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The Scaffolding Function Of Lsd1 Controls Dna Methylation In Mouse Escs, Sandhya Malla, Kanchan Kumari, Carlos A García-Prieto, Jonatan Caroli, Anna Nordin, Trinh T T Phan, Devi Prasad Bhattarai, Carlos Martinez-Gamero, Eshagh Dorafshan, Stephanie Stransky, Damiana Álvarez-Errico, Paulina Avovome Saiki, Weiyi Lai, Cong Lyu, Ludvig Lizana, Jonathan D Gilthorpe, Hailin Wang, Simone Sidoli, Andre Mateus, Dung-Fang Lee, Claudio Cantù, Manel Esteller, Andrea Mattevi, Angel-Carlos Roman, Francesca Aguilo Sep 2024

The Scaffolding Function Of Lsd1 Controls Dna Methylation In Mouse Escs, Sandhya Malla, Kanchan Kumari, Carlos A García-Prieto, Jonatan Caroli, Anna Nordin, Trinh T T Phan, Devi Prasad Bhattarai, Carlos Martinez-Gamero, Eshagh Dorafshan, Stephanie Stransky, Damiana Álvarez-Errico, Paulina Avovome Saiki, Weiyi Lai, Cong Lyu, Ludvig Lizana, Jonathan D Gilthorpe, Hailin Wang, Simone Sidoli, Andre Mateus, Dung-Fang Lee, Claudio Cantù, Manel Esteller, Andrea Mattevi, Angel-Carlos Roman, Francesca Aguilo

Faculty, Staff and Student Publications

Lysine-specific histone demethylase 1 (LSD1), which demethylates mono- or di- methylated histone H3 on lysine 4 (H3K4me1/2), is essential for early embryogenesis and development. Here we show that LSD1 is dispensable for mouse embryonic stem cell (ESC) self-renewal but is required for mouse ESC growth and differentiation. Reintroduction of a catalytically-impaired LSD1 (LSD1MUT) recovers the proliferation capability of mouse ESCs, yet the enzymatic activity of LSD1 is essential to ensure proper differentiation. Indeed, increased H3K4me1 in Lsd1 knockout (KO) mouse ESCs does not lead to major changes in global gene expression programs related to stemness. However, ablation of LSD1 but …


Screening Of Anti-Prion Compounds Using The Protein Misfolding Cyclic Amplification Technology, Sandra Pritzkow, Isaac Schauer, Ananya Tupaki-Sreepurna, Rodrigo Morales, Claudio Soto Sep 2024

Screening Of Anti-Prion Compounds Using The Protein Misfolding Cyclic Amplification Technology, Sandra Pritzkow, Isaac Schauer, Ananya Tupaki-Sreepurna, Rodrigo Morales, Claudio Soto

Faculty, Staff and Student Publications

Prion diseases are 100% fatal infectious neurodegenerative diseases affecting the brains of humans and other mammals. The disease is caused by the formation and replication of prions, composed exclusively of the misfolded prion protein (PrPSc). We invented and developed the protein misfolding cyclic amplification (PMCA) technology for in vitro prion replication, which allow us to replicate the infectious agent and it is commonly used for ultra-sensitive prion detection in biological fluids, tissues and environmental samples. In this article, we studied whether PMCA can be used to screen for chemical compounds that block prion replication. A small set of compounds previously …


Myc Induces Oncogenic Stress Through Rna Decay And Ribonucleotide Catabolism In Breast Cancer, Jitendra K Meena, Jarey H Wang, Nicholas J Neill, Dianne Keough, Nagireddy Putluri, Panagiotis Katsonis, Amanda M Koire, Hyemin Lee, Elizabeth A Bowling, Siddhartha Tyagi, Mayra Orellana, Rocio Dominguez-Vidaña, Heyuan Li, Kenneth Eagle, Charles Danan, Hsiang-Ching Chung, Andrew D Yang, William Wu, Sarah J Kurley, Brian M Ho, Joseph R Zoeller, Calla M Olson, Kristen L Meerbrey, Olivier Lichtarge, Arun Sreekumar, Clifford C Dacso, Luke W Guddat, Dominik Rejman, Dana Hocková, Zlatko Janeba, Lukas M Simon, Charles Y Lin, Monica C Pillon, Thomas F Westbrook Sep 2024

Myc Induces Oncogenic Stress Through Rna Decay And Ribonucleotide Catabolism In Breast Cancer, Jitendra K Meena, Jarey H Wang, Nicholas J Neill, Dianne Keough, Nagireddy Putluri, Panagiotis Katsonis, Amanda M Koire, Hyemin Lee, Elizabeth A Bowling, Siddhartha Tyagi, Mayra Orellana, Rocio Dominguez-Vidaña, Heyuan Li, Kenneth Eagle, Charles Danan, Hsiang-Ching Chung, Andrew D Yang, William Wu, Sarah J Kurley, Brian M Ho, Joseph R Zoeller, Calla M Olson, Kristen L Meerbrey, Olivier Lichtarge, Arun Sreekumar, Clifford C Dacso, Luke W Guddat, Dominik Rejman, Dana Hocková, Zlatko Janeba, Lukas M Simon, Charles Y Lin, Monica C Pillon, Thomas F Westbrook

Faculty, Staff and Students Publications

Upregulation of MYC is a hallmark of cancer, wherein MYC drives oncogenic gene expression and elevates total RNA synthesis across cancer cell transcriptomes. Although this transcriptional anabolism fuels cancer growth and survival, the consequences and metabolic stresses induced by excess cellular RNA are poorly understood. Herein, we discover that RNA degradation and downstream ribonucleotide catabolism is a novel mechanism of MYC-induced cancer cell death. Combining genetics and metabolomics, we find that MYC increases RNA decay through the cytoplasmic exosome, resulting in the accumulation of cytotoxic RNA catabolites and reactive oxygen species. Notably, tumor-derived exosome mutations abrogate MYC-induced cell death, suggesting …


Pancreatic Epithelial Il17/Il17ra Signaling Drives B7-H4 Expression To Promote Tumorigenesis, Susana Castro-Pando, Rian M Howell, Le Li, Marilina Mascaro, Erika Y Faraoni, Olivereen Le Roux, David Romanin, Virginia Tahan, Erick Riquelme, Yu Zhang, Jay K Kolls, James P Allison, Guillermina Lozano, Seyed J Moghaddam, Florencia Mcallister Sep 2024

Pancreatic Epithelial Il17/Il17ra Signaling Drives B7-H4 Expression To Promote Tumorigenesis, Susana Castro-Pando, Rian M Howell, Le Li, Marilina Mascaro, Erika Y Faraoni, Olivereen Le Roux, David Romanin, Virginia Tahan, Erick Riquelme, Yu Zhang, Jay K Kolls, James P Allison, Guillermina Lozano, Seyed J Moghaddam, Florencia Mcallister

Faculty, Staff and Student Publications

IL17 is required for the initiation and progression of pancreatic cancer, particularly in the context of inflammation, as previously shown by genetic and pharmacological approaches. However, the cellular compartment and downstream molecular mediators of IL17-mediated pancreatic tumorigenesis have not been fully identified. This study examined the cellular compartment required by generating transgenic animals with IL17 receptor A (IL17RA), which was genetically deleted from either the pancreatic epithelial compartment or the hematopoietic compartment via generation of IL17RA-deficient (IL17-RA-/-) bone marrow chimeras, in the context of embryonically activated or inducible Kras. Deletion of IL17RA from the pancreatic epithelial compartment, but not from …


Targeting Akr1b10 By Drug Repurposing With Epalrestat Overcomes Chemoresistance In Non-Small Cell Lung Cancer Patient-Derived Tumor Organoids, Kanve N Suvilesh, Yariswamy Manjunath, Yulia I Nussbaum, Mohamed Gadelkarim, Murugesan Raju, Akhil Srivastava, Guangfu Li, Wesley C Warren, Chi-Ren Shyu, Feng Gao, Matthew A Ciorba, Jonathan B Mitchem, Satyanarayana Rachagani, Jussuf T Kaifi Sep 2024

Targeting Akr1b10 By Drug Repurposing With Epalrestat Overcomes Chemoresistance In Non-Small Cell Lung Cancer Patient-Derived Tumor Organoids, Kanve N Suvilesh, Yariswamy Manjunath, Yulia I Nussbaum, Mohamed Gadelkarim, Murugesan Raju, Akhil Srivastava, Guangfu Li, Wesley C Warren, Chi-Ren Shyu, Feng Gao, Matthew A Ciorba, Jonathan B Mitchem, Satyanarayana Rachagani, Jussuf T Kaifi

2020-Current year OA Pubs

PURPOSE: Systemic treatments given to patients with non-small cell lung cancer (NSCLC) are often ineffective due to drug resistance. In the present study, we investigated patient-derived tumor organoids (PDTO) and matched tumor tissues from surgically treated patients with NSCLC to identify drug repurposing targets to overcome resistance toward standard-of-care platinum-based doublet chemotherapy.

EXPERIMENTAL DESIGN: PDTOs were established from 10 prospectively enrolled patients with non-metastatic NSCLC from resected tumors. PDTOs were compared with matched tumor tissues by histopathology/immunohistochemistry, whole exome sequencing, and transcriptome sequencing. PDTO growths and drug responses were determined by measuring 3D tumoroid volumes, cell viability, and proliferation/apoptosis. Differential …


Enhlink Infers Distal And Context-Specific Enhancer-Promoter Linkages., Olivier Poirion, Wulin Zuo, Catrina Spruce, Candice N Baker, Sandra Daigle, Ashley A Olson, Daniel A Skelly, Elissa J Chesler, Christopher L. Baker, Brian S White Sep 2024

Enhlink Infers Distal And Context-Specific Enhancer-Promoter Linkages., Olivier Poirion, Wulin Zuo, Catrina Spruce, Candice N Baker, Sandra Daigle, Ashley A Olson, Daniel A Skelly, Elissa J Chesler, Christopher L. Baker, Brian S White

Faculty Research 2024

Enhlink is a computational tool for scATAC-seq data analysis, facilitating precise interrogation of enhancer function at the single-cell level. It employs an ensemble approach incorporating technical and biological covariates to infer condition-specific regulatory DNA linkages. Enhlink can integrate multi-omic data for enhanced specificity, when available. Evaluation with simulated and real data, including multi-omic datasets from the mouse striatum and novel promoter capture Hi-C data, demonstrate that Enhlink outperfoms alternative methods. Coupled with eQTL analysis, it identified a putative super-enhancer in striatal neurons. Overall, Enhlink offers accuracy, power, and potential for revealing novel biological insights in gene regulation.


Fetal Mavs And Type I Ifn Signaling Pathways Control Zikv Infection In The Placenta And Maternal Decidua, Yael Alippe, Leran Wang, Reyan Coskun, Stéfanie P Muraro, Fang R Zhao, Michelle Elam-Noll, J Michael White, Daiana M Vota, Vanesa C Hauk, Jeffrey I Gordon, Scott A Handley, Michael S Diamond Sep 2024

Fetal Mavs And Type I Ifn Signaling Pathways Control Zikv Infection In The Placenta And Maternal Decidua, Yael Alippe, Leran Wang, Reyan Coskun, Stéfanie P Muraro, Fang R Zhao, Michelle Elam-Noll, J Michael White, Daiana M Vota, Vanesa C Hauk, Jeffrey I Gordon, Scott A Handley, Michael S Diamond

2020-Current year OA Pubs

The contribution of placental immune responses to congenital Zika virus (ZIKV) syndrome remains poorly understood. Here, we leveraged a mouse model of ZIKV infection to identify mechanisms of innate immune restriction exclusively in the fetal compartment of the placenta. ZIKV principally infected mononuclear trophoblasts in the junctional zone, which was limited by mitochondrial antiviral-signaling protein (MAVS) and type I interferon (IFN) signaling mechanisms. Single nuclear RNA sequencing revealed MAVS-dependent expression of IFN-stimulated genes (ISGs) in spongiotrophoblasts but not in other placental cells that use alternate pathways to induce ISGs. ZIKV infection of Ifnar1-/- or Mavs-/- placentas was associated with greater …


A Cochlear Progenitor Pool Influences Patterning Of The Mammalian Sensory Epithelium Via Mybl2., Caryl A Young, Emily Burt, Vidhya Munnamalai Sep 2024

A Cochlear Progenitor Pool Influences Patterning Of The Mammalian Sensory Epithelium Via Mybl2., Caryl A Young, Emily Burt, Vidhya Munnamalai

Faculty Research 2024

During embryonic development, Wnt signaling influences both proliferation and sensory formation in the cochlea. How this dual nature of Wnt signaling is coordinated is unknown. In this study, we define a novel role for a Wnt-regulated gene, Mybl2, which was already known to be important for proliferation, in determining the size and patterning of the sensory epithelium in the murine cochlea. Using a quantitative spatial analysis approach and analyzing Mybl2 loss-of-function, we show that Mybl2 promoted proliferation in the inner sulcus domain but limited the size of the sensory domain by influencing their adjoining boundary position via Jag1 regulation during …


Little Impact Of New Mutations On Mammalian Trait Variation., Beth L Dumont Sep 2024

Little Impact Of New Mutations On Mammalian Trait Variation., Beth L Dumont

Faculty Research 2024

New mutations provide the source of all genetic variation but their impact on trait variation remains poorly understood. A new study published in PLOS Biology addresses this question, finding that new mutations exert only weak effects on some traits in mice.


Mvar: A Mouse Variation Registry., Baha El Kassaby, Francisco Castellanos, Matthew Gerring, Govindarajan Kunde-Ramamoorthy, Carol J Bult Sep 2024

Mvar: A Mouse Variation Registry., Baha El Kassaby, Francisco Castellanos, Matthew Gerring, Govindarajan Kunde-Ramamoorthy, Carol J Bult

Faculty Research 2024

The Mouse Variation Registry (MVAR) resource is a scalable registry of mouse single nucleotide variants and small indels and variant annotation. The resource accepts data in standard Variant Call Format (VCF) and assesses the uniqueness of the submitted variants via a canonicalization process. Novel variants are assigned a unique, persistent MVAR identifier; variants that are equivalent to an existing variant in the resource are associated with the existing identifier. Annotations for variant type, molecular consequence, impact, and genomic region in the context of specific transcripts and protein sequences are generated using Ensembl's Variant Effect Predictor (VEP) and Jannovar. Access to …


Targeting Undruggable Phosphatase Overcomes Trastuzumab Resistance By Inhibiting Multi-Oncogenic Kinases., Lu Wang, Yusheng Lin, Zhimeng Yao, Nipun Babu, Wan Lin, Chaoying Chen, Liang Du, Songwang Cai, Yunlong Pan, Xiao Xiong, Qiantao Ye, Hongzheng Ren, Dianzheng Zhang, Yexi Chen, Sai-Ching Jim Yeung, Edwin Bremer, Hao Zhang Sep 2024

Targeting Undruggable Phosphatase Overcomes Trastuzumab Resistance By Inhibiting Multi-Oncogenic Kinases., Lu Wang, Yusheng Lin, Zhimeng Yao, Nipun Babu, Wan Lin, Chaoying Chen, Liang Du, Songwang Cai, Yunlong Pan, Xiao Xiong, Qiantao Ye, Hongzheng Ren, Dianzheng Zhang, Yexi Chen, Sai-Ching Jim Yeung, Edwin Bremer, Hao Zhang

PCOM Scholarly Works

AIMS: Resistance to targeted therapy is one of the critical obstacles in cancer management. Resistance to trastuzumab frequently develops in the treatment for HER2

METHODS: Four public datasets were used to screen PTP candidates in relation to trastuzumab responsiveness in HER2

RESULTS: PTPRO was identified as the key PTP which influences trastuzumab responsiveness and patient survival. PTPRO de-phosphorated several TKs, including the previously overlooked substrate ERBB3, thereby inhibiting multiple oncogenic pathways associated with drug resistance. Notably, PTPRO, previously deemed "undruggable," was effectively upregulated by saRNA-loaded nanoparticles. The upregulated PTPRO simultaneously inhibited ERBB3, ERBB2, and downstream SRC signaling pathways, thereby counteracting …


Identification Of Hypoxia-Alcamhigh Macrophage- Exhausted T Cell Axis In Tumor Microenvironment Remodeling For Immunotherapy Resistance, Zhenzhen Xun, Huanran Zhou, Mingyi Shen, Yao Liu, Chengcao Sun, Yanhua Du, Zhou Jiang, Liuqing Yang, Qing Zhang, Chunru Lin, Qingsong Hu, Youqiong Ye, Leng Han Sep 2024

Identification Of Hypoxia-Alcamhigh Macrophage- Exhausted T Cell Axis In Tumor Microenvironment Remodeling For Immunotherapy Resistance, Zhenzhen Xun, Huanran Zhou, Mingyi Shen, Yao Liu, Chengcao Sun, Yanhua Du, Zhou Jiang, Liuqing Yang, Qing Zhang, Chunru Lin, Qingsong Hu, Youqiong Ye, Leng Han

Faculty, Staff and Student Publications

Although hypoxia is known to be associated with immune resistance, the adaptability to hypoxia by different cell populations in the tumor microenvironment and the underlying mechanisms remain elusive. This knowledge gap has hindered the development of therapeutic strategies to overcome tumor immune resistance induced by hypoxia. Here, bulk, single-cell, and spatial transcriptomics are integrated to characterize hypoxia associated with immune escape during carcinogenesis and reveal a hypoxia-based intercellular communication hub consisting of malignant cells, ALCAM


Mechanistic Insights Into Metabolic Function Of Dynamin-Related Protein 1, Xin Li, Katherine Pham, Jazmin Ysaguirre, Iqbal Mahmud, Lin Tan, Bo Wei, Long J Shao, Maryam Elizondo, Rabie Habib, Fathima Elizondo, Hiromi Sesaki, Philip L Lorenzi, Kai Sun Sep 2024

Mechanistic Insights Into Metabolic Function Of Dynamin-Related Protein 1, Xin Li, Katherine Pham, Jazmin Ysaguirre, Iqbal Mahmud, Lin Tan, Bo Wei, Long J Shao, Maryam Elizondo, Rabie Habib, Fathima Elizondo, Hiromi Sesaki, Philip L Lorenzi, Kai Sun

Faculty, Staff and Student Publications

Dynamin-related protein 1 (DRP1) plays crucial roles in mitochondrial and peroxisome fission. However, the mechanisms underlying the functional regulation of DRP1 in adipose tissue during obesity remain unclear. To elucidate the metabolic and pathological significance of diminished DRP1 in obese adipose tissue, we utilized adipose tissue-specific DRP1 KO mice challenged with a high-fat diet. We observed significant metabolic dysregulations in the KO mice. Mechanistically, DRP1 exerts multifaceted functions in mitochondrial dynamics and endoplasmic reticulum (ER)-lipid droplet crosstalk in normal mice. Loss of function of DRP1 resulted in abnormally giant mitochondrial shapes, distorted mitochondrial membrane structure, and disrupted cristae architecture. Meanwhile, …


Dopaminergic Neurons In Zona Incerta Drives Appetitive Self-Grooming, Zhiying Jiang, Michelle He, Claire Young, Jing Cai, Yuanzhong Xu, Yanyan Jiang, Hongli Li, Maojie Yang, Qingchun Tong Sep 2024

Dopaminergic Neurons In Zona Incerta Drives Appetitive Self-Grooming, Zhiying Jiang, Michelle He, Claire Young, Jing Cai, Yuanzhong Xu, Yanyan Jiang, Hongli Li, Maojie Yang, Qingchun Tong

Faculty, Staff and Student Publications

Dopaminergic (DA) neurons are known to play a key role in controlling behaviors. While DA neurons in other brain regions are extensively characterized, those in zona incerta (ZITH or A13) receive much less attention and their function remains to be defined. Here it is shown that optogenetic stimulation of these neurons elicited intensive self‐grooming behaviors and promoted place preference, which can be enhanced by training but cannot be converted into contextual memory. Interestingly, the same stimulation increased DA release to periaqueductal grey (PAG) neurons and local PAG antagonism of DA action reduced the elicited self‐grooming. In addition, A13 neurons increased …


Mechanisms That Clear Mutations Drive Field Cancerization In Mammary Tissue, Marta Ciwinska, Hendrik A Messal, Hristina R Hristova, Catrin Lutz, Laura Bornes, Theofilos Chalkiadakis, Rolf Harkes, Nathalia S M Langedijk, Stefan J Hutten, Renée X Menezes, Jos Jonkers, Stefan Prekovic, Grand Challenge Precision Consortium, Benjamin D Simons, Colinda L G J Scheele, Jacco Van Rheenen Sep 2024

Mechanisms That Clear Mutations Drive Field Cancerization In Mammary Tissue, Marta Ciwinska, Hendrik A Messal, Hristina R Hristova, Catrin Lutz, Laura Bornes, Theofilos Chalkiadakis, Rolf Harkes, Nathalia S M Langedijk, Stefan J Hutten, Renée X Menezes, Jos Jonkers, Stefan Prekovic, Grand Challenge Precision Consortium, Benjamin D Simons, Colinda L G J Scheele, Jacco Van Rheenen

Faculty, Staff and Student Publications

Oncogenic mutations are abundant in the tissues of healthy individuals, but rarely form tumours1-3. Yet, the underlying protection mechanisms are largely unknown. To resolve these mechanisms in mouse mammary tissue, we use lineage tracing to map the fate of wild-type and Brca1-/-;Trp53-/- cells, and find that both follow a similar pattern of loss and spread within ducts. Clonal analysis reveals that ducts consist of small repetitive units of self-renewing cells that give rise to short-lived descendants. This offers a first layer of protection as any descendants, including oncogenic mutant cells, are constantly lost, thereby limiting the spread of mutations to …


Distinct Basal Forebrain-Originated Neural Circuits Promote Homoeostatic Feeding And Suppress Hedonic Feeding In Male Mice, Hailan Liu, Jonathan C Bean, Yongxiang Li, Meng Yu, Olivia Z Ginnard, Kristine M Conde, Mengjie Wang, Xing Fang, Hesong Liu, Longlong Tu, Na Yin, Junying Han, Yongjie Yang, Qingchun Tong, Benjamin R Arenkiel, Chunmei Wang, Yang He, Yong Xu Sep 2024

Distinct Basal Forebrain-Originated Neural Circuits Promote Homoeostatic Feeding And Suppress Hedonic Feeding In Male Mice, Hailan Liu, Jonathan C Bean, Yongxiang Li, Meng Yu, Olivia Z Ginnard, Kristine M Conde, Mengjie Wang, Xing Fang, Hesong Liu, Longlong Tu, Na Yin, Junying Han, Yongjie Yang, Qingchun Tong, Benjamin R Arenkiel, Chunmei Wang, Yang He, Yong Xu

Faculty, Staff and Students Publications

Feeding behaviour is influenced by two primary factors: homoeostatic needs driven by hunger and hedonic desires for pleasure even in the absence of hunger. While efficient homoeostatic feeding is vital for survival, excessive hedonic feeding can lead to adverse consequences such as obesity and metabolic dysregulations. However, the neurobiological mechanisms that orchestrate homoeostatic versus hedonic food consumption remain largely unknown. Here we show that GABAergic proenkephalin (Penk) neurons in the diagonal band of Broca (DBB) of male mice respond to food presentation. We further demonstrate that a subset of DBBPenk neurons that project to the paraventricular nucleus of the hypothalamus …


Trifarotene Alleviates Skin Photoaging Injury By Inhibition Of Jnk/C-Jun/Mmps, Xuan Fei, Lele Zixin Yang, Jingjing Zhang, Xiang Li, Mengtian Pan, Guangchen Xu, Cuixia Zhang, Fei Liu, Weirong Fang Sep 2024

Trifarotene Alleviates Skin Photoaging Injury By Inhibition Of Jnk/C-Jun/Mmps, Xuan Fei, Lele Zixin Yang, Jingjing Zhang, Xiang Li, Mengtian Pan, Guangchen Xu, Cuixia Zhang, Fei Liu, Weirong Fang

Student Papers, Posters & Projects

Long-term exposure to ultraviolet (UV) radiation induces skin photoaging, which manifests as oxidative stress, inflammation, and collagen degradation. Multiple approaches (topical or systemic retinoids, antioxidants, alpha-hydroxy acids, laser, surgery) are used in the treatment of photoaged skin, and the use of topical retinoids is currently a primary clinical treatment. Previous studies revealed that retinoic acid promotes keratinocyte proliferation and reduces melanin deposition and matrix metalloproteinase (MMP) secretion; it also causes potential allergic and inflammatory damage to the skin. This study aimed to investigate the therapeutic effects and mechanisms of trifarotene, a functional retinoic acid analog, on UV-irradiated photoaging ICR and …


The Cerebellum Modulates Thirst, Ila Mishra, Bing Feng, Bijoya Basu, Amanda M Brown, Linda H Kim, Tao Lin, Mir Abbas Raza, Amelia Moore, Abigayle Hahn, Samantha Bailey, Alaina Sharp, Juan C Bournat, Claire Poulton, Brian Kim, Amos Langsner, Aaron Sathyanesan, Roy V Sillitoe, Yanlin He, Atul R Chopra Sep 2024

The Cerebellum Modulates Thirst, Ila Mishra, Bing Feng, Bijoya Basu, Amanda M Brown, Linda H Kim, Tao Lin, Mir Abbas Raza, Amelia Moore, Abigayle Hahn, Samantha Bailey, Alaina Sharp, Juan C Bournat, Claire Poulton, Brian Kim, Amos Langsner, Aaron Sathyanesan, Roy V Sillitoe, Yanlin He, Atul R Chopra

Duncan NRI Faculty and Staff Publications

The cerebellum, a phylogenetically ancient brain region, has long been considered strictly a motor control structure. Recent studies have implicated the cerebellum in cognition, sensation, emotion and autonomic function, making it an important target for further investigation. Here, we show that cerebellar Purkinje neurons in mice are activated by the hormone asprosin, leading to enhanced thirst, and that optogenetic or chemogenetic activation of Purkinje neurons induces rapid manifestation of water drinking. Purkinje neuron-specific asprosin receptor (Ptprd) deletion results in reduced water intake without affecting food intake and abolishes asprosin's dipsogenic effect. Purkinje neuron-mediated motor learning and coordination were unaffected by …


Co-Targeting Sos1 Enhances The Antitumor Effects Of Krasg12c Inhibitors By Addressing Intrinsic And Acquired Resistance, Venu Thatikonda, Hengyu Lyu, Sabine Jurado, Kaja Kostyrko, Christopher A Bristow, Christoph Albrecht, Donat Alpar, Heribert Arnhof, Oliver Bergner, Karin Bosch, Ningping Feng, Sisi Gao, Daniel Gerlach, Michael Gmachl, Melanie Hinkel, Simone Lieb, Astrid Jeschko, Annette A Machado, Thomas Madensky, Ethan D Marszalek, Mikhila Mahendra, Gabriella Melo-Zainzinger, Jessica M Molkentine, Philipp A Jaeger, David H Peng, Robyn L Schenk, Alexey Sorokin, Sandra Strauss, Francesca Trapani, Scott Kopetz, Christopher P Vellano, Mark Petronczki, Norbert Kraut, Timothy P Heffernan, Joseph R Marszalek, Mark Pearson, Irene C Waizenegger, Marco H Hofmann Sep 2024

Co-Targeting Sos1 Enhances The Antitumor Effects Of Krasg12c Inhibitors By Addressing Intrinsic And Acquired Resistance, Venu Thatikonda, Hengyu Lyu, Sabine Jurado, Kaja Kostyrko, Christopher A Bristow, Christoph Albrecht, Donat Alpar, Heribert Arnhof, Oliver Bergner, Karin Bosch, Ningping Feng, Sisi Gao, Daniel Gerlach, Michael Gmachl, Melanie Hinkel, Simone Lieb, Astrid Jeschko, Annette A Machado, Thomas Madensky, Ethan D Marszalek, Mikhila Mahendra, Gabriella Melo-Zainzinger, Jessica M Molkentine, Philipp A Jaeger, David H Peng, Robyn L Schenk, Alexey Sorokin, Sandra Strauss, Francesca Trapani, Scott Kopetz, Christopher P Vellano, Mark Petronczki, Norbert Kraut, Timothy P Heffernan, Joseph R Marszalek, Mark Pearson, Irene C Waizenegger, Marco H Hofmann

Faculty, Staff and Student Publications

Combination approaches are needed to strengthen and extend the clinical response to KRASG12C inhibitors (KRASG12Ci). Here, we assessed the antitumor responses of KRASG12C mutant lung and colorectal cancer models to combination treatment with a SOS1 inhibitor (SOS1i), BI-3406, plus the KRASG12C inhibitor, adagrasib. We found that responses to BI-3406 plus adagrasib were stronger than to adagrasib alone, comparable to adagrasib with SHP2 (SHP2i) or EGFR inhibitors and correlated with stronger suppression of RAS-MAPK signaling. BI-3406 plus adagrasib treatment also delayed the emergence of acquired resistance and elicited antitumor responses from adagrasib-resistant models. Resistance to KRASG12Ci seemed to be driven by …


Vascular Heterogeneity Of Tight Junction Claudins Guides Organotropic Metastasis, Xunian Zhou, Valerie S Lebleu, Eliot Fletcher-Sananikone, Jiha Kim, Jianli Dai, Bingrui Li, Chia-Chin Wu, Hikaru Sugimoto, Toru Miyake, Lisa M Becker, Olga V Volpert, Erica Lawson, Cristina Espinosa Da Silva, Sarah I Patel, Akane Kizu, Ehsan A Ehsanipour, Di Sha, Jose Antonio Karam, Kathleen M Mcandrews, Raghu Kalluri Sep 2024

Vascular Heterogeneity Of Tight Junction Claudins Guides Organotropic Metastasis, Xunian Zhou, Valerie S Lebleu, Eliot Fletcher-Sananikone, Jiha Kim, Jianli Dai, Bingrui Li, Chia-Chin Wu, Hikaru Sugimoto, Toru Miyake, Lisa M Becker, Olga V Volpert, Erica Lawson, Cristina Espinosa Da Silva, Sarah I Patel, Akane Kizu, Ehsan A Ehsanipour, Di Sha, Jose Antonio Karam, Kathleen M Mcandrews, Raghu Kalluri

Faculty, Staff and Student Publications

Carcinomas are associated with metastasis to specific organs while sparing others. Breast cancer presents with lung metastasis but rarely kidney metastasis. Using this difference as an example, we queried the mechanism(s) behind the proclivity for organ-specific metastasis. We used spontaneous and implant models of metastatic mammary carcinoma coupled with inflammatory tissue fibrosis, single-cell sequencing analyses and functional studies to unravel the causal determinants of organ-specific metastasis. Here we show that lung metastasis is facilitated by angiopoietin 2 (Ang2)-mediated suppression of lung-specific endothelial tight junction protein Claudin 5, which is augmented by the inflammatory fibrotic microenvironment and prevented by anti-Ang2 blocking …


Oric-101, A Glucocorticoid Receptor Antagonist, In Combination With Nab-Paclitaxel In Patients With Advanced Solid Tumors, Christopher T Chen, Vishesh Khanna, Shivaani Kummar, Raghad M Abdul-Karim, David Sommerhalder, Anthony W Tolcher, Naoto T Ueno, Sarah Lindsey Davis, Douglas W Orr, Erika Hamilton, Manish R Patel, Alexander I Spira, Shekeab Jauhari, Vaia Florou, Maureen Duff, Rongda Xu, Jian Wang, Shravani R Barkund, Haiying Zhou, Aleksandr Pankov, Wayne Kong, Nadine S Jahchan, Erica L Jackson, Jessica D Sun, Melissa R Junttila, Pratik S Multani, Anneleen Daemen, Edna Chow Maneval, Pamela N Munster Sep 2024

Oric-101, A Glucocorticoid Receptor Antagonist, In Combination With Nab-Paclitaxel In Patients With Advanced Solid Tumors, Christopher T Chen, Vishesh Khanna, Shivaani Kummar, Raghad M Abdul-Karim, David Sommerhalder, Anthony W Tolcher, Naoto T Ueno, Sarah Lindsey Davis, Douglas W Orr, Erika Hamilton, Manish R Patel, Alexander I Spira, Shekeab Jauhari, Vaia Florou, Maureen Duff, Rongda Xu, Jian Wang, Shravani R Barkund, Haiying Zhou, Aleksandr Pankov, Wayne Kong, Nadine S Jahchan, Erica L Jackson, Jessica D Sun, Melissa R Junttila, Pratik S Multani, Anneleen Daemen, Edna Chow Maneval, Pamela N Munster

Faculty, Staff and Student Publications

Purpose: In preclinical models, glucocorticoid receptor (GR) signaling drives resistance to taxane chemotherapy in multiple solid tumors via upregulation of antiapoptotic pathways. ORIC-101 is a potent and selective GR antagonist that was investigated in combination with taxane chemotherapy as an anticancer regimen preclinically and in a phase 1 clinical trial.

Patients and methods: The ability of ORIC-101 to reverse taxane resistance was assessed in cell lines and xenograft models, and a phase 1 study (NCT03928314) was conducted in patients with advanced solid tumors to determine the dose, safety, and antitumor activity of ORIC-101 with nab-paclitaxel.

Results: ORIC-101 reversed …


Smyd5 Is A Ribosomal Methyltransferase That Catalyzes Rpl40 Lysine Methylation To Enhance Translation Output And Promote Hepatocellular Carcinoma, Bisi Miao, Ling Ge, Chenxi He, Xinghao Wang, Jibo Wu, Xiang Li, Kun Chen, Jinkai Wan, Shenghui Xing, Lingnan Ren, Zhennan Shi, Shengnan Liu, Yajun Hu, Jiajia Chen, Yanyan Yu, Lijian Feng, Natasha M Flores, Zhihui Liang, Xinyi Xu, Ruoxin Wang, Jian Zhou, Jia Fan, Bin Xiang, En Li, Yuanhui Mao, Jingdong Cheng, Kehao Zhao, Pawel K Mazur, Jiabin Cai, Fei Lan Sep 2024

Smyd5 Is A Ribosomal Methyltransferase That Catalyzes Rpl40 Lysine Methylation To Enhance Translation Output And Promote Hepatocellular Carcinoma, Bisi Miao, Ling Ge, Chenxi He, Xinghao Wang, Jibo Wu, Xiang Li, Kun Chen, Jinkai Wan, Shenghui Xing, Lingnan Ren, Zhennan Shi, Shengnan Liu, Yajun Hu, Jiajia Chen, Yanyan Yu, Lijian Feng, Natasha M Flores, Zhihui Liang, Xinyi Xu, Ruoxin Wang, Jian Zhou, Jia Fan, Bin Xiang, En Li, Yuanhui Mao, Jingdong Cheng, Kehao Zhao, Pawel K Mazur, Jiabin Cai, Fei Lan

Faculty, Staff and Student Publications

While lysine methylation is well-known for regulating gene expression transcriptionally, its implications in translation have been largely uncharted. Trimethylation at lysine 22 (K22me3) on RPL40, a core ribosomal protein located in the GTPase activation center, was first reported 27 years ago. Yet, its methyltransferase and role in translation remain unexplored. Here, we report that SMYD5 has robust in vitro activity toward RPL40 K22 and primarily catalyzes RPL40 K22me3 in cells. The loss of SMYD5 and RPL40 K22me3 leads to reduced translation output and disturbed elongation as evidenced by increased ribosome collisions. SMYD5 and RPL40 K22me3 are upregulated in hepatocellular carcinoma …


Unraveling The Role Of Mir-181 In Skin Fibrosis Pathogenesis By Targeting Nudt21, Tingting W Mills, Minghua Wu, Jerry Alonso, Hydia Puente, Julio Charles, Zheng Chen, Seung-Hee Yoo, Maureen D Mayes, Shervin Assassi Sep 2024

Unraveling The Role Of Mir-181 In Skin Fibrosis Pathogenesis By Targeting Nudt21, Tingting W Mills, Minghua Wu, Jerry Alonso, Hydia Puente, Julio Charles, Zheng Chen, Seung-Hee Yoo, Maureen D Mayes, Shervin Assassi

Faculty, Staff and Student Publications

Systemic sclerosis (SSc) is a life-threatening autoimmune disease characterized by widespread fibrosis in the skin and several internal organs. Nudix Hydrolase 21 (NUDT2 or CFIm25) downregulation in fibroblasts is known to play detrimental roles in both skin and lung fibrosis. This study aims to investigate the upstream mechanisms that lead to NUDT21 repression in skin fibrosis. We identified transforming growth factor β (TGFβ1) as the primary cytokine that downregulated NUDT21 in normal skin fibroblasts. In the bleomycin-induced dermal fibrosis model, consistent with the peak activation of TGFβ1 at the late fibrotic stage, NUDT21 was downregulated at this stage, and delayed …


Multi-Institutional Audit Of Flash And Conventional Dosimetry With A 3d Printed Anatomically Realistic Mouse Phantom, M Ramish Ashraf, Stavros Melemenidis, Kevin Liu, Veljko Grilj, Jeannette Jansen, Brett Velasquez, Luke Connell, Joseph B Schulz, Claude Bailat, Aaron Libed, Rakesh Manjappa, Suparna Dutt, Luis Soto, Brianna Lau, Aaron Garza, William Larsen, Lawrie Skinner, Amy S Yu, Murat Surucu, Edward E Graves, Peter G Maxim, Stephen F Kry, Marie-Catherine Vozenin, Emil Schüler, Billy W Loo Sep 2024

Multi-Institutional Audit Of Flash And Conventional Dosimetry With A 3d Printed Anatomically Realistic Mouse Phantom, M Ramish Ashraf, Stavros Melemenidis, Kevin Liu, Veljko Grilj, Jeannette Jansen, Brett Velasquez, Luke Connell, Joseph B Schulz, Claude Bailat, Aaron Libed, Rakesh Manjappa, Suparna Dutt, Luis Soto, Brianna Lau, Aaron Garza, William Larsen, Lawrie Skinner, Amy S Yu, Murat Surucu, Edward E Graves, Peter G Maxim, Stephen F Kry, Marie-Catherine Vozenin, Emil Schüler, Billy W Loo

Faculty, Staff and Student Publications

Purpose: We conducted a multi-institutional dosimetric audit between FLASH and conventional dose rate (CONV) electron irradiations by using an anatomically realistic 3-dimensional (3D) printed mouse phantom.

Methods and materials: A computed tomography (CT) scan of a live mouse was used to create a 3D model of bony anatomy, lungs, and soft tissue. A dual-nozzle 3D printer was used to print the mouse phantom using acrylonitrile butadiene styrene (∼1.02 g/cm3) and polylactic acid (∼1.24 g/cm3) simultaneously to simulate soft tissue and bone densities, respectively. The lungs were printed separately using lightweight polylactic acid (∼0.64 g/cm3). Hounsfield units (HU), densities, and print-to-print …


Lifr Regulates Cholesterol-Driven Bidirectional Hepatocyte-Neutrophil Cross-Talk To Promote Liver Regeneration, Yalan Deng, Zilong Zhao, Marisela Sheldon, Yang Zhao, Hongqi Teng, Consuelo Martinez, Jie Zhang, Chunru Lin, Yutong Sun, Fan Yao, Michael A Curran, Hao Zhu, Li Ma Sep 2024

Lifr Regulates Cholesterol-Driven Bidirectional Hepatocyte-Neutrophil Cross-Talk To Promote Liver Regeneration, Yalan Deng, Zilong Zhao, Marisela Sheldon, Yang Zhao, Hongqi Teng, Consuelo Martinez, Jie Zhang, Chunru Lin, Yutong Sun, Fan Yao, Michael A Curran, Hao Zhu, Li Ma

Faculty, Staff and Student Publications

Liver regeneration is under metabolic and immune regulation. Despite increasing recognition of the involvement of neutrophils in regeneration, it is unclear how the liver signals to the bone marrow to release neutrophils after injury and how reparative neutrophils signal to hepatocytes to reenter the cell cycle. Here we report that loss of the liver tumour suppressor Lifr in mouse hepatocytes impairs, whereas overexpression of leukaemia inhibitory factor receptor (LIFR) promotes liver repair and regeneration after partial hepatectomy or toxic injury. In response to physical or chemical damage to the liver, LIFR from hepatocytes promotes the secretion of cholesterol and CXCL1 …


Trem2 On Microglia Cell Surface Binds To And Forms Functional Binary Complexes With Heparan Sulfate Modified With 6-O-Sulfation And Iduronic Acid, Ilayda Ozsan Mcmillan, Li Liang, Guowei Su, Xuehong Song, Kelly Drago, Hua Yang, Claudia Alvarez, Amika Sood, James Gibson, Robert J Woods, Chunyu Wang, Jian Liu, Fuming Zhang, Tom J Brett, Lianchun Wang Sep 2024

Trem2 On Microglia Cell Surface Binds To And Forms Functional Binary Complexes With Heparan Sulfate Modified With 6-O-Sulfation And Iduronic Acid, Ilayda Ozsan Mcmillan, Li Liang, Guowei Su, Xuehong Song, Kelly Drago, Hua Yang, Claudia Alvarez, Amika Sood, James Gibson, Robert J Woods, Chunyu Wang, Jian Liu, Fuming Zhang, Tom J Brett, Lianchun Wang

2020-Current year OA Pubs

The triggering receptor expressed on myeloid cells-2 (TREM2), a pivotal innate immune receptor, orchestrates functions such as inflammatory responses, phagocytosis, cell survival, and neuroprotection. TREM2 variants R47H and R62H have been associated with Alzheimer's disease, yet the underlying mechanisms remain elusive. Our previous research established that TREM2 binds to heparan sulfate (HS) and variants R47H and R62H exhibit reduced affinity for HS. Building upon this groundwork, our current study delves into the interplay between TREM2 and HS and its impact on microglial function. We confirm TREM2's binding to cell surface HS and demonstrate that TREM2 interacts with HS, forming HS-TREM2 …


Targeting Nuclear Receptor Coactivator Src-1 Prevents Colorectal Cancer Immune Escape By Reducing Transcription And Protein Stability Of Pd-L1, Yilin Hong, Qiang Chen, Zinan Wang, Yong Zhang, Bei Li, Hanshi Guo, Chuanzhong Huang, Xu Kong, Pingli Mo, Nengming Xiao, Jianming Xu, Yunbin Ye, Chundong Yu Sep 2024

Targeting Nuclear Receptor Coactivator Src-1 Prevents Colorectal Cancer Immune Escape By Reducing Transcription And Protein Stability Of Pd-L1, Yilin Hong, Qiang Chen, Zinan Wang, Yong Zhang, Bei Li, Hanshi Guo, Chuanzhong Huang, Xu Kong, Pingli Mo, Nengming Xiao, Jianming Xu, Yunbin Ye, Chundong Yu

Faculty, Staff and Students Publications

Programmed death-ligand 1 (PD-L1) is overexpressed in multiple cancers and critical for their immune escape. It has previously shown that the nuclear coactivator SRC-1 promoted colorectal cancer (CRC) progression by enhancing CRC cell viability, yet its role in CRC immune escape is unclear. Here, we demonstrate that SRC-1 is positively correlated with PD-L1 in human CRC specimens. SRC-1 deficiency significantly inhibits PD-L1 expression in CRC cells and retards murine CRC growth in subcutaneous grafts by enhancing CRC immune escape via increasing tumor infiltration of CD8


Optimal Humanized Scg3-Neutralizing Antibodies For Anti-Angiogenic Therapy Of Diabetic Retinopathy, Chengchi Huang, Prabuddha Waduge, Avinash Kaur, Hong Tian, Christina Y Weng, John Timothy Stout, Iok-Hou Pang, Keith A Webster, Wei Li Sep 2024

Optimal Humanized Scg3-Neutralizing Antibodies For Anti-Angiogenic Therapy Of Diabetic Retinopathy, Chengchi Huang, Prabuddha Waduge, Avinash Kaur, Hong Tian, Christina Y Weng, John Timothy Stout, Iok-Hou Pang, Keith A Webster, Wei Li

Faculty, Staff and Students Publications

Secretogranin III (Scg3) is a diabetic retinopathy (DR)-restricted angiogenic factor identified in preclinical studies as a target for DR therapy. Previously, our group generated and characterized ML49.3, an anti-Scg3 monoclonal antibody (mAb) which we then converted into an EBP2 humanized antibody Fab fragment (hFab) with potential for clinical application. We also generated anti-Scg3 mT4 mAb and related EBP3 hFab. In this study, to identify the preferred hFab for DR therapy, we compared all four antibodies for binding, neutralizing and therapeutic activities in vitro and in vivo. Octet binding kinetics analyses revealed that ML49.3 mAb, EBP2 hFab, mT4 mAb and EBP3 …


Enterococcus Faecalis-Derived Adenine Enhances Enterohaemorrhagic Escherichia Coli Type 3 Secretion System-Dependent Virulence, Fernando H Martins, Thibaut Rosay, Anubama Rajan, Hannah E Carter, Tayah Turocy, Andres Mejia, Jason M Crawford, Anthony W Maresso, Vanessa Sperandio Sep 2024

Enterococcus Faecalis-Derived Adenine Enhances Enterohaemorrhagic Escherichia Coli Type 3 Secretion System-Dependent Virulence, Fernando H Martins, Thibaut Rosay, Anubama Rajan, Hannah E Carter, Tayah Turocy, Andres Mejia, Jason M Crawford, Anthony W Maresso, Vanessa Sperandio

Faculty, Staff and Students Publications

Interactions between microbiota and enteric pathogens can promote colonization resistance or enhance pathogenesis. The pathobiont Enterococcus faecalis increases enterohaemorrhagic E. coli (EHEC) virulence by upregulating Type 3 Secretion System (T3SS) expression, effector translocation, and attaching and effacing (AE) lesion formation on enterocytes, but the mechanisms underlying this remain unknown. Using co-infection of organoids, metabolomics, supplementation experiments and bacterial genetics, here we show that co-culture of EHEC with E. faecalis increases the xanthine-hypoxanthine pathway activity and adenine biosynthesis. Adenine or E. faecalis promoted T3SS gene expression, while transcriptomics showed upregulation of adeP expression, which encodes an adenine importer. Mechanistically, adenine relieved …


Disruption Of Fuz In Mouse Embryos Generates Hypoplastic Hindbrain Development And Reduced Cranial Nerve Ganglia, Carlo Donato Caiaffa, Yogeshwari S Ambekar, Manmohan Singh, Ying Linda Lin, Bogdan Wlodarczyk, Salavat R Aglyamov, Giuliano Scarcelli, Kirill V Larin, Richard H Finnell Sep 2024

Disruption Of Fuz In Mouse Embryos Generates Hypoplastic Hindbrain Development And Reduced Cranial Nerve Ganglia, Carlo Donato Caiaffa, Yogeshwari S Ambekar, Manmohan Singh, Ying Linda Lin, Bogdan Wlodarczyk, Salavat R Aglyamov, Giuliano Scarcelli, Kirill V Larin, Richard H Finnell

Faculty, Staff and Students Publications

Background: The brain and spinal cord formation is initiated in the earliest stages of mammalian pregnancy in a highly organized process known as neurulation. Environmental or genetic interferences can impair neurulation, resulting in clinically significant birth defects known collectively as neural tube defects. The Fuz gene encodes a subunit of the CPLANE complex, a macromolecular planar polarity effector required for ciliogenesis. Ablation of Fuz in mouse embryos results in exencephaly and spina bifida, including dysmorphic craniofacial structures due to defective cilia formation and impaired Sonic Hedgehog signaling.

Results: We demonstrate that knocking Fuz out during embryonic mouse development results in …