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Full-Text Articles in Genetic Phenomena

A Functional Link Between Lariat Debranching Enzyme And The Intron-Binding Complex Is Defective In Non-Photosensitive Trichothiodystrophy, Brittany A Townley, Luke Buerer, Ning Tsao, Albino Bacolla, Fadhel Mansoori, Timur Rusanov, Nathanial Clark, Negar Goodarzi, Nicolas Schmidt, Sridhar Nonavinkere Srivatsan, Hua Sun, Reilly A Sample, Joshua R Brickner, Drew Mcdonald, Miaw-Sheue Tsai, Matthew J Walter, David F Wozniak, Alex S Holehouse, Vladimir Pena, John A Tainer, William G Fairbrother, Nima Mosammaparast Jul 2023

A Functional Link Between Lariat Debranching Enzyme And The Intron-Binding Complex Is Defective In Non-Photosensitive Trichothiodystrophy, Brittany A Townley, Luke Buerer, Ning Tsao, Albino Bacolla, Fadhel Mansoori, Timur Rusanov, Nathanial Clark, Negar Goodarzi, Nicolas Schmidt, Sridhar Nonavinkere Srivatsan, Hua Sun, Reilly A Sample, Joshua R Brickner, Drew Mcdonald, Miaw-Sheue Tsai, Matthew J Walter, David F Wozniak, Alex S Holehouse, Vladimir Pena, John A Tainer, William G Fairbrother, Nima Mosammaparast

Faculty, Staff and Student Publications

The pre-mRNA life cycle requires intron processing; yet, how intron-processing defects influence splicing and gene expression is unclear. Here, we find that TTDN1/MPLKIP, which is encoded by a gene implicated in non-photosensitive trichothiodystrophy (NP-TTD), functionally links intron lariat processing to spliceosomal function. The conserved TTDN1 C-terminal region directly binds lariat debranching enzyme DBR1, whereas its N-terminal intrinsically disordered region (IDR) binds the intron-binding complex (IBC). TTDN1 loss, or a mutated IDR, causes significant intron lariat accumulation, as well as splicing and gene expression defects, mirroring phenotypes observed in NP-TTD patient cells. A Ttdn1-deficient mouse model recapitulates intron-processing defects and certain …


The Swi/Snf Chromatin-Remodeling Subunit Dpf2 Facilitates Nrf2-Dependent Antiinflammatory And Antioxidant Gene Expression, Gloria Mas, Na Man, Yuichiro Nakata, Concepcion Martinez-Caja, Daniel Karl, Felipe Beckedorff, Francesco Tamiro, Chuan Chen, Stephanie Duffort, Hidehiro Itonaga, Adnan K Mookhtiar, Kranthi Kunkalla, Alfredo M Valencia, Clayton K Collings, Cigall Kadoch, Francisco Vega, Scott C Kogan, Ramin Shiekhattar, Lluis Morey, Daniel Bilbao, Stephen D Nimer Jul 2023

The Swi/Snf Chromatin-Remodeling Subunit Dpf2 Facilitates Nrf2-Dependent Antiinflammatory And Antioxidant Gene Expression, Gloria Mas, Na Man, Yuichiro Nakata, Concepcion Martinez-Caja, Daniel Karl, Felipe Beckedorff, Francesco Tamiro, Chuan Chen, Stephanie Duffort, Hidehiro Itonaga, Adnan K Mookhtiar, Kranthi Kunkalla, Alfredo M Valencia, Clayton K Collings, Cigall Kadoch, Francisco Vega, Scott C Kogan, Ramin Shiekhattar, Lluis Morey, Daniel Bilbao, Stephen D Nimer

Faculty, Staff and Student Publications

During emergency hematopoiesis, hematopoietic stem cells (HSCs) rapidly proliferate to produce myeloid and lymphoid effector cells, a response that is critical against infection or tissue injury. If unresolved, this process leads to sustained inflammation, which can cause life-threatening diseases and cancer. Here, we identify a role of double PHD fingers 2 (DPF2) in modulating inflammation. DPF2 is a defining subunit of the hematopoiesis-specific BAF (SWI/SNF) chromatin-remodeling complex, and it is mutated in multiple cancers and neurological disorders. We uncovered that hematopoiesis-specific Dpf2-KO mice developed leukopenia, severe anemia, and lethal systemic inflammation characterized by histiocytic and fibrotic tissue infiltration resembling a …


Ywhae Loss Of Function Causes A Rare Neurodevelopmental Disease With Brain Abnormalities In Human And Mouse, Anne-Sophie Denommé-Pichon, Stephan C Collins, Ange-Line Bruel, Anna Mikhaleva, Christel Wagner, Valerie E Vancollie, Quentin Thomas, Martin Chevarin, Mathys Weber, Carlos E Prada, Alexis Overs, María Palomares-Bralo, Fernando Santos-Simarro, Marta Pacio-Míguez, Tiffany Busa, Eric Legius, Carlos A Bacino, Jill A Rosenfeld, Gwenaël Le Guyader, Matthieu Egloff, Xavier Le Guillou, Maria Antonietta Mencarelli, Alessandra Renieri, Salvatore Grosso, Jonathan Levy, Blandine Dozières, Isabelle Desguerre, Antonio Vitobello, Yannis Duffourd, Christopher J Lelliott, Christel Thauvin-Robinet, Christophe Philippe, Laurence Faivre, Binnaz Yalcin Jul 2023

Ywhae Loss Of Function Causes A Rare Neurodevelopmental Disease With Brain Abnormalities In Human And Mouse, Anne-Sophie Denommé-Pichon, Stephan C Collins, Ange-Line Bruel, Anna Mikhaleva, Christel Wagner, Valerie E Vancollie, Quentin Thomas, Martin Chevarin, Mathys Weber, Carlos E Prada, Alexis Overs, María Palomares-Bralo, Fernando Santos-Simarro, Marta Pacio-Míguez, Tiffany Busa, Eric Legius, Carlos A Bacino, Jill A Rosenfeld, Gwenaël Le Guyader, Matthieu Egloff, Xavier Le Guillou, Maria Antonietta Mencarelli, Alessandra Renieri, Salvatore Grosso, Jonathan Levy, Blandine Dozières, Isabelle Desguerre, Antonio Vitobello, Yannis Duffourd, Christopher J Lelliott, Christel Thauvin-Robinet, Christophe Philippe, Laurence Faivre, Binnaz Yalcin

Faculty, Staff and Students Publications

Purpose: Miller-Dieker syndrome is caused by a multiple gene deletion, including PAFAH1B1 and YWHAE. Although deletion of PAFAH1B1 causes lissencephaly unambiguously, deletion of YWHAE alone has not clearly been linked to a human disorder.

Methods: Cases with YWHAE variants were collected through international data sharing networks. To address the specific impact of YWHAE loss of function, we phenotyped a mouse knockout of Ywhae.

Results: We report a series of 10 individuals with heterozygous loss-of-function YWHAE variants (3 single-nucleotide variants and 7 deletions < 1 Mb encompassing YWHAE but not PAFAH1B1), including 8 new cases and 2 follow-ups, added with 5 cases (copy number variants) from literature review. Although, until now, only 1 intragenic deletion has been described in YWHAE, we report 4 new variants specifically in YWHAE (3 splice variants and 1 intragenic deletion). The most frequent manifestations are developmental delay, delayed speech, seizures, and brain malformations, including corpus callosum hypoplasia, delayed myelination, and ventricular dilatation. Individuals with variants affecting YWHAE alone have milder features than those with larger deletions. Neuroanatomical studies in Ywhae-/- mice revealed brain structural defects, including thin cerebral cortex, corpus callosum dysgenesis, and hydrocephalus paralleling those seen in humans.

Conclusion: This study further demonstrates that YWHAE loss-of-function variants cause a neurodevelopmental disease with brain abnormalities.


Reprogramming Tumour-Associated Macrophages To Outcompete Cancer Cells, Xian Zhang, Shun Li, Isha Malik, Mytrang H Do, Liangliang Ji, Chun Chou, Wei Shi, Kristelle J Capistrano, Jing Zhang, Ting-Wei Hsu, Briana G Nixon, Ke Xu, Xinxin Wang, Andrea Ballabio, Laura S Schmidt, W Marston Linehan, Ming O Li Jul 2023

Reprogramming Tumour-Associated Macrophages To Outcompete Cancer Cells, Xian Zhang, Shun Li, Isha Malik, Mytrang H Do, Liangliang Ji, Chun Chou, Wei Shi, Kristelle J Capistrano, Jing Zhang, Ting-Wei Hsu, Briana G Nixon, Ke Xu, Xinxin Wang, Andrea Ballabio, Laura S Schmidt, W Marston Linehan, Ming O Li

Duncan NRI Faculty and Staff Publications

In metazoan organisms, cell competition acts as a quality control mechanism to eliminate unfit cells in favour of their more robust neighbours1,2. This mechanism has the potential to be maladapted, promoting the selection of aggressive cancer cells3-6. Tumours are metabolically active and are populated by stroma cells7,8, but how environmental factors affect cancer cell competition remains largely unknown. Here we show that tumour-associated macrophages (TAMs) can be dietarily or genetically reprogrammed to outcompete MYC-overexpressing cancer cells. In a mouse model of breast cancer, MYC overexpression resulted in an mTORC1-dependent 'winner' cancer cell state. A low-protein diet inhibited mTORC1 signalling in …


A Cre Driver Line For Genetic Targeting Of Kappa Opioid Receptor Expressing Cells, Franciely Paliarin, Chelsea Duplantis, Andrea F Jones, Jessica Cucinello-Ragland, Samhita Basavanhalli, Emily Blaze, Evan Doré, Anna Isabella Neel, Haiguo Sun, Rong Chen, Scott Edwards, Nicholas W Gilpin, Robert O Messing, Rajani Maiya Jul 2023

A Cre Driver Line For Genetic Targeting Of Kappa Opioid Receptor Expressing Cells, Franciely Paliarin, Chelsea Duplantis, Andrea F Jones, Jessica Cucinello-Ragland, Samhita Basavanhalli, Emily Blaze, Evan Doré, Anna Isabella Neel, Haiguo Sun, Rong Chen, Scott Edwards, Nicholas W Gilpin, Robert O Messing, Rajani Maiya

Faculty, Staff and Student Publications

Here we describe the generation and characterization of a Cre knock-in mouse line that harbors a Cre insertion in the 3′UTR of the κ opioid receptor gene (Oprk1) locus and provides genetic access to populations of κ opioid receptor (KOR)-expressing neurons throughout the brain. Using a combination of techniques including RNA in situ hybridization and immunohistochemistry, we report that Cre is expressed with high fidelity in KOR-expressing cells throughout the brain in this mouse line. We also provide evidence that Cre insertion does not alter basal KOR function. Baseline anxiety-like behaviors and nociceptive thresholds are unaltered in Oprk1-Cre …


Neoadjuvant Immunotherapy For Advanced, Resectable Non-Small Cell Lung Cancer: A Systematic Review And Meta-Analysis, Yajing Wu, Vivek Verma, Carl M Gay, Yujia Chen, Fei Liang, Qiang Lin, Jianing Wang, Wei Zhang, Zhouguang Hui, Min Zhao, Jun Wang, Joe Y Chang Jul 2023

Neoadjuvant Immunotherapy For Advanced, Resectable Non-Small Cell Lung Cancer: A Systematic Review And Meta-Analysis, Yajing Wu, Vivek Verma, Carl M Gay, Yujia Chen, Fei Liang, Qiang Lin, Jianing Wang, Wei Zhang, Zhouguang Hui, Min Zhao, Jun Wang, Joe Y Chang

Faculty, Staff and Student Publications

Background: Neoadjuvant immunotherapy (nIT) is a rapidly emerging paradigm for advanced resectable non-small cell lung cancer (NSCLC). The objectives of this PRISMA/MOOSE/PICOD-guided systematic review and meta-analysis were (1) to assess the safety and efficacy of nIT, (2) to compare the safety and efficacy of neoadjuvant chemoimmunotherapy (nCIT) versus chemotherapy alone (nCT), and (3) to explore predictors of pathologic response with nIT and their association with outcomes.

Methods: Eligibility was resectable stage I-III NSCLC and the receipt of programmed death-1/programmed cell death ligand-1 (PD-L1)/cytotoxic T-lymphocyte-associated antigen-4 inhibitors before resection; other forms and modalities of neoadjuvant and/or adjuvant therapies were allowed. For …


Screening Hydrogels For Antifibrotic Properties By Implanting Cellularly Barcoded Alginates In Mice And A Non-Human Primate, Sudip Mukherjee, Boram Kim, Lauren Y Cheng, Michael David Doerfert, Jiaming Li, Andrea Hernandez, Lily Liang, Maria I Jarvis, Peter D Rios, Sofia Ghani, Ira Joshi, Douglas Isa, Trisha Ray, Tanguy Terlier, Cody Fell, Ping Song, Roberto N Miranda, Jose Oberholzer, David Yu Zhang, Omid Veiseh Jul 2023

Screening Hydrogels For Antifibrotic Properties By Implanting Cellularly Barcoded Alginates In Mice And A Non-Human Primate, Sudip Mukherjee, Boram Kim, Lauren Y Cheng, Michael David Doerfert, Jiaming Li, Andrea Hernandez, Lily Liang, Maria I Jarvis, Peter D Rios, Sofia Ghani, Ira Joshi, Douglas Isa, Trisha Ray, Tanguy Terlier, Cody Fell, Ping Song, Roberto N Miranda, Jose Oberholzer, David Yu Zhang, Omid Veiseh

Faculty, Staff and Student Publications

Screening implantable biomaterials for antifibrotic properties is constrained by the need for in vivo testing. Here we show that the throughput of in vivo screening can be increased by cellularly barcoding a chemically modified combinatorial library of hydrogel formulations. The method involves the implantation of a mixture of alginate formulations, each barcoded with human umbilical vein endothelial cells from different donors, and the association of the identity and performance of each formulation by genotyping single nucleotide polymorphisms of the cells via next-generation sequencing. We used the method to screen 20 alginate formulations in a single mouse and 100 alginate formulations …


Nanoparticle-Enhanced Proton Beam Immunoradiotherapy Drives Immune Activation And Durable Tumor Rejection, Yun Hu, Sébastien Paris, Narayan Sahoo, Genevieve Bertolet, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Jordan Da Silva, Ailing Huang, Denaha J Doss, David P Pollock, Ethan Hsu, Nanez Selene, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Shonik Ganjoo, Carola Leuschner, Jordan T Pietz, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh Jun 2023

Nanoparticle-Enhanced Proton Beam Immunoradiotherapy Drives Immune Activation And Durable Tumor Rejection, Yun Hu, Sébastien Paris, Narayan Sahoo, Genevieve Bertolet, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Jordan Da Silva, Ailing Huang, Denaha J Doss, David P Pollock, Ethan Hsu, Nanez Selene, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Shonik Ganjoo, Carola Leuschner, Jordan T Pietz, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh

Faculty, Staff and Student Publications

The combination of radiation therapy (RT) and immunotherapy has emerged as a promising treatment option in oncology. Historically, x-ray radiation (XRT) has been the most commonly used form of RT. However, proton beam therapy (PBT) is gaining recognition as a viable alternative, as it has been shown to produce similar outcomes to XRT while minimizing off-target effects. The effects of PBT on the antitumor immune response have only just begun to be described, and to our knowledge no studies to date have examined the effect of PBT as part of a combinatorial immunoradiotherapeutic strategy. Here, using a 2-tumor model of …


Extracellular Rna Sensing Mediates Inflammation And Organ Injury In A Murine Model Of Polytrauma, Andrew O Suen, Fengqian Chen, Sheng Wang, Ziyi Li, Jing Zhu, Yang Yang, Olivia Conn, Kerri Lopez, Ping Cui, Laurence Wechsler, Alan Cross, Gary Fiskum, Rosemary Kozar, Peter Hu, Catriona Miller, Lin Zou, Brittney Williams, Wei Chao Jun 2023

Extracellular Rna Sensing Mediates Inflammation And Organ Injury In A Murine Model Of Polytrauma, Andrew O Suen, Fengqian Chen, Sheng Wang, Ziyi Li, Jing Zhu, Yang Yang, Olivia Conn, Kerri Lopez, Ping Cui, Laurence Wechsler, Alan Cross, Gary Fiskum, Rosemary Kozar, Peter Hu, Catriona Miller, Lin Zou, Brittney Williams, Wei Chao

Faculty, Staff and Student Publications

Severe traumatic injury leads to marked systemic inflammation and multiorgan injury. Endogenous drivers such as extracellular nucleic acid may play a role in mediating innate immune response and the downstream pathogenesis. Here, we explored the role of plasma extracellular RNA (exRNA) and its sensing mechanism in inflammation and organ injury in a murine model of polytrauma. We found that severe polytrauma—bone fracture, muscle crush injury, and bowel ischemia—induced a marked increase in plasma exRNA, systemic inflammation, and multiorgan injury in mice. Plasma RNA profiling with RNA sequencing in mice and humans revealed a dominant presence of miRNAs and marked differential …


The Insulin Receptor Regulates The Persistence Of Mechanical Nociceptive Sensitization In Flies And Mice, Yan Wang, Roger Lopez-Bellido, Xiaojiao Huo, Annemieke Kavelaars, Michael J Galko Jun 2023

The Insulin Receptor Regulates The Persistence Of Mechanical Nociceptive Sensitization In Flies And Mice, Yan Wang, Roger Lopez-Bellido, Xiaojiao Huo, Annemieke Kavelaars, Michael J Galko

Faculty, Staff and Student Publications

Early phase diabetes is often accompanied by pain sensitization. In Drosophila, the insulin receptor (InR) regulates the persistence of injury-induced thermal nociceptive sensitization. Whether Drosophila InR also regulates the persistence of mechanical nociceptive sensitization remains unclear. Mice with a sensory neuron deletion of the insulin receptor (Insr) show normal nociceptive baselines; however, it is uncertain whether deletion of Insr in nociceptive sensory neurons leads to persistent nociceptive hypersensitivity. In this study, we used fly and mouse nociceptive sensitization models to address these questions. In flies, InR mutants and larvae with sensory neuron-specific expression of RNAi transgenes targeting InR exhibited persistent …


Hematopoietic Progenitor Kinase 1 Inhibits The Development And Progression Of Pancreatic Intraepithelial Neoplasia, Hua Wang, Rohan Moniruzzaman, Lei Li, Baoan Ji, Yi Liu, Xiangsheng Zuo, Reza Abbasgholizadeh, Jun Zhao, Guangchao Liu, Ruiqi Wang, Hongli Tang, Ryan Sun, Xiaoping Su, Tse-Hua Tan, Anirban Maitra, Huamin Wang Jun 2023

Hematopoietic Progenitor Kinase 1 Inhibits The Development And Progression Of Pancreatic Intraepithelial Neoplasia, Hua Wang, Rohan Moniruzzaman, Lei Li, Baoan Ji, Yi Liu, Xiangsheng Zuo, Reza Abbasgholizadeh, Jun Zhao, Guangchao Liu, Ruiqi Wang, Hongli Tang, Ryan Sun, Xiaoping Su, Tse-Hua Tan, Anirban Maitra, Huamin Wang

Faculty, Staff and Student Publications

Ras plays an essential role in the development of acinar-to-ductal metaplasia (ADM) and pancreatic ductal adenocarcinoma (PDAC). However, mutant Kras is an inefficient driver for PDAC development. The mechanisms of the switching from low Ras activity to high Ras activity that are required for development and progression of pancreatic intraepithelial neoplasias (PanINs) are unclear. In this study, we found that hematopoietic progenitor kinase 1 (HPK1) was upregulated during pancreatic injury and ADM. HPK1 interacted with the SH3 domain and phosphorylated Ras GTPase-activating protein (RasGAP) and upregulated RasGAP activity. Using transgenic mouse models of HPK1 or M46, a kinase-dead mutant of …


Whole Genome Analysis For 163 Grnas In Cas9-Edited Mice Reveals Minimal Off-Target Activity, Kevin A Peterson, Sam Khalouei, Nour Hanafi, Joshua A Wood, Denise G Lanza, Lauri G Lintott, Brandon J Willis, John R Seavitt, Robert E Braun, Mary E Dickinson, Jacqueline K White, K C Kent Lloyd, Jason D Heaney, Stephen A Murray, Arun Ramani, Lauryl M J Nutter Jun 2023

Whole Genome Analysis For 163 Grnas In Cas9-Edited Mice Reveals Minimal Off-Target Activity, Kevin A Peterson, Sam Khalouei, Nour Hanafi, Joshua A Wood, Denise G Lanza, Lauri G Lintott, Brandon J Willis, John R Seavitt, Robert E Braun, Mary E Dickinson, Jacqueline K White, K C Kent Lloyd, Jason D Heaney, Stephen A Murray, Arun Ramani, Lauryl M J Nutter

Faculty, Staff and Students Publications

Genome editing with CRISPR-associated (Cas) proteins holds exceptional promise for "correcting" variants causing genetic disease. To realize this promise, off-target genomic changes cannot occur during the editing process. Here, we use whole genome sequencing to compare the genomes of 50 Cas9-edited founder mice to 28 untreated control mice to assess the occurrence of S. pyogenes Cas9-induced off-target mutagenesis. Computational analysis of whole-genome sequencing data detects 26 unique sequence variants at 23 predicted off-target sites for 18/163 guides used. While computationally detected variants are identified in 30% (15/50) of Cas9 gene-edited founder animals, only 38% (10/26) of the variants in 8/15 …


Targeting Cxcr4 Abrogates Resistance To Trastuzumab By Blocking Cell Cycle Progression And Synergizes With Docetaxel In Breast Cancer Treatment, Shuying Liu, Shelly M Xie, Wenbin Liu, Mihai Gagea, Ariella B Hanker, Nguyen Nguyen, Akshara Singareeka Raghavendra, Gloria Yang-Kolodji, Fuliang Chu, Sattva S Neelapu, Adriano Marchese, Samir Hanash, Johann Zimmermann, Carlos L Arteaga, Debasish Tripathy Jun 2023

Targeting Cxcr4 Abrogates Resistance To Trastuzumab By Blocking Cell Cycle Progression And Synergizes With Docetaxel In Breast Cancer Treatment, Shuying Liu, Shelly M Xie, Wenbin Liu, Mihai Gagea, Ariella B Hanker, Nguyen Nguyen, Akshara Singareeka Raghavendra, Gloria Yang-Kolodji, Fuliang Chu, Sattva S Neelapu, Adriano Marchese, Samir Hanash, Johann Zimmermann, Carlos L Arteaga, Debasish Tripathy

Faculty, Staff and Student Publications

Background: Although trastuzumab and other HER2-targeted therapies have significantly improved survival in patients with HER2 overexpressed or amplified (HER2+) breast cancer, a significant proportion of patients do not respond or eventually develop clinical resistance. Strategies to reverse trastuzumab resistance remain a high clinical priority. We were the first to report the role of CXCR4 in trastuzumab resistance. The present study aims to explore the therapeutic potential of targeting CXCR4 and better understand the associated mechanisms.

Methods: Immunofluorescent staining, confocal microscopy analysis, and immunoblotting were used to analyze CXCR4 expression. BrdU incorporation assays and flow cytometry were used to analyze dynamic …


Cxcr2 Expression During Melanoma Tumorigenesis Controls Transcriptional Programs That Facilitate Tumor Growth, J Yang, K Bergdorf, C Yan, W Luo, S C Chen, G D Ayers, Q Liu, X Liu, M Boothby, V L Weiss, S M Groves, A N Oleskie, X Zhang, D Y Maeda, J A Zebala, V Quaranta, A Richmond Jun 2023

Cxcr2 Expression During Melanoma Tumorigenesis Controls Transcriptional Programs That Facilitate Tumor Growth, J Yang, K Bergdorf, C Yan, W Luo, S C Chen, G D Ayers, Q Liu, X Liu, M Boothby, V L Weiss, S M Groves, A N Oleskie, X Zhang, D Y Maeda, J A Zebala, V Quaranta, A Richmond

Faculty, Staff and Student Publications

Background: Though the CXCR2 chemokine receptor is known to play a key role in cancer growth and response to therapy, a direct link between expression of CXCR2 in tumor progenitor cells during induction of tumorigenesis has not been established.

Methods: To characterize the role of CXCR2 during melanoma tumorigenesis, we generated tamoxifen-inducible tyrosinase-promoter driven BrafV600E/Pten-/-/Cxcr2-/- and NRasQ61R/INK4a-/-/Cxcr2-/- melanoma models. In addition, the effects of a CXCR1/CXCR2 antagonist, SX-682, on melanoma tumorigenesis were evaluated in BrafV600E/Pten-/- and NRasQ61R/INK4a-/- mice and in melanoma cell lines. Potential mechanisms by which Cxcr2 affects melanoma tumorigenesis in these murine models were explored using RNAseq, mMCP-counter, …


Targeting Unc51-Like Autophagy Activating Kinase 1 (Ulk1) Overcomes Adaptive Drug Resistance In Acute Myelogenous Leukemia, Seemana Bhattacharya, Sujan Piya, Huaxian Ma, Priyanka Sharma, Qi Zhang, Natalia Baran, Vivian R Ruvolo, Teresa Mcqueen, R Eric Davis, Rasoul Pourebrahim, Marina Konopleva, Hagop Kantarjian, Nicholas D P Cosford, Michael Andreeff, Gautam Borthakur Jun 2023

Targeting Unc51-Like Autophagy Activating Kinase 1 (Ulk1) Overcomes Adaptive Drug Resistance In Acute Myelogenous Leukemia, Seemana Bhattacharya, Sujan Piya, Huaxian Ma, Priyanka Sharma, Qi Zhang, Natalia Baran, Vivian R Ruvolo, Teresa Mcqueen, R Eric Davis, Rasoul Pourebrahim, Marina Konopleva, Hagop Kantarjian, Nicholas D P Cosford, Michael Andreeff, Gautam Borthakur

Faculty, Staff and Student Publications

Despite effective new therapies, adaptive resistance remains the main obstacle in AML therapy. Autophagy induction is a key mechanism for adaptive resistance. Leukemic blasts at diagnosis express higher levels of the apical autophagy kinase ULK1 compared to normal hematopoietic cells. Exposure to chemotherapy and targeted agents upregulate ULK1, hence we hypothesize that developing ULK1 inhibitors may present the unique opportunity for clinical translation of autophagy inhibition. Accordingly, we demonstrate that ULK1 inhibition, by genetic and pharmacological means, suppresses treatment-induced autophagy, overcomes adaptive drug-resistance, and synergizes with chemotherapy and emerging anti-leukemia agents like venetoclax (ABT-199). The study next aims at exploring …


Aibp Regulates Trpv1 Activation In Chemotherapy-Induced Peripheral Neuropathy By Controlling Lipid Raft Dynamics And Proximity To Tlr4 In Dorsal Root Ganglion Neurons, Juliana M Navia-Pelaez, Julia Borges Paes Lemes, Leonardo Gonzalez, Lauriane Delay, Luciano Dos Santos Aggum Capettini, Jenny W Lu, Gilson Gonçalves Dos Santos, Ann M Gregus, Patrick M Dougherty, Tony L Yaksh, Yury I Miller Jun 2023

Aibp Regulates Trpv1 Activation In Chemotherapy-Induced Peripheral Neuropathy By Controlling Lipid Raft Dynamics And Proximity To Tlr4 In Dorsal Root Ganglion Neurons, Juliana M Navia-Pelaez, Julia Borges Paes Lemes, Leonardo Gonzalez, Lauriane Delay, Luciano Dos Santos Aggum Capettini, Jenny W Lu, Gilson Gonçalves Dos Santos, Ann M Gregus, Patrick M Dougherty, Tony L Yaksh, Yury I Miller

Faculty, Staff and Student Publications

Nociceptive afferent signaling evoked by inflammation and nerve injury is mediated by the opening of ligand-gated and voltage-gated receptors or channels localized to cholesterol-rich lipid raft membrane domains. Dorsal root ganglion (DRG) nociceptors express high levels of toll-like receptor 4 (TLR4), which also localize to lipid rafts. Genetic deletion or pharmacologic blocking of TLR4 diminishes pain associated with chemotherapy-induced peripheral neuropathy (CIPN). In DRGs of mice with paclitaxel-induced CIPN, we analyzed DRG neuronal lipid rafts, expression of TLR4, activation of transient receptor potential cation channel subfamily V member 1 (TRPV1), and TLR4-TRPV1 interaction. Using proximity ligation assay, flow cytometry, and …


Glutamatergic Cerebellar Neurons Differentially Contribute To The Acquisition Of Motor And Social Behaviors, Meike E Van Der Heijden, Alejandro G Rey Hipolito, Linda H Kim, Dominic J Kizek, Ross M Perez, Tao Lin, Roy V Sillitoe May 2023

Glutamatergic Cerebellar Neurons Differentially Contribute To The Acquisition Of Motor And Social Behaviors, Meike E Van Der Heijden, Alejandro G Rey Hipolito, Linda H Kim, Dominic J Kizek, Ross M Perez, Tao Lin, Roy V Sillitoe

Duncan NRI Faculty and Staff Publications

Insults to the developing cerebellum can cause motor, language, and social deficits. Here, we investigate whether developmental insults to different cerebellar neurons constrain the ability to acquire cerebellar-dependent behaviors. We perturb cerebellar cortical or nuclei neuron function by eliminating glutamatergic neurotransmission during development, and then we measure motor and social behaviors in early postnatal and adult mice. Altering cortical and nuclei neurons impacts postnatal motor control and social vocalizations. Normalizing neurotransmission in cortical neurons but not nuclei neurons restores social behaviors while the motor deficits remain impaired in adults. In contrast, manipulating only a subset of nuclei neurons leaves social …


Tfeb And Tfe3 Drive Kidney Cystogenesis And Tumorigenesis, Chiara Di Malta, Angela Zampelli, Letizia Granieri, Claudia Vilardo, Rossella De Cegli, Laura Cinque, Edoardo Nusco, Salvatore Pece, Daniela Tosoni, Francesca Sanguedolce, Nicolina Cristina Sorrentino, Maria J Merino, Deborah Nielsen, Ramaprasad Srinivasan, Mark W Ball, Christopher J Ricketts, Cathy D Vocke, Martin Lang, Baktiar Karim, Luisa Lanfrancone, Laura S Schmidt, W Marston Linehan, Andrea Ballabio May 2023

Tfeb And Tfe3 Drive Kidney Cystogenesis And Tumorigenesis, Chiara Di Malta, Angela Zampelli, Letizia Granieri, Claudia Vilardo, Rossella De Cegli, Laura Cinque, Edoardo Nusco, Salvatore Pece, Daniela Tosoni, Francesca Sanguedolce, Nicolina Cristina Sorrentino, Maria J Merino, Deborah Nielsen, Ramaprasad Srinivasan, Mark W Ball, Christopher J Ricketts, Cathy D Vocke, Martin Lang, Baktiar Karim, Luisa Lanfrancone, Laura S Schmidt, W Marston Linehan, Andrea Ballabio

Duncan NRI Faculty and Staff Publications

Birt-Hogg-Dubé (BHD) syndrome is an inherited familial cancer syndrome characterized by the development of cutaneous lesions, pulmonary cysts, renal tumors and cysts and caused by loss-of-function pathogenic variants in the gene encoding the tumor-suppressor protein folliculin (FLCN). FLCN acts as a negative regulator of TFEB and TFE3 transcription factors, master controllers of lysosomal biogenesis and autophagy, by enabling their phosphorylation by the mechanistic Target Of Rapamycin Complex 1 (mTORC1). We have previously shown that deletion of Tfeb rescued the renal cystic phenotype of kidney-specific Flcn KO mice. Using Flcn/Tfeb/Tfe3 double and triple KO mice, we now show that both Tfeb …


Using Cancer Proteomics Data To Identify Gene Candidates For Therapeutic Targeting, Diana Monsivais, Sydney E Parks, Darshan S Chandrashekar, Sooryanarayana Varambally, Chad J Creighton May 2023

Using Cancer Proteomics Data To Identify Gene Candidates For Therapeutic Targeting, Diana Monsivais, Sydney E Parks, Darshan S Chandrashekar, Sooryanarayana Varambally, Chad J Creighton

Faculty, Staff and Students Publications

Gene-level associations obtained from mass-spectrometry-based cancer proteomics datasets represent a resource for identifying gene candidates for functional studies. When recently surveying proteomic correlates of tumor grade across multiple cancer types, we identified specific protein kinases having a functional impact on uterine endometrial cancer cells. This previously published study provides just one template for utilizing public molecular datasets to discover potential novel therapeutic targets and approaches for cancer patients. Proteomic profiling data combined with corresponding multi-omics data on human tumors and cell lines can be analyzed in various ways to prioritize genes of interest for interrogating biology. Across hundreds of cancer …


Molecular Identity Changes Of Tumor-Associated Macrophages And Microglia After Magnetic Resonance Imaging-Guided Focused Ultrasound-Induced Blood-Brain Barrier Opening In A Mouse Glioblastoma Model, Yanrong Zhang, Jing Wang, Sara Natasha Ghobadi, Haiyan Zhou, Ai Huang, Marco Gerosa, Qingyi Hou, Olivier Keunen, Anna Golebiewska, Frezghi G Habte, Gerald A Grant, Ramasamy Paulmurugan, Kevin S Lee, Max Wintermark May 2023

Molecular Identity Changes Of Tumor-Associated Macrophages And Microglia After Magnetic Resonance Imaging-Guided Focused Ultrasound-Induced Blood-Brain Barrier Opening In A Mouse Glioblastoma Model, Yanrong Zhang, Jing Wang, Sara Natasha Ghobadi, Haiyan Zhou, Ai Huang, Marco Gerosa, Qingyi Hou, Olivier Keunen, Anna Golebiewska, Frezghi G Habte, Gerald A Grant, Ramasamy Paulmurugan, Kevin S Lee, Max Wintermark

Faculty, Staff and Student Publications

An orthotopically allografted mouse GL26 glioma model (Ccr2RFP/wt-Cx3cr1GFP/wt) was used to evaluate the effect of transient, focal opening of the Blood Brain Barrier (BBB) on the composition of tumor-associated macrophages and microglia (TAMs). BBB Opening was induced by Magnetic Resonance Imaging (MRI)-guided focused ultrasound (MRgFUS) combined with microbubbles. CX3CR1-GFP cells and CCR2-RFP cells in brain tumors were quantified in microscopic images. Tumors in animals treated with a single session of MRgFUS did not show significant changes in cell numbers when compared to tumors in animals not receiving FUS. However, tumors that received two or three sessions …


Positive Selection Of Somatically Mutated Clones Identifies Adaptive Pathways In Metabolic Liver Disease, Zixi Wang, Shijia Zhu, Yuemeng Jia, Yunguan Wang, Naoto Kubota, Naoto Fujiwara, Ruth Gordillo, Cheryl Lewis, Min Zhu, Tripti Sharma, Lin Li, Qiyu Zeng, Yu-Hsuan Lin, Meng-Hsiung Hsieh, Purva Gopal, Tao Wang, Matt Hoare, Peter Campbell, Yujin Hoshida, Hao Zhu Apr 2023

Positive Selection Of Somatically Mutated Clones Identifies Adaptive Pathways In Metabolic Liver Disease, Zixi Wang, Shijia Zhu, Yuemeng Jia, Yunguan Wang, Naoto Kubota, Naoto Fujiwara, Ruth Gordillo, Cheryl Lewis, Min Zhu, Tripti Sharma, Lin Li, Qiyu Zeng, Yu-Hsuan Lin, Meng-Hsiung Hsieh, Purva Gopal, Tao Wang, Matt Hoare, Peter Campbell, Yujin Hoshida, Hao Zhu

Faculty, Staff and Student Publications

Somatic mutations in nonmalignant tissues accumulate with age and injury, but whether these mutations are adaptive on the cellular or organismal levels is unclear. To interrogate genes in human metabolic disease, we performed lineage tracing in mice harboring somatic mosaicism subjected to nonalcoholic steatohepatitis (NASH). Proof-of-concept studies with mosaic loss of Mboat7, a membrane lipid acyltransferase, showed that increased steatosis accelerated clonal disappearance. Next, we induced pooled mosaicism in 63 known NASH genes, allowing us to trace mutant clones side by side. This in vivo tracing platform, which we coined MOSAICS, selected for mutations that ameliorate lipotoxicity, including mutant genes …


Resolution Of Cisplatin-Induced Fatigue Does Not Require Endogenous Interleukin-10 In Male Mice, Kiersten Scott, Nabila Boukelmoune, Cullen Taniguchi, A Phillip West, Cobi J Heijnen, Robert Dantzer Apr 2023

Resolution Of Cisplatin-Induced Fatigue Does Not Require Endogenous Interleukin-10 In Male Mice, Kiersten Scott, Nabila Boukelmoune, Cullen Taniguchi, A Phillip West, Cobi J Heijnen, Robert Dantzer

Faculty, Staff and Student Publications

Based on previous results showing a pivotal role of endogenous interleukin-10 (IL-10) in the recovery from cisplatin-induced peripheral neuropathy, the present experiments were carried out to determine whether this cytokine plays any role in the recovery from cisplatin-induced fatigue in male mice. Fatigue was measured by decreased voluntary wheel running in mice trained to run in a wheel in response to cisplatin. Mice were treated with a monoclonal neutralizing antibody (IL-10na) administered intranasally during the recovery period to neutralize endogenous IL-10. In the first experiment, mice were treated with cisplatin (2.83 mg/kg/day) for five days and IL-10na (12 μg/day for …


Distinct Astrocytic Modulatory Roles In Sensory Transmission During Sleep, Wakefulness, And Arousal States In Freely Moving Mice, Fushun Wang, Wei Wang, Simeng Gu, Dan Qi, Nathan A Smith, Weiguo Peng, Wei Dong, Jiajin Yuan, Binbin Zhao, Ying Mao, Peng Cao, Qing Richard Lu, Lee A Shapiro, S Stephen Yi, Erxi Wu, Jason H Huang Apr 2023

Distinct Astrocytic Modulatory Roles In Sensory Transmission During Sleep, Wakefulness, And Arousal States In Freely Moving Mice, Fushun Wang, Wei Wang, Simeng Gu, Dan Qi, Nathan A Smith, Weiguo Peng, Wei Dong, Jiajin Yuan, Binbin Zhao, Ying Mao, Peng Cao, Qing Richard Lu, Lee A Shapiro, S Stephen Yi, Erxi Wu, Jason H Huang

Faculty, Staff and Student Publications

Despite extensive research on astrocytic Ca2+ in synaptic transmission, its contribution to the modulation of sensory transmission during different brain states remains largely unknown. Here, by using two-photon microscopy and whole-cell recordings, we show two distinct astrocytic Ca2+ signals in the murine barrel cortex: a small, long-lasting Ca2+ increase during sleep and a large, widespread but short-lasting Ca2+ spike when aroused. The large Ca2+ wave in aroused mice was inositol trisphosphate (IP3)-dependent, evoked by the locus coeruleus-norepinephrine system, and enhanced sensory input, contributing to reliable sensory transmission. However, the small Ca2+ transient was IP3-independent and contributed to decreased extracellular K+, …


A First-In-Human Phase I Study Of Milademetan, An Mdm2 Inhibitor, In Patients With Advanced Liposarcoma, Solid Tumors, Or Lymphomas, Mrinal M Gounder, Todd M Bauer, Gary K Schwartz, Amy M Weise, Patricia Lorusso, Prasanna Kumar, Ben Tao, Ying Hong, Parul Patel, Yasong Lu, Arnaud Lesegretain, Vijaya G Tirunagaru, Feng Xu, Robert C Doebele, David S Hong Mar 2023

A First-In-Human Phase I Study Of Milademetan, An Mdm2 Inhibitor, In Patients With Advanced Liposarcoma, Solid Tumors, Or Lymphomas, Mrinal M Gounder, Todd M Bauer, Gary K Schwartz, Amy M Weise, Patricia Lorusso, Prasanna Kumar, Ben Tao, Ying Hong, Parul Patel, Yasong Lu, Arnaud Lesegretain, Vijaya G Tirunagaru, Feng Xu, Robert C Doebele, David S Hong

Faculty, Staff and Student Publications

Purpose: This study evaluated the safety, pharmacokinetics, pharmacodynamics, and preliminary efficacy of milademetan, a small-molecule murine double minute-2 (MDM2) inhibitor, in patients with advanced cancers.

Patients and methods: In this first-in-human phase I study, patients with advanced solid tumors or lymphomas received milademetan orally once daily as extended/continuous (days 1-21 or 1-28 every 28 days) or intermittent (days 1-7, or days 1-3 and 15-17 every 28 days) schedules. The primary objective was to determine the recommended phase II dose and schedule. Secondary objectives included tumor response according to standard evaluation criteria. Predefined analyses by tumor type were performed. Safety and …


A Mast Cell-Thermoregulatory Neuron Circuit Axis Regulates Hypothermia In Anaphylaxis, Chunjing Bao, Ouyang Chen, Huaxin Sheng, Jeffrey Zhang, Yikai Luo, Byron W Hayes, Han Liang, Wolfgang Liedtke, Ru-Rong Ji, Soman N Abraham Mar 2023

A Mast Cell-Thermoregulatory Neuron Circuit Axis Regulates Hypothermia In Anaphylaxis, Chunjing Bao, Ouyang Chen, Huaxin Sheng, Jeffrey Zhang, Yikai Luo, Byron W Hayes, Han Liang, Wolfgang Liedtke, Ru-Rong Ji, Soman N Abraham

Faculty, Staff and Student Publications

IgE-mediated anaphylaxis is an acute life-threatening systemic reaction to allergens, including certain foods and venoms. Anaphylaxis is triggered when blood-borne allergens activate IgE-bound perivascular mast cells (MCs) throughout the body, causing an extensive systemic release of MC mediators. Through precipitating vasodilatation and vascular leakage, these mediators are believed to trigger a sharp drop in blood pressure in humans and in core body temperature in animals. We report that the IgE/MC-mediated drop in body temperature in mice associated with anaphylaxis also requires the body's thermoregulatory neural circuit. This circuit is activated when granule-borne chymase from MCs is deposited on proximal TRPV1+ …


Evolutionarily Conserved Regulators Of Tau Identify Targets For New Therapies, Jiyoen Kim, Maria De Haro, Ismael Al-Ramahi, Lorena Laura Garaicoechea, Hyun-Hwan Jeong, Jun Young Sonn, Bakhos Tadros, Zhandong Liu, Juan Botas, Huda Yahya Zoghbi Mar 2023

Evolutionarily Conserved Regulators Of Tau Identify Targets For New Therapies, Jiyoen Kim, Maria De Haro, Ismael Al-Ramahi, Lorena Laura Garaicoechea, Hyun-Hwan Jeong, Jun Young Sonn, Bakhos Tadros, Zhandong Liu, Juan Botas, Huda Yahya Zoghbi

Duncan NRI Faculty and Staff Publications

Tauopathies are neurodegenerative diseases that involve the pathological accumulation of tau proteins; in this family are Alzheimer disease, corticobasal degeneration, and chronic traumatic encephalopathy, among others. Hypothesizing that reducing this accumulation could mitigate pathogenesis, we performed a cross-species genetic screen targeting 6,600 potentially druggable genes in human cells and Drosophila. We found and validated 83 hits in cells and further validated 11 hits in the mouse brain. Three of these hits (USP7, RNF130, and RNF149) converge on the C terminus of Hsc70-interacting protein (CHIP) to regulate tau levels, highlighting the role of CHIP in maintaining tau proteostasis in the brain. …


The Alpha7 Integrin Subunit In Astrocytes Promotes Endothelial Blood-Brain Barrier Integrity, Zhihua Chen, Jack R Kelly, John E Morales, Raymond C Sun, Arpan De, Dean J Burkin, Joseph H Mccarty Mar 2023

The Alpha7 Integrin Subunit In Astrocytes Promotes Endothelial Blood-Brain Barrier Integrity, Zhihua Chen, Jack R Kelly, John E Morales, Raymond C Sun, Arpan De, Dean J Burkin, Joseph H Mccarty

Faculty, Staff and Student Publications

The blood-brain barrier (BBB) is a vascular endothelial cell boundary that partitions the circulation from the central nervous system to promote normal brain health. We have a limited understanding of how the BBB is formed during development and maintained in adulthood. We used quantitative transcriptional profiling to investigate whether specific adhesion molecules are involved in BBB functions, with an emphasis on understanding how astrocytes interact with endothelial cells. Our results reveal a striking enrichment of multiple genes encoding laminin subunits as well as the laminin receptor gene Itga7, which encodes the alpha7 integrin subunit, in astrocytes. Genetic ablation of Itga7 …


New Mouse Models With Hypomorphic Sumf1 Variants Mimic Attenuated Forms Of Multiple Sulfatase Deficiency, Nicolina Cristina Sorrentino, Maximiliano Presa, Sergio Attanasio, Vincenzo Cacace, Martina Sofia, Aamir Zuberi, Jennifer Ryan, Somdatta Ray, Igor Petkovic, Karthikeyan Radhakrishnan, Lars Schlotawa, Andrea Ballabio, Cathleen Lutz, Nicola Brunetti-Pierri Mar 2023

New Mouse Models With Hypomorphic Sumf1 Variants Mimic Attenuated Forms Of Multiple Sulfatase Deficiency, Nicolina Cristina Sorrentino, Maximiliano Presa, Sergio Attanasio, Vincenzo Cacace, Martina Sofia, Aamir Zuberi, Jennifer Ryan, Somdatta Ray, Igor Petkovic, Karthikeyan Radhakrishnan, Lars Schlotawa, Andrea Ballabio, Cathleen Lutz, Nicola Brunetti-Pierri

Duncan NRI Faculty and Staff Publications

Multiple sulfatase deficiency (MSD) is an ultrarare lysosomal storage disorder due to deficiency of all known sulfatases. MSD is caused by mutations in the Sulfatase Modifying Factor 1 (SUMF1) gene encoding the enzyme responsible for the post-translational modification and activation of all sulfatases. Most MSD patients carry hypomorph SUMF1 variants resulting in variable degrees of residual sulfatase activities. In contrast, Sumf1 null mice with complete deficiency in all sulfatase enzyme activities, have very short lifespan with significant pre-wean lethality, owing to a challenging preclinical model. To overcome this limitation, we genetically engineered and characterized in mice two commonly …


Highly Synchronized Cortical Circuit Dynamics Mediate Spontaneous Pain In Mice, Weihua Ding, Lukas Fischer, Qian Chen, Ziyi Li, Liuyue Yang, Zerong You, Kun Hu, Xinbo Wu, Xue Zhou, Wei Chao, Peter Hu, Tewodros Mulugeta Dagnew, Daniel M Dubreuil, Shiyu Wang, Suyun Xia, Caroline Bao, Shengmei Zhu, Lucy Chen, Changning Wang, Brian Wainger, Peng Jin, Jianren Mao, Guoping Feng, Mark T Harnett, Shiqian Shen Mar 2023

Highly Synchronized Cortical Circuit Dynamics Mediate Spontaneous Pain In Mice, Weihua Ding, Lukas Fischer, Qian Chen, Ziyi Li, Liuyue Yang, Zerong You, Kun Hu, Xinbo Wu, Xue Zhou, Wei Chao, Peter Hu, Tewodros Mulugeta Dagnew, Daniel M Dubreuil, Shiyu Wang, Suyun Xia, Caroline Bao, Shengmei Zhu, Lucy Chen, Changning Wang, Brian Wainger, Peng Jin, Jianren Mao, Guoping Feng, Mark T Harnett, Shiqian Shen

Faculty, Staff and Student Publications

Cortical neural dynamics mediate information processing for the cerebral cortex, which is implicated in fundamental biological processes such as vision and olfaction, in addition to neurological and psychiatric diseases. Spontaneous pain is a key feature of human neuropathic pain. Whether spontaneous pain pushes the cortical network into an aberrant state and, if so, whether it can be brought back to a "normal" operating range to ameliorate pain are unknown. Using a clinically relevant mouse model of neuropathic pain with spontaneous pain-like behavior, we report that orofacial spontaneous pain activated a specific area within the primary somatosensory cortex (S1), displaying synchronized …


Tfeb-Mediated Lysosomal Exocytosis Alleviates High-Fat Diet-Induced Lipotoxicity In The Kidney, Jun Nakamura, Takeshi Yamamoto, Yoshitsugu Takabatake, Tomoko Namba-Hamano, Satoshi Minami, Atsushi Takahashi, Jun Matsuda, Shinsuke Sakai, Hiroaki Yonishi, Shihomi Maeda, Sho Matsui, Isao Matsui, Takayuki Hamano, Masatomo Takahashi, Maiko Goto, Yoshihiro Izumi, Takeshi Bamba, Miwa Sasai, Masahiro Yamamoto, Taiji Matsusaka, Fumio Niimura, Motoko Yanagita, Shuhei Nakamura, Tamotsu Yoshimori, Andrea Ballabio, Yoshitaka Isaka Feb 2023

Tfeb-Mediated Lysosomal Exocytosis Alleviates High-Fat Diet-Induced Lipotoxicity In The Kidney, Jun Nakamura, Takeshi Yamamoto, Yoshitsugu Takabatake, Tomoko Namba-Hamano, Satoshi Minami, Atsushi Takahashi, Jun Matsuda, Shinsuke Sakai, Hiroaki Yonishi, Shihomi Maeda, Sho Matsui, Isao Matsui, Takayuki Hamano, Masatomo Takahashi, Maiko Goto, Yoshihiro Izumi, Takeshi Bamba, Miwa Sasai, Masahiro Yamamoto, Taiji Matsusaka, Fumio Niimura, Motoko Yanagita, Shuhei Nakamura, Tamotsu Yoshimori, Andrea Ballabio, Yoshitaka Isaka

Duncan NRI Faculty and Staff Publications

Obesity is a major risk factor for end-stage kidney disease. We previously found that lysosomal dysfunction and impaired autophagic flux contribute to lipotoxicity in obesity-related kidney disease, in both humans and experimental animal models. However, the regulatory factors involved in countering renal lipotoxicity are largely unknown. Here, we found that palmitic acid strongly promoted dephosphorylation and nuclear translocation of transcription factor EB (TFEB) by inhibiting the mechanistic target of rapamycin kinase complex 1 pathway in a Rag GTPase-dependent manner, though these effects gradually diminished after extended treatment. We then investigated the role of TFEB in the pathogenesis of obesity-related kidney …