erba, Nikolai Podoltsev, Gary J Schiller, Prasanna Kumar, Arnaud Lesegretain, Takeshi Isoyama, Takahiko Seki, Naval Daver, Michael Andreeff
Synergistic Activity Of Combined Flt3-Itd And Mdm2 Inhibition With Quizartinib And Milademetan In Flt3-Itd Mutant/Tp53 Wild-Type Acute Myeloid Leukemias, Weiguo Zhang, Li Li, Muharrem Muftuoglu, Mahesh Basyal, Noriko Togashi, Koichi Iwanaga, Fumie Tanzawa, Masashi Numata, Dale L Bixby, Harry P Erba, Nikolai Podoltsev, Gary J Schiller, Prasanna Kumar, Arnaud Lesegretain, Takeshi Isoyama, Takahiko Seki, Naval Daver, Michael Andreeff
Faculty, Staff and Student Publications
Purpose: Acute myeloid leukemia (AML) is characterized by frequent mutations in FMS-like tyrosine kinase 3 (FLT3), overexpression of murine double minute 2 (MDM2), and TP53 wild-type (WT). Monotherapies targeting FLT3 frequently result in the development of resistant disease. In this study, we investigated the antileukemic efficacy of co-targeting FLT3 and MDM2 with quizartinib and milademetan (Q/M) in FLT3 internal tandem duplication (FLT3-ITD) AML cell lines, xenograft and patient-derived xenograft (PDX) models, and a phase I clinical trial.
Experimental design: Preclinical studies used human and murine cell lines carrying FLT3-ITD and/or tyrosine kinase domain mutations, TP53 WT/knockdown, leukemia cell xenograft models, …
Targeting The Cd40 Costimulatory Receptor To Improve Virotherapy Efficacy In Diffuse Midline Gliomas, Sara Labiano, Javier Marco-Sanz, Iker Ausejo-Mauleon, Virginia Laspidea, Reyes Hernández-Osuna, Marc Garcia-Moure, Daniel De La Nava, Sara Nuin, Marisol Gonzalez-Huarriz, Timothy N Phoenix, Ibon Tamayo, Marta Zalacain, Andrea Lacalle, Lucía Marrodan, Montserrat Puigdelloses, Irati Hervás-Corpión, Maria C Ochoa, Noelia Casares, Oren J Becher, Candelaria Gomez-Manzano, Juan Fueyo, Jaime Gallego Perez-Larraya, Ana Patiño-Garcia, Marta M Alonso
Targeting The Cd40 Costimulatory Receptor To Improve Virotherapy Efficacy In Diffuse Midline Gliomas, Sara Labiano, Javier Marco-Sanz, Iker Ausejo-Mauleon, Virginia Laspidea, Reyes Hernández-Osuna, Marc Garcia-Moure, Daniel De La Nava, Sara Nuin, Marisol Gonzalez-Huarriz, Timothy N Phoenix, Ibon Tamayo, Marta Zalacain, Andrea Lacalle, Lucía Marrodan, Montserrat Puigdelloses, Irati Hervás-Corpión, Maria C Ochoa, Noelia Casares, Oren J Becher, Candelaria Gomez-Manzano, Juan Fueyo, Jaime Gallego Perez-Larraya, Ana Patiño-Garcia, Marta M Alonso
Faculty, Staff and Student Publications
Diffuse midline glioma (DMG) is a devastating pediatric brain tumor. The oncolytic adenovirus Delta-24-RGD has shown promising efficacy and safety in DMG patients but is not yet curative. Thus, we hypothesized that activating dendritic cells (DCs) through the CD40 costimulatory receptor could increase antigen presentation and enhance the anti-tumor effect of the virus, resulting in long-term responses. This study shows that the intratumoral co-administration of Delta-24-RGD and a CD40 agonistic antibody is well tolerated and induces long-term anti-tumor immunity, including complete responses (up to 40%) in DMG preclinical models. Mechanistic studies revealed that this therapy increased tumor-proliferating T lymphocytes and …
Antitumor Efficacy Of Intermittent Low-Dose Erlotinib Plus Sulindac Via Mhc Upregulation And Remodeling Of The Immune Cell Niche, Chakrapani Tripathi, Jorge E Tovar Perez, Sabeeta Kapoor, Ahmed Muhsin, Wan Mohaiza Dashwood, Yunus Demirhan, Melek Demirhan, Alessandro Shapiro, Altaf Mohammed, Shizuko Sei, Jacklyn Thompson, Mahira Zaheer, Krishna M Sinha, Powel H Brown, Michelle I Savage, Eduardo Vilar, Praveen Rajendran, Roderick H Dashwood
Antitumor Efficacy Of Intermittent Low-Dose Erlotinib Plus Sulindac Via Mhc Upregulation And Remodeling Of The Immune Cell Niche, Chakrapani Tripathi, Jorge E Tovar Perez, Sabeeta Kapoor, Ahmed Muhsin, Wan Mohaiza Dashwood, Yunus Demirhan, Melek Demirhan, Alessandro Shapiro, Altaf Mohammed, Shizuko Sei, Jacklyn Thompson, Mahira Zaheer, Krishna M Sinha, Powel H Brown, Michelle I Savage, Eduardo Vilar, Praveen Rajendran, Roderick H Dashwood
Faculty, Staff and Student Publications
A previously reported clinical trial in familial adenomatous polyposis (FAP) patients treated with erlotinib plus sulindac (ERL + SUL) highlighted immune response/interferon-γ signaling as a key pathway. In this study, we combine intermittent low-dose ERL ± SUL treatment in the polyposis in rat colon (Pirc) model with mechanistic studies on tumor-associated immune modulation. At clinically relevant doses, short-term (16 weeks) and long-term (46 weeks) ERL ± SUL administration results in near-complete tumor suppression in Pirc colon and duodenum (p < 0.0001). We identify a low-dose threshold for significant antitumor activity in Pirc rats given SUL at 125 ppm in the diet plus ERL at 5 mg/kg body weight via twice-weekly oral gavage (SUL125 + ERL5 × 2). Longitudinal analyses show diminished expression of MHC class I and II genes in polyps larger than Grade 5, a novel finding in the Pirc model. Treatment with ERL ± SUL upregulates the corresponding MHC and immune-associated factors in a subset of Pirc colon polyps, Pirc tumor cell lines, murine colon carcinoma cells, and FAP patient-derived organoids, with Nlrc5 playing a critical role in this effect. Imaging mass cytometry reveals that SUL125 + ERL5 × 2 increases tumor-associated Cd4+ T cells by ~2.6-fold (p < 0.05), with no apparent effect on Cd8+ T cells. The treatment also increases tumor-associated Cd68+ cells (p < 0.05) and decreases Foxp3+ (p < 0.01) and Arg1+ (p < 0.05) cells. Thus, intermittent low-dose ERL + SUL treatment enhances tumor-associated MHC expression and remodels the immune cell niche toward a more permissive "helper" immune microenvironment. We conclude that early immune-interception strategies targeting interferon-γ signaling may benefit FAP patients at drug doses below the clinical standard of care.
Sensory Neuron-Expressed Fgf13 Controls Nociceptive Signaling In Diabetic Neuropathy Models, Aditya K Singh, Matteo Bernabucci, Nolan M Dvorak, Zahra Haghighijoo, Jessica Di Re, Nana A Goode, Feni K Kadakia, Laura A Maile, Olumarotimi O Folorunso, Paul A Wadsworth, Cynthia M Tapia, Pingyuan Wang, Jigong Wang, Haiying Chen, Yu Xue, Jully Singh, Kali Hankerd, Isaac J Gamez, Makenna Kager, Vincent Truong, Patrick Walsh, Stephanie I Shiers, Nishka Kuttanna, Hanyue Liao, Margherita Marchi, Erika Salvi, Ilaria D'Amato, Daniela D'Amico, Parsa Arman, Catharina G Faber, Rayaz A Malik, Marina De Tommaso, Dan Ziegler, Krishna Rajarathnam, Thomas A Green, Peter M Grace, Matthew R Sapio, Michael J Iadarola, Gregory D Cuny, Diana S Chow, Giuseppe Lauria Pinter, Steve Davidson, Dustin P Green, Jun-Ho La, Jin Mo Chung, Jia Zhou, Theodore J Price, Elizabeth Salisbury, Subo Yuan, Fernanda Laezza
Sensory Neuron-Expressed Fgf13 Controls Nociceptive Signaling In Diabetic Neuropathy Models, Aditya K Singh, Matteo Bernabucci, Nolan M Dvorak, Zahra Haghighijoo, Jessica Di Re, Nana A Goode, Feni K Kadakia, Laura A Maile, Olumarotimi O Folorunso, Paul A Wadsworth, Cynthia M Tapia, Pingyuan Wang, Jigong Wang, Haiying Chen, Yu Xue, Jully Singh, Kali Hankerd, Isaac J Gamez, Makenna Kager, Vincent Truong, Patrick Walsh, Stephanie I Shiers, Nishka Kuttanna, Hanyue Liao, Margherita Marchi, Erika Salvi, Ilaria D'Amato, Daniela D'Amico, Parsa Arman, Catharina G Faber, Rayaz A Malik, Marina De Tommaso, Dan Ziegler, Krishna Rajarathnam, Thomas A Green, Peter M Grace, Matthew R Sapio, Michael J Iadarola, Gregory D Cuny, Diana S Chow, Giuseppe Lauria Pinter, Steve Davidson, Dustin P Green, Jun-Ho La, Jin Mo Chung, Jia Zhou, Theodore J Price, Elizabeth Salisbury, Subo Yuan, Fernanda Laezza
Faculty, Staff and Student Publications
Nociception involves complex signaling, yet intrinsic mechanisms bidirectionally regulating this process remain unexplored. Here, we show that the fibroblast growth factor 13 (FGF13)/Nav1.7 protein-protein interaction (PPI) complex bidirectionally modulates nociception, and that the FGF13/Nav1.7 ratio is upregulated in type 2 diabetic neuropathy (T2DN). PW164, an FGF13/Nav1.7 channel C-terminal tail domain (CTD) PPI interface inhibitor, which reduces complex assembly, selectively suppressed Na+ currents sensitized by capsaicin-induced activation of TRPV1 channels in human induced pluripotent stem cell-derived (hIPSC-derived) sensory neurons and inhibited mechanical and thermal hyperalgesia in mice. FGF13 silencing mimics PW164 activity in culture and in vivo. Conversely, ZL192, an FGF13 …
Fgfr3-Induced Y158 Parp1 Phosphorylation Promotes Parp Inhibitor Resistance Via Brg1/Mre11-Mediated Dna Repair In Breast Cancer Models, Mei-Kuang Chen, Hirohito Yamaguchi, Yuan Gao, Weiya Xia, Jeffrey T Chang, Yu-Chun Hsiao, Tewodros W Shegute, Zong-Shin Lin, Chen-Shiou Wu, Yu-Han Wang, Jennifer K Litton, Qingqing Ding, Yongkun Wei, Yu-Yi Chu, Funda Meric-Bernstam, Helen Piwnica-Worms, Banu Arun, Jordi Rodon Ahnert, Jinsong Liu, Jun Yao, Wei-Chao Chang, Hung-Ling Wang, Coya Tapia, Constance T Albarracin, Khandan Keyomarsi, Shao-Chun Wang, Ying-Nai Wang, Gabriel N Hortobagyi, Chunru Lin, Liuqing Yang, Dihua Yu, Mien-Chie Hung
Fgfr3-Induced Y158 Parp1 Phosphorylation Promotes Parp Inhibitor Resistance Via Brg1/Mre11-Mediated Dna Repair In Breast Cancer Models, Mei-Kuang Chen, Hirohito Yamaguchi, Yuan Gao, Weiya Xia, Jeffrey T Chang, Yu-Chun Hsiao, Tewodros W Shegute, Zong-Shin Lin, Chen-Shiou Wu, Yu-Han Wang, Jennifer K Litton, Qingqing Ding, Yongkun Wei, Yu-Yi Chu, Funda Meric-Bernstam, Helen Piwnica-Worms, Banu Arun, Jordi Rodon Ahnert, Jinsong Liu, Jun Yao, Wei-Chao Chang, Hung-Ling Wang, Coya Tapia, Constance T Albarracin, Khandan Keyomarsi, Shao-Chun Wang, Ying-Nai Wang, Gabriel N Hortobagyi, Chunru Lin, Liuqing Yang, Dihua Yu, Mien-Chie Hung
Faculty, Staff and Student Publications
Poly(ADP-ribose) polymerase (PARP) inhibitors (PARPis) are used to treat BRCA-mutated (BRCAm) cancer patients; however, resistance has been observed. Therefore, biomarkers to indicate PARPi resistance and combination therapy to overcome that are urgently needed. We identified a high prevalence of activated FGF receptor 3 (FGFR3) in BRCAm triple-negative breast cancer (TNBC) cells with intrinsic and acquired PARPi resistance. FGFR3 phosphorylated PARP1 at tyrosine 158 (Y158) to recruit BRG1 and prolong chromatin-loaded MRE11, thus promoting homologous recombination (HR) to enhance PARPi resistance. FGFR inhibition prolonged PARP trapping and synergized with PARPi in vitro and in vivo. High-level PARP1 Y158 phosphorylation (p-Y158) positively …
Exogenous Arginine Differentially Regulates Inflammatory Cytokine And Inducible Nitric Oxide Synthase Expression In Macrophages, Kelsey Stayer, Saliha Pathan, Aalekhya Biswas, Huiqiao Li, Yi Zhu, Fong Wilson Lam, Juan Marini, Sundararajah Thevananther
Exogenous Arginine Differentially Regulates Inflammatory Cytokine And Inducible Nitric Oxide Synthase Expression In Macrophages, Kelsey Stayer, Saliha Pathan, Aalekhya Biswas, Huiqiao Li, Yi Zhu, Fong Wilson Lam, Juan Marini, Sundararajah Thevananther
Faculty, Staff and Students Publications
Immune dysfunction and late mortality from multiorgan failure are hallmarks of severe sepsis. Arginine, a semi-essential amino acid important for protein synthesis, immune response, and circulatory regulation, is deficient in sepsis. However, arginine supplementation in sepsis remains controversial due to the potential to upregulate inducible nitric oxide synthase (iNOS)-mediated excessive nitric oxide (NO) generation in macrophages, leading to vasodilation and hemodynamic catastrophe. Citrulline supplementation has been considered an alternative to replenishing arginine via de novo synthesis, orchestrated by argininosuccinate synthase 1 (ASS1) and argininosuccinate lyase (ASL). However, the functional relevance of the ASS1-ASL pathway in macrophages after endotoxin stimulation is …
A Mouse Model Engineered To Spatiotemporally Control Cre Expression In Progesterone Receptor Positive Cells†, Elvis Quiroz, Ryan M Marquardt, Shu-Yun Li, Artiom Gruzdev, David Cunefare, Charan Ganta, San-Pin Wu, John P Lydon, Francesco J Demayo
A Mouse Model Engineered To Spatiotemporally Control Cre Expression In Progesterone Receptor Positive Cells†, Elvis Quiroz, Ryan M Marquardt, Shu-Yun Li, Artiom Gruzdev, David Cunefare, Charan Ganta, San-Pin Wu, John P Lydon, Francesco J Demayo
Faculty, Staff and Students Publications
The Cre/loxP system is widely used for site-specific genetic manipulation in mice. The PgrCre mouse model, where Cre recombinase is driven by the progesterone receptor promoter, is commonly used for gene ablation in Pgr-positive uterine cells. However, the PgrCre is active in the neonatal uterus and does not allow temporal control. To enhance the functionality of the PgrCre mouse, we generated and characterized an inducible PgriCreERT2 mouse, in which iCreERT2 is inserted downstream of the endogenous Pgr promoter. PgriCreERT2 mice crossed with Rosa26-CAG-LSL-Sun1-sfGFP-myc reporter mice demonstrated tamoxifen-dependent recombination in uterine stromal fibroblasts and a subset of epithelial cells. Tamoxifen-induced ablation …
Ovochymase 2 Is A Key Regulatory Factor Modulating Proteolytic Pathways And Sperm Maturation In The Mammalian Epididymis, Katarzyna Kent, Kaori Nozawa, Antrix Jain, Anna Malovannaya, Thomas X Garcia, Martin M Matzuk
Ovochymase 2 Is A Key Regulatory Factor Modulating Proteolytic Pathways And Sperm Maturation In The Mammalian Epididymis, Katarzyna Kent, Kaori Nozawa, Antrix Jain, Anna Malovannaya, Thomas X Garcia, Martin M Matzuk
Faculty, Staff and Students Publications
Spermatozoa acquire fertilizing competence during epididymal transit through proteolytic, chaperone-mediated, and post-translational modifications. Ovochymase 2, an epididymis-specific trypsin-like serine protease, has emerged as a central regulator of this maturation process. Here, we integrate targeted gene disruption, comprehensive proteomic profiling, and affinity-based proteome enrichment to delineate how Ovochymase 2 influences sperm functionality. Deletion of Ovochymase 2 disrupts the proteome of epididymal sperm, resulting in diminished levels of core fertility-related factors-including a disintegrin and metalloprotease domain 3, β-defensins, and protease-inhibitor complexes-while inducing compensatory upregulation of alternate proteases and chaperones. Interaction assays confirm direct or indirect associations between Ovochymase 2 and sperm surface …
Src/Fn1 Pathway Activation Drives Tumor Cell Cluster Formation And Metastasis In Lung Cancer: A Promising Therapeutic Target, Zujun Que, Zhichao Xi, Dan Qi, Rongchen Dai, Yang Li, Mengfan Liu, Bin Luo, Jiajun Liu, Pan Yu, Yun Yang, Erxi Wu, Hongxi Xu, Jianhui Tian
Src/Fn1 Pathway Activation Drives Tumor Cell Cluster Formation And Metastasis In Lung Cancer: A Promising Therapeutic Target, Zujun Que, Zhichao Xi, Dan Qi, Rongchen Dai, Yang Li, Mengfan Liu, Bin Luo, Jiajun Liu, Pan Yu, Yun Yang, Erxi Wu, Hongxi Xu, Jianhui Tian
Children’s Nutrition Research Center Staff Publications
Lung cancer remains the leading cause of cancer-related death globally, with metastasis driven by circulating tumor cells (CTCs)-particularly clusters-being a major treatment challenge. Despite their critical role, the biological differences between single CTCs and CTC clusters remain unclear. Here, we comprehensively compared their behavioral, transcriptomic, and proteomic profiles in lung cancer models. Compared with single cells, CTC clusters present enhanced metastatic potential, greater survival in the bloodstream and increased resistance to microenvironment. Mechanistically, the Src/FN1 pathway is centrally activated in clusters, promoting intercellular cohesion and protecting against immune clearance and stress in circulation. Pharmacological inhibition of Src with the clinical …
Mir-302a/B/D-3p Differentially Expressed During Frontonasal Development Is Sensitive To Retinoic Acid Exposure, Chihiro Iwaya, Akiko Suzuki, Goo Jun, Junichi Iwata
Mir-302a/B/D-3p Differentially Expressed During Frontonasal Development Is Sensitive To Retinoic Acid Exposure, Chihiro Iwaya, Akiko Suzuki, Goo Jun, Junichi Iwata
Faculty, Staff and Student Publications
Any failure in frontonasal development can lead to malformations at the middle facial region, such as frontonasal dysplasia, midfacial clefts, and hyper/hypotelorism. Various environmental factors influence morphogenesis through epigenetic regulations, including the action of noncoding microRNAs (miRNAs). However, it remains unclear how miRNAs are involved in the frontonasal development. In our analysis of publicly available miRNA-seq and RNA-seq datasets, we found that miR-28a-5p, miR-302a-3p, miR-302b-3p, and miR-302d-3p were differentially expressed in the frontonasal process during embryonic days 10.5 to 13.5 (E10.5–E13.5) in mice. Overexpression of these miRNAs led to a suppression of cell proliferation in cultured mouse embryonic frontonasal mesenchymal …
Establishment Of A Reverse Genetics System For Studying Human Immune Functions In Mice, Priya Pal, Shuai Gao, Hongbo Gao, Xiwen Qin, Marina Cella, Qiankun Wang, Liang Shan
Establishment Of A Reverse Genetics System For Studying Human Immune Functions In Mice, Priya Pal, Shuai Gao, Hongbo Gao, Xiwen Qin, Marina Cella, Qiankun Wang, Liang Shan
2020-Current year OA Pubs
Reverse genetics approaches in mice are widely used to understand gene functions and their aberrations in diseases. However, limitations exist in translating findings from animal models to human physiology. Humanized mice provide a powerful bridge to understanding human physiology and mechanisms of disease pathogenesis while maintaining the feasibility of working with small animals. Methods for generating humanized mouse models that allow scientists to probe contributions of particular genes have been rudimentary. Here, we established an efficient method for generating genetically modified human cord blood-derived CD34
Integrase-Deficient Lentiviral Vector As A Platform For Efficient Crispr/Cas9-Mediated Gene Editing For Mucopolysaccharidosis Iva, Fnu Nidhi, Shunji Tomatsu
Integrase-Deficient Lentiviral Vector As A Platform For Efficient Crispr/Cas9-Mediated Gene Editing For Mucopolysaccharidosis Iva, Fnu Nidhi, Shunji Tomatsu
Department of Pediatrics Faculty Papers
Mucopolysaccharidosis IVA (MPS IVA) is a lysosomal storage disorder causing systemic skeletal dysplasia due to a deficiency of N-acetyl-galactosamine-6-sulfate sulfatase (GALNS) enzyme activity, leading to the impaired degradation and accumulation of glycosaminoglycans (GAGs), keratan sulfate (KS) and chondroitin-6-sulfate. While treatments such as enzyme replacement therapy (ERT) and hematopoietic stem cell transplantation (HSCT) are available, they have significant limitations regarding efficacy in skeletal tissues and long-term safety, highlighting the need for more effective therapies. We evaluated a novel gene therapy approach using a dual Integrase-deficient lentiviral vector (IDLV) to deliver an expression cassette that includes human GALNS cDNA and Cas9 sgRNA, …
Blunted Cd40-Responsive Enhancer Activation In Crebbp-Mutant Lymphomas Can Be Restored By Enforced Cd4 T-Cell Engagement, Haopeng Yang, Wenchao Zhang, Vida Ravanmehr, Guiling Cui, Kevin Bowman, Ruidong Chen, Jared M Henderson, Shyanne Lockman, Estela Rojas, Ashley Wilson, Sydney Parsons, Ariel Mechaly, Leslie Regad, Ahmed Haouz, Christopher R Flowers, Sattva Neelapu, Loretta Nastoupil, R Eric Davis, Qing Deng, Fernando Rodrigues-Lima, Michael R Green
Blunted Cd40-Responsive Enhancer Activation In Crebbp-Mutant Lymphomas Can Be Restored By Enforced Cd4 T-Cell Engagement, Haopeng Yang, Wenchao Zhang, Vida Ravanmehr, Guiling Cui, Kevin Bowman, Ruidong Chen, Jared M Henderson, Shyanne Lockman, Estela Rojas, Ashley Wilson, Sydney Parsons, Ariel Mechaly, Leslie Regad, Ahmed Haouz, Christopher R Flowers, Sattva Neelapu, Loretta Nastoupil, R Eric Davis, Qing Deng, Fernando Rodrigues-Lima, Michael R Green
Faculty, Staff and Student Publications
The CREBBP lysine acetyltransferase (KAT) is frequently mutated in follicular lymphoma and diffuse large B-cell lymphoma and has been studied using gene knockout in murine and human cells. However, most CREBBP mutations encode amino acid substitutions within the catalytic KAT domain (CREBBP KAT-PM) that retain an inactive protein and have not been extensively characterized. Using CRISPR gene editing and extensive epigenomic characterization of lymphoma cell lines, we found that CREBBP KAT-PM lead to unloading of CREBBP from chromatin, loss of enhancer acetylation, and prevention of EP300 compensation. These enhancers were enriched for those that are dynamically loaded by CREBBP in …
Systems Genetics Reveals The Influence Of Expression Qtls In Mouse Embryonic Stem Cells On Transcriptional Variation Later In Differentiated Neural Progenitor Cells., Selcan Aydin, Daniel A Skelly, Hannah B Dewey, J Matthew Mahoney, Ted Choi, Laura G Reinholdt, Christopher L. Baker, Steven C. Munger
Systems Genetics Reveals The Influence Of Expression Qtls In Mouse Embryonic Stem Cells On Transcriptional Variation Later In Differentiated Neural Progenitor Cells., Selcan Aydin, Daniel A Skelly, Hannah B Dewey, J Matthew Mahoney, Ted Choi, Laura G Reinholdt, Christopher L. Baker, Steven C. Munger
Faculty Research 2025
Genetic variation leads to phenotypic variability in pluripotent stem cells that presents challenges for regenerative medicine. Although recent studies have investigated the impact of genetic variation on pluripotency maintenance and differentiation capacity, less is known about how genetic variants affecting the pluripotent state influence gene regulation later in development. Here, we characterized expression of 12,000 genes in a large panel of donor-matched Diversity Outbred mouse embryonic stem cell and mouse neural progenitor cell lines. QTL mapping identified 4,060 expression QTLs in mouse neural progenitor cells, including 2,998 local and 1,062 distant expression QTLs. In a comparison of mouse neural progenitor …
Distinct Systemic Impacts Of Aβ42 And Tau Revealed By Whole-Organism Snrna-Seq, Ye-Jin Park, Tzu-Chiao Lu, Tyler Jackson, Lindsey D Goodman, Lindsey Ran, Jiaye Chen, Chung-Yi Liang, Erin Harrison, Christina Ko, Xi Chen, Baiping Wang, Ao-Lin Hsu, Elizabeth Ochoa, Kevin F Bieniek, Shinya Yamamoto, Yi Zhu, Hui Zheng, Yanyan Qi, Hugo J Bellen, Hongjie Li
Distinct Systemic Impacts Of Aβ42 And Tau Revealed By Whole-Organism Snrna-Seq, Ye-Jin Park, Tzu-Chiao Lu, Tyler Jackson, Lindsey D Goodman, Lindsey Ran, Jiaye Chen, Chung-Yi Liang, Erin Harrison, Christina Ko, Xi Chen, Baiping Wang, Ao-Lin Hsu, Elizabeth Ochoa, Kevin F Bieniek, Shinya Yamamoto, Yi Zhu, Hui Zheng, Yanyan Qi, Hugo J Bellen, Hongjie Li
Faculty, Staff and Students Publications
Both neuronal and peripheral tissues become disrupted in Alzheimer's disease (AD). However, a comprehensive understanding of how AD impacts different tissues across the whole organism is lacking. Using Drosophila, we generated an AD Fly Cell Atlas (AD-FCA) based on whole-organism single-nucleus transcriptomes of 219 cell types from flies expressing AD-associated proteins, either human amyloid-β 42 peptide (Aβ42) or Tau, in neurons. We found that Aβ42 primarily affects the nervous system, including sensory neurons, while Tau induces accelerated aging in peripheral tissues. We identified a neuronal cluster enriched in Aβ42 flies, which has high lactate dehydrogenase (LDH) expression. This LDH-high cluster …
Pi(4)P Recruits Cide Proteins To Promote The Formation Of Unilocular Lipid Droplets During Adipogenesis And Hepatic Steatosis, Jin Wu, Mingming Gao, Xiaoqin Wu, Yang Liu, Taiping Zhang, Yan Liang, Haixia Yang, Chengxin Ma, Youpi Ye, Chunmei Chang, Peng Li, Feng-Jung Chen, Hongyuan Yang
Pi(4)P Recruits Cide Proteins To Promote The Formation Of Unilocular Lipid Droplets During Adipogenesis And Hepatic Steatosis, Jin Wu, Mingming Gao, Xiaoqin Wu, Yang Liu, Taiping Zhang, Yan Liang, Haixia Yang, Chengxin Ma, Youpi Ye, Chunmei Chang, Peng Li, Feng-Jung Chen, Hongyuan Yang
Faculty, Staff and Student Publications
Lipid droplets (LDs) are evolutionarily conserved organelles that play important roles in metabolism. Each LD is enclosed by a monolayer of phospholipids, distinct from bilayer membranes. The composition of LD surface phospholipids and their impact on LD growth and function remain to be defined. Phosphoinositides mark cellular organelles and regulate organellar function. Here, we demonstrate that PI(4)P decorates a subset of LDs to recruit and activate CIDE proteins. Enhanced expression of ORP2 and ORP5, LD-associated lipid transfer proteins that remove PI(4)P from LDs, abolished the localization and function of CIDE proteins. Blocking the synthesis of PI(4)P on the LD surface …
Opposing Roles For Myeloid And Smooth Muscle Cell Sting In Pulmonary Hypertension, Ann T Pham, Shiza Virk, Aline C Oliveira, Matthew D Alves, Chunhua Fu, Yutao Zhang, Jimena Alvarez-Castanon, Brian B Lee, Keira L Lee, Radwan Mashina, Katherine E Ray, Patrick Donabedian, Elnaz Ebrahimi, Harsh Patel, Reeha Patel, Duncan Lewis, Zhiguang Huo, Harry Karmouty-Quintana, Li Chen, Lei Jin, Andrew J Bryant
Opposing Roles For Myeloid And Smooth Muscle Cell Sting In Pulmonary Hypertension, Ann T Pham, Shiza Virk, Aline C Oliveira, Matthew D Alves, Chunhua Fu, Yutao Zhang, Jimena Alvarez-Castanon, Brian B Lee, Keira L Lee, Radwan Mashina, Katherine E Ray, Patrick Donabedian, Elnaz Ebrahimi, Harsh Patel, Reeha Patel, Duncan Lewis, Zhiguang Huo, Harry Karmouty-Quintana, Li Chen, Lei Jin, Andrew J Bryant
Faculty, Staff and Student Publications
There is an emerging role for stimulator of interferon genes (STING) signaling in pulmonary hypertension (PH) development. Related to this, prior research has demonstrated the relevance of immune checkpoint protein programmed death ligand 1 (PD-L1) expression by immunoregulatory myeloid cells in PH. However, there remains a need to elucidate the cell-specific role of STING expression, and the STING/PD-L1 signaling axis in PH, before readily available disease-modifying therapies can be applied for patients with the disease. Here, through generation of bone marrow chimeric mice, we show that STING-/- mice receiving WT bone marrow were protected against PH secondary to chronic hypoxia. …
Total Synthesis And Biological Activity Of "Carbamorphine": O-To-Ch2 Replacement In The E-Ring Of The Morphine Core Structure, Sota Akiyama, Rohini S Ople, Alexander Kremsmair, Nokomis Ramos-Gonzalez, Thomas Nedungadan, Brandon J Kennedy, Kevin Appourchaux, Shainnel O Eans, Bowen A Tsai, Christina Kraml, Xi-Ping Huang, Jay P Mclaughlin, Susruta Majumdar, Richmond Sarpong
Total Synthesis And Biological Activity Of "Carbamorphine": O-To-Ch2 Replacement In The E-Ring Of The Morphine Core Structure, Sota Akiyama, Rohini S Ople, Alexander Kremsmair, Nokomis Ramos-Gonzalez, Thomas Nedungadan, Brandon J Kennedy, Kevin Appourchaux, Shainnel O Eans, Bowen A Tsai, Christina Kraml, Xi-Ping Huang, Jay P Mclaughlin, Susruta Majumdar, Richmond Sarpong
2020-Current year OA Pubs
Morphine is a µ-opioid receptor (MOR) agonist and potent analgesic. However, it displays several side effects including respiratory depression and addiction. Here, we show that a single heavy atom replacement in the morphine core structure (O to CH
Mtor Signaling Regulates The Development Of Airway Mucous Cell Metaplasia Associated With Severe Asthma, Katrina M. Kudrna, Luis F. Vilches, Evan M. Eilers, Shailendra K. Maurya, Steven L. Brody, Amjad Horani, Kristina L. Bailey, Todd A. Wyatt, John D. Dickinson
Mtor Signaling Regulates The Development Of Airway Mucous Cell Metaplasia Associated With Severe Asthma, Katrina M. Kudrna, Luis F. Vilches, Evan M. Eilers, Shailendra K. Maurya, Steven L. Brody, Amjad Horani, Kristina L. Bailey, Todd A. Wyatt, John D. Dickinson
2020-Current year OA Pubs
In asthma, airway epithelial remodeling is characterized by aberrant goblet cell metaplastic differentiation accompanied by epithelial cell hyperplasia and hypertrophy. These pathologic features in severe asthma indicate a loss of control of proliferation, cell size, differentiation, and migration. MTOR is a highly conserved pathway that regulates protein synthesis, cell size, and proliferation. We hypothesized that the balance between MTOR and autophagy regulates mucous cell metaplasia. Airways from individuals with severe asthma showed increased MTOR signaling by RPS6 phosphorylation, which was reproduced using an IL-13-activated model of primary human airway epithelial cells (hAEC). MTOR inhibition by rapamycin led to a decrease …
Overexpression Of Tsg101 Causes The Development Of Adenosquamous Mammary Carcinoma, Rayane Dennaoui, Patrick D. Rädler, Madison N. Wicker, Kerry Vistisen, Rosa-Maria Ferraiuolo, Aleata A. Triplett, Hridaya Shrestha, Tessa A. Liner, Karoline C. Manthey, Hallgeir Rui, Robert D. Cardiff, Teresa M. Gunn, Charles M. Perou, Kay-Uwe Wagner
Overexpression Of Tsg101 Causes The Development Of Adenosquamous Mammary Carcinoma, Rayane Dennaoui, Patrick D. Rädler, Madison N. Wicker, Kerry Vistisen, Rosa-Maria Ferraiuolo, Aleata A. Triplett, Hridaya Shrestha, Tessa A. Liner, Karoline C. Manthey, Hallgeir Rui, Robert D. Cardiff, Teresa M. Gunn, Charles M. Perou, Kay-Uwe Wagner
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
BACKGROUND: The mammalian Tumor Susceptibility Gene 101 (TSG101) encodes a protein with diverse functions that control the proliferation and survival of cells, but its role in malignant transformation and cancer development has remained enigmatic.
METHODS: To study the pro-tumorigenic functions of TSG101, we developed a bi-transgenic mouse model that expresses exogenous TSG101 along with a luciferase reporter in a ligand-controlled manner in the mammary gland epithelium. We performed a comprehensive histopathologic, biochemical, and molecular characterization of ductal hyperplasia and mammary tumors. Unsupervised hierarchical clustering based on 1,723 intrinsic genes of ten TSG101-overexpressing cancers alongside 251 tissue samples representing 31 reference …