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Systemic Inflammatory Response Syndrome And Mechanical Circulatory Support Devices, Mircea R. Mihu, Aly El-Banayosy Sep 2022

Systemic Inflammatory Response Syndrome And Mechanical Circulatory Support Devices, Mircea R. Mihu, Aly El-Banayosy

Journal of Shock and Hemodynamics

Systemic inflammatory response syndrome is an increased inflammatory state affecting the whole body. Mechanical circulatory support (MCS) is a temporary or permanent form of extracorporeal support that may have an associated complication of an exacerbated inflammatory response to the extracorporeal circuit. This brief review will focus on understanding the complex pathophysiology of inflammatory response to MCS, factors that influence the extent of the inflammatory response, the inflammatory response and outcomes as well as potential therapeutic strategies.


Targeting Ras Mutant Colorectal Cancer With Dual Inhibition Of Mek And Cdk4/6, Alexey V Sorokin, Preeti Kanikarla Marie, Lea Bitner, Muddassir Syed, Melanie Woods, Ganiraju Manyam, Lawrence N Kwong, Benny Johnson, Van K Morris, Philip Jones, David G Menter, Michael S Lee, Scott Kopetz Sep 2022

Targeting Ras Mutant Colorectal Cancer With Dual Inhibition Of Mek And Cdk4/6, Alexey V Sorokin, Preeti Kanikarla Marie, Lea Bitner, Muddassir Syed, Melanie Woods, Ganiraju Manyam, Lawrence N Kwong, Benny Johnson, Van K Morris, Philip Jones, David G Menter, Michael S Lee, Scott Kopetz

Faculty, Staff and Student Publications

UNLABELLED: KRAS and NRAS mutations occur in 45% of colorectal cancers, with combined MAPK pathway and CDK4/6 inhibition identified as a potential therapeutic strategy. In the current study, this combinatorial treatment approach was evaluated in a co-clinical trial in patient-derived xenografts (PDX), and safety was established in a clinical trial of binimetinib and palbociclib in patients with metastatic colorectal cancer with RAS mutations. Across 18 PDX models undergoing dual inhibition of MEK and CDK4/6, 60% of tumors regressed, meeting the co-clinical trial primary endpoint. Prolonged duration of response occurred predominantly in TP53 wild-type models. Clinical evaluation of binimetinib and palbociclib …


Protocol For Establishing A Protein-Protein Interaction Network Using Tandem Affinity Purification Followed By Mass Spectrometry In Mammalian Cells, Weixiang Bian, Hua Jiang, Shan Feng, Junjie Chen, Wenqi Wang, Xu Li Sep 2022

Protocol For Establishing A Protein-Protein Interaction Network Using Tandem Affinity Purification Followed By Mass Spectrometry In Mammalian Cells, Weixiang Bian, Hua Jiang, Shan Feng, Junjie Chen, Wenqi Wang, Xu Li

Faculty, Staff and Student Publications

Identification of protein interactors is fundamental to understanding their functions. Here, we describe a modified protocol for tandem affinity purification coupled with mass spectrometry (TAP/MS), which includes two-step purification. We detail the S-, 2×FLAG-, and Streptavidin-Binding Peptide (SBP)- tandem tags (SFB-tag) system for protein purification. This protocol can be used to identify protein interactors and establish a high-confidence protein-protein interaction network based on computational models. This is particularly useful for identifying


“Stripe” Transcription Factors Provide Accessibility To Co-Binding Partners In Mammalian Genomes, Yongbing Zhao, Supriya V Vartak, Andrea Conte, Xiang Wang, David A Garcia, Evan Stevens, Seol Kyoung Jung, Kyong-Rim Kieffer-Kwon, Laura Vian, Timothy Stodola, Francisco Moris, Laura Chopp, Silvia Preite, Pamela L Schwartzberg, Joseph M Kulinski, Ana Olivera, Christelle Harly, Avinash Bhandoola, Elisabeth F Heuston, David M Bodine, Raul Urrutia, Arpita Upadhyaya, Matthew T Weirauch, Gordon Hager, Rafael Casellas Sep 2022

“Stripe” Transcription Factors Provide Accessibility To Co-Binding Partners In Mammalian Genomes, Yongbing Zhao, Supriya V Vartak, Andrea Conte, Xiang Wang, David A Garcia, Evan Stevens, Seol Kyoung Jung, Kyong-Rim Kieffer-Kwon, Laura Vian, Timothy Stodola, Francisco Moris, Laura Chopp, Silvia Preite, Pamela L Schwartzberg, Joseph M Kulinski, Ana Olivera, Christelle Harly, Avinash Bhandoola, Elisabeth F Heuston, David M Bodine, Raul Urrutia, Arpita Upadhyaya, Matthew T Weirauch, Gordon Hager, Rafael Casellas

Faculty, Staff and Student Publications

Regulatory elements activate promoters by recruiting transcription factors (TFs) to specific motifs. Notably, TF-DNA interactions often depend on cooperativity with colocalized partners, suggesting an underlying cis-regulatory syntax. To explore TF cooperativity in mammals, we analyze ∼500 mouse and human primary cells by combining an atlas of TF motifs, footprints, ChIP-seq, transcriptomes, and accessibility. We uncover two TF groups that colocalize with most expressed factors, forming stripes in hierarchical clustering maps. The first group includes lineage-determining factors that occupy DNA elements broadly, consistent with their key role in tissue-specific transcription. The second one, dubbed universal stripe factors (USFs), comprises ∼30 SP, …


Lats1/2 Control Tgfb-Directed Epithelial-To-Mesenchymal Transition In The Murine Dorsal Cranial Neuroepithelium Through Yap Regulation, Idaliz M Martínez Traverso, Jeffrey D Steimle, Xiaolei Zhao, Jun Wang, James F Martin Sep 2022

Lats1/2 Control Tgfb-Directed Epithelial-To-Mesenchymal Transition In The Murine Dorsal Cranial Neuroepithelium Through Yap Regulation, Idaliz M Martínez Traverso, Jeffrey D Steimle, Xiaolei Zhao, Jun Wang, James F Martin

Faculty, Staff and Student Publications

Hippo signaling, an evolutionarily conserved kinase cascade involved in organ size control, plays key roles in various tissue developmental processes, but its role in craniofacial development remains poorly understood. Using the transgenic Wnt1-Cre2 driver, we inactivated the Hippo signaling components Lats1 and Lats2 in the cranial neuroepithelium of mouse embryos and found that the double conditional knockout (DCKO) of Lats1/2 resulted in neural tube and craniofacial defects. Lats1/2 DCKO mutant embryos had microcephaly with delayed and defective neural tube closure. Furthermore, neuroepithelial cell shape and architecture were disrupted within the cranial neural tube in Lats1/2 DCKO mutants. RNA sequencing of …


Inhibition Of Uba6 By Inosine Augments Tumour Immunogenicity And Responses, Lei Zhang, Li Jiang, Liang Yu, Qin Li, Xiangjun Tian, Jingquan He, Ling Zeng, Yuqin Yang, Chaoran Wang, Yuhan Wei, Xiaoyue Jiang, Jing Li, Xiaolu Ge, Qisheng Gu, Jikun Li, Di Wu, Anthony J Sadler, Di Yu, Dakang Xu, Yue Gao, Xiangliang Yuan, Baokun He Sep 2022

Inhibition Of Uba6 By Inosine Augments Tumour Immunogenicity And Responses, Lei Zhang, Li Jiang, Liang Yu, Qin Li, Xiangjun Tian, Jingquan He, Ling Zeng, Yuqin Yang, Chaoran Wang, Yuhan Wei, Xiaoyue Jiang, Jing Li, Xiaolu Ge, Qisheng Gu, Jikun Li, Di Wu, Anthony J Sadler, Di Yu, Dakang Xu, Yue Gao, Xiangliang Yuan, Baokun He

Faculty, Staff and Student Publications

Anti-cancer immunity and response to immune therapy is influenced by the metabolic states of the tumours. Immune checkpoint blockade therapy (ICB) is known to involve metabolic adaptation, however, the mechanism is not fully known. Here we show, by metabolic profiling of plasma samples from melanoma-bearing mice undergoing anti-PD1 and anti-CTLA4 combination therapy, that higher levels of purine metabolites, including inosine, mark ICB sensitivity. Metabolic profiles of ICB-treated human cancers confirm the association between inosine levels and ICB sensitivity. In mouse models, inosine supplementation sensitizes tumours to ICB, even if they are intrinsically ICB resistant, by enhancing T cell-mediated cytotoxicity and …


Impairment Of Igg Fc Functions Promotes Tumor Progression And Suppresses Nk Cell Antitumor Actions, Xuejun Fan, Zihao Yuan, Yueshui Zhao, Wei Xiong, Hao-Ching Hsiao, Rahmawati Pare, Jianmin Ding, Ahmad Almosa, Kai Sun, Songlin Zhang, Robert E Jordan, Cheok Song Lee, Zhiqiang An, Ningyan Zhang Sep 2022

Impairment Of Igg Fc Functions Promotes Tumor Progression And Suppresses Nk Cell Antitumor Actions, Xuejun Fan, Zihao Yuan, Yueshui Zhao, Wei Xiong, Hao-Ching Hsiao, Rahmawati Pare, Jianmin Ding, Ahmad Almosa, Kai Sun, Songlin Zhang, Robert E Jordan, Cheok Song Lee, Zhiqiang An, Ningyan Zhang

Faculty, Staff and Student Publications

Natural killer (NK) cells mediate antibody dependent cytotoxic killing of cancer cells via cross-linking FcγR on NK cells with IgG-Fc. Studies have shown that the single-hinge cleaved IgGs (scIgGs) have dysfunctional Fc and failed engagement with FcγRs on immune cells. However, little is known about how scIgGs impact on antitumor immunity in the tumor microenvironment. In this study, we revealed a significant association of tumor scIgGs with tumor progression and poor outcomes of breast cancer patients (n = 547). Using multiple mouse tumor models, we demonstrated that tumor scIgGs reduced NK cell cytotoxic activities and resulted in aggressive tumor progression. …


Identification Of Risk Genes For Alzheimer’S Disease By Gene Embedding, Yashwanth Lagisetty, Thomas Bourquard, Ismael Al-Ramahi, Carl Grant Mangleburg, Samantha Mota, Shirin Soleimani, Joshua M Shulman, Juan Botas, Kwanghyuk Lee, Olivier Lichtarge Sep 2022

Identification Of Risk Genes For Alzheimer’S Disease By Gene Embedding, Yashwanth Lagisetty, Thomas Bourquard, Ismael Al-Ramahi, Carl Grant Mangleburg, Samantha Mota, Shirin Soleimani, Joshua M Shulman, Juan Botas, Kwanghyuk Lee, Olivier Lichtarge

Duncan NRI Faculty and Staff Publications

Most disease-gene association methods do not account for gene-gene interactions, even though these play a crucial role in complex, polygenic diseases like Alzheimer’s disease (AD). To discover new genes whose interactions may contribute to pathology, we introduce GeneEMBED. This approach compares the functional perturbations induced in gene interaction network neighborhoods by coding variants from disease versus healthy subjects. In two independent AD cohorts of 5,169 exomes and 969 genomes, GeneEMBED identified novel candidates. These genes were differentially expressed in post mortem AD brains and modulated neurological phenotypes in mice. Four that were differentially overexpressed and modified neurodegeneration in vivo are …


Bet Inhibition Induces Vulnerability To Mcl1 Targeting Through Upregulation Of Fatty Acid Synthesis Pathway In Breast Cancer, Gonghong Yan, Augustin Luna, Heping Wang, Behnaz Bozorgui, Xubin Li, Maga Sanchez, Zeynep Dereli, Nermin Kahraman, Goknur Kara, Xiaohua Chen, Caishang Zheng, Daniel Mcgrail, Nidhi Sahni, Yiling Lu, Ozgun Babur, Murat Cokol, Bora Lim, Bulent Ozpolat, Chris Sander, Gordon B Mills, Anil Korkut Sep 2022

Bet Inhibition Induces Vulnerability To Mcl1 Targeting Through Upregulation Of Fatty Acid Synthesis Pathway In Breast Cancer, Gonghong Yan, Augustin Luna, Heping Wang, Behnaz Bozorgui, Xubin Li, Maga Sanchez, Zeynep Dereli, Nermin Kahraman, Goknur Kara, Xiaohua Chen, Caishang Zheng, Daniel Mcgrail, Nidhi Sahni, Yiling Lu, Ozgun Babur, Murat Cokol, Bora Lim, Bulent Ozpolat, Chris Sander, Gordon B Mills, Anil Korkut

Faculty, Staff and Student Publications

Therapeutic options for treatment of basal-like breast cancers remain limited. Here, we demonstrate that bromodomain and extra-terminal (BET) inhibition induces an adaptive response leading to MCL1 protein-driven evasion of apoptosis in breast cancer cells. Consequently, co-targeting MCL1 and BET is highly synergistic in breast cancer models. The mechanism of adaptive response to BET inhibition involves the upregulation of lipid synthesis enzymes including the rate-limiting stearoyl-coenzyme A (CoA) desaturase. Changes in lipid synthesis pathway are associated with increases in cell motility and membrane fluidity as well as re-localization and activation of HER2/EGFR. In turn, the HER2/EGFR signaling results in the accumulation …


Transmembrane Helices Mediate The Formation Of A Stable Ternary Complex Of B5r, Cyt B5, And Scd1, Jiemin Shen, Gang Wu, Ah-Lim Tsai, Ming Zhou Sep 2022

Transmembrane Helices Mediate The Formation Of A Stable Ternary Complex Of B5r, Cyt B5, And Scd1, Jiemin Shen, Gang Wu, Ah-Lim Tsai, Ming Zhou

Faculty, Staff and Students Publications

Mammalian cytochrome b5 (cyt b5) and cytochrome b5 reductase (b5R) are electron carrier proteins for membrane-embedded oxidoreductases. Both b5R and cyt b5 have a cytosolic domain and a single transmembrane (TM) helix. The cytosolic domains of b5R and cyt b5 contain cofactors required for electron transfer, but it is not clear if the TM helix has function beyond being an anchor to the membrane. Here we show that b5R and cyt b5 form a stable binary complex, and so do cyt b5 and stearoyl-CoA desaturase-1 (SCD1). We also show that b5R, cyt b5 and SCD1 form a stable ternary complex. …


Mutations In Bcor, A Co-Repressor Of Crx/Otx2, Are Associated With Early-Onset Retinal Degeneration, Maéva Langouët, Christine Jolicoeur, Awais Javed, Pierre Mattar, Micah D Gearhart, Stephen P Daiger, Mette Bertelsen, Lisbeth Tranebjærg, Nanna D Rendtorff, Karen Grønskov, Catherine Jespersgaard, Rui Chen, Zixi Sun, Hui Li, Najmeh Alirezaie, Jacek Majewski, Vivian J Bardwell, Ruifang Sui, Robert K Koenekoop, Michel Cayouette Sep 2022

Mutations In Bcor, A Co-Repressor Of Crx/Otx2, Are Associated With Early-Onset Retinal Degeneration, Maéva Langouët, Christine Jolicoeur, Awais Javed, Pierre Mattar, Micah D Gearhart, Stephen P Daiger, Mette Bertelsen, Lisbeth Tranebjærg, Nanna D Rendtorff, Karen Grønskov, Catherine Jespersgaard, Rui Chen, Zixi Sun, Hui Li, Najmeh Alirezaie, Jacek Majewski, Vivian J Bardwell, Ruifang Sui, Robert K Koenekoop, Michel Cayouette

Faculty, Staff and Student Publications

Many transcription factors regulating the production, survival, and function of photoreceptor cells have been identified, but little is known about transcriptional co-regulators in retinal health and disease. Here, we show that BCL6 co-repressor (BCOR), a Polycomb repressive complex 1 factor mutated in various cancers, is involved in photoreceptor degenerative diseases. Using proteomics and transcription assays, we report that BCOR interacts with the transcription factors CRX and OTX2 and reduces their ability to activate the promoters of photoreceptor-specific genes. CUT&RUN sequencing further shows that BCOR shares genome-wide binding profiles with CRX/OTX2, consistent with a general co-repression activity. We also identify missense …


Covid-19 And Children, Carl A Pierce, Kevan C Herold, Betsy C Herold, Janet Chou, Adrienne Randolph, Binita Kane, Sammie Mcfarland, Deepti Gurdasani, Christina Pagel, Peter Hotez, Sarah Cobey, Scott E Hensley Sep 2022

Covid-19 And Children, Carl A Pierce, Kevan C Herold, Betsy C Herold, Janet Chou, Adrienne Randolph, Binita Kane, Sammie Mcfarland, Deepti Gurdasani, Christina Pagel, Peter Hotez, Sarah Cobey, Scott E Hensley

Center for Medical Ethics and Health Policy Staff Publications

There has been substantial research on adult COVID-19 and how to treat it. But how do severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections afflict children? The COVID-19 pandemic has yielded many surprises, not least that children generally develop less severe disease than older adults, which is unusual for a respiratory disease. However, some children can develop serious complications from COVID-19, such as multisystem inflammatory syndrome in children (MIS-C) and Long Covid, even after mild or asymptomatic COVID-19. Why this occurs in some and not others is an important question. Moreover, when children do contract COVID-19, understanding their role in …


Modelling Aggressive Prostate Cancers Of Young Men In Immune-Competent Mice, Driven By Isogenic Trp53 Alterations And Pten Loss, Javier Octavio Mejía-Hernández, Simon P Keam, Reem Saleh, Fenella Muntz, Stephen B Fox, David Byrne, Arielle Kogan, Lokman Pang, Jennifer Huynh, Cassandra Litchfield, Franco Caramia, Guillermina Lozano, Hua He, James M You, Shahneen Sandhu, Scott G Williams, Ygal Haupt, Sue Haupt Sep 2022

Modelling Aggressive Prostate Cancers Of Young Men In Immune-Competent Mice, Driven By Isogenic Trp53 Alterations And Pten Loss, Javier Octavio Mejía-Hernández, Simon P Keam, Reem Saleh, Fenella Muntz, Stephen B Fox, David Byrne, Arielle Kogan, Lokman Pang, Jennifer Huynh, Cassandra Litchfield, Franco Caramia, Guillermina Lozano, Hua He, James M You, Shahneen Sandhu, Scott G Williams, Ygal Haupt, Sue Haupt

Faculty, Staff and Student Publications

Understanding prostate cancer onset and progression in order to rationally treat this disease has been critically limited by a dire lack of relevant pre-clinical animal models. We have generated a set of genetically engineered mice that mimic human prostate cancer, initiated from the gland epithelia. We chose driver gene mutations that are specifically relevant to cancers of young men, where aggressive disease poses accentuated survival risks. An outstanding advantage of our models are their intact repertoires of immune cells. These mice provide invaluable insight into the importance of immune responses in prostate cancer and offer scope for studying treatments, including …


Transplantation Of Astrocytic Mitochondria Modulates Neuronal Antioxidant Defense And Neuroplasticity And Promotes Functional Recovery After Intracerebral Hemorrhage, Ryosuke Tashiro, Jesus Bautista-Garrido, Dan Ozaki, Guanghua Sun, Lidiya Obertas, Alexis S Mobley, Gab Seok Kim, Jaroslaw Aronowski, Joo Eun Jung Sep 2022

Transplantation Of Astrocytic Mitochondria Modulates Neuronal Antioxidant Defense And Neuroplasticity And Promotes Functional Recovery After Intracerebral Hemorrhage, Ryosuke Tashiro, Jesus Bautista-Garrido, Dan Ozaki, Guanghua Sun, Lidiya Obertas, Alexis S Mobley, Gab Seok Kim, Jaroslaw Aronowski, Joo Eun Jung

Faculty, Staff and Student Publications

Astrocytes release functional mitochondria (Mt) that play regulatory and prosurvival functions on entering adjacent cells. We recently demonstrated that these released Mts could enter microglia to promote their reparative/prophagocytic phenotype that assists in hematoma cleanup and neurological recovery after intracerebral hemorrhage (ICH). However, the relevance of astrocytic Mt transfer into neurons in protecting brain after ICH is unclear. Here, we found that ICH causes a robust increase in superoxide generation and elevated oxidative damage that coincides with loss of the mitochondrial enzyme manganese superoxide dismutase (Mn-SOD). The damaging effect of ICH was reversed by intravenous transplantation of astrocytic Mt, which …


Fighting For Recovery On Multiple Fronts: The Past, Present, And Future Of Clinical Trials For Spinal Cord Injury, Valerie A Dietz, Nolan Roberts, Katelyn Knox, Sherilynne Moore, Michael Pitonak, Chris Barr, Jesus Centeno, Scott Leininger, Kent C New, Peter Nowell, Matthew Rodreick, Cedric G Geoffroy, Argyrios Stampas, Jennifer N Dulin Sep 2022

Fighting For Recovery On Multiple Fronts: The Past, Present, And Future Of Clinical Trials For Spinal Cord Injury, Valerie A Dietz, Nolan Roberts, Katelyn Knox, Sherilynne Moore, Michael Pitonak, Chris Barr, Jesus Centeno, Scott Leininger, Kent C New, Peter Nowell, Matthew Rodreick, Cedric G Geoffroy, Argyrios Stampas, Jennifer N Dulin

Faculty, Staff and Student Publications

Through many decades of preclinical research, great progress has been achieved in understanding the complex nature of spinal cord injury (SCI). Preclinical research efforts have guided and shaped clinical trials, which are growing in number by the year. Currently, 1,149 clinical trials focused on improving outcomes after SCI are registered in the U.S. National Library of Medicine at ClinicalTrials.gov. We conducted a systematic analysis of these SCI clinical trials, using publicly accessible data downloaded from ClinicalTrials.gov. After extracting all available data for these trials, we categorized each trial according to the types of interventions being tested and the types of …


Why Study Mechanisms Of Brain Stimulation Therapies? To Modulate The Right Neurons, In The Right Way, At The Right Time, Matthew J Mcginley, Steven T Lee Sep 2022

Why Study Mechanisms Of Brain Stimulation Therapies? To Modulate The Right Neurons, In The Right Way, At The Right Time, Matthew J Mcginley, Steven T Lee

Duncan NRI Faculty and Staff Publications

Clinical applications of vagus nerve stimulation (VNS) are burgeoning, but mechanistic work lags behind. In this issue of Neuron, Bowles and colleagues show that VNS timed with positive reinforcement improves motor learning and cortical function by a cholinergic mechanism.


Synaptic Origins Of The Complex Receptive Field Structure In Primate Smooth Monostratified Retinal Ganglion Cells, Andrea S Bordt, Sara S Patterson, James A Kuchenbecker, Marcus A Mazzaferri, Joel N Yearick, Emma R Yang, Judith Mosinger Ogilvie, Jay Neitz, David W Marshak Sep 2022

Synaptic Origins Of The Complex Receptive Field Structure In Primate Smooth Monostratified Retinal Ganglion Cells, Andrea S Bordt, Sara S Patterson, James A Kuchenbecker, Marcus A Mazzaferri, Joel N Yearick, Emma R Yang, Judith Mosinger Ogilvie, Jay Neitz, David W Marshak

Faculty, Staff and Student Publications

Ganglion cells are the projection neurons of the retina. Intrinsically photosensitive retinal ganglion cells (ipRGCs) express the photopigment melanopsin and also receive input from rods and cones via bipolar cells and amacrine cells. In primates, multiple types of ipRGCs have been identified. The ipRGCs with somas in the ganglion cell layer have been studied extensively, but less is known about those with somas in the inner nuclear layer, the "displaced" cells. To investigate their synaptic inputs, three sets of horizontal, ultrathin sections through central macaque retina were collected using serial block-face scanning electron microscopy. One displaced ipRGC received nearly all …


Pim1 Promotes Hepatic Conversion By Suppressing Reprogramming-Induced Ferroptosis And Cell Cycle Arrest, Yangyang Yuan, Chenwei Wang, Xuran Zhuang, Shaofeng Lin, Miaomiao Luo, Wankun Deng, Jiaqi Zhou, Lihui Liu, Lina Mao, Wenbo Peng, Jian Chen, Qiangsong Wang, Yilai Shu, Yu Xue, Pengyu Huang Sep 2022

Pim1 Promotes Hepatic Conversion By Suppressing Reprogramming-Induced Ferroptosis And Cell Cycle Arrest, Yangyang Yuan, Chenwei Wang, Xuran Zhuang, Shaofeng Lin, Miaomiao Luo, Wankun Deng, Jiaqi Zhou, Lihui Liu, Lina Mao, Wenbo Peng, Jian Chen, Qiangsong Wang, Yilai Shu, Yu Xue, Pengyu Huang

Faculty, Staff and Student Publications

Protein kinase-mediated phosphorylation plays a critical role in many biological processes. However, the identification of key regulatory kinases is still a great challenge. Here, we develop a trans-omics-based method, central kinase inference, to predict potentially key kinases by integrating quantitative transcriptomic and phosphoproteomic data. Using known kinases associated with anti-cancer drug resistance, the accuracy of our method denoted by the area under the curve is 5.2% to 29.5% higher than Kinase-Substrate Enrichment Analysis. We further use this method to analyze trans-omic data in hepatocyte maturation and hepatic reprogramming of human dermal fibroblasts, uncovering 5 kinases as regulators in the two …


Ablating Lgr5-Expressing Prostatic Stromal Cells Activates The Erk-Mediated Mechanosensory Signaling And Disrupts Prostate Tissue Homeostasis, Xing Wei, Li Zhang, Yiqun Zhang, Cody Cooper, Chris Brewer, Chia-Feng Tsai, Yi-Ting Wang, Micah Glaz, Hunter B Wessells, Jianwen Que, Mark A Titus, Vincenzino Cirulli, Adam Glaser, Tao Liu, Nicholas P Reder, Chad J Creighton, Li Xin Sep 2022

Ablating Lgr5-Expressing Prostatic Stromal Cells Activates The Erk-Mediated Mechanosensory Signaling And Disrupts Prostate Tissue Homeostasis, Xing Wei, Li Zhang, Yiqun Zhang, Cody Cooper, Chris Brewer, Chia-Feng Tsai, Yi-Ting Wang, Micah Glaz, Hunter B Wessells, Jianwen Que, Mark A Titus, Vincenzino Cirulli, Adam Glaser, Tao Liu, Nicholas P Reder, Chad J Creighton, Li Xin

Faculty, Staff and Student Publications

Functional implication of stromal heterogeneity in the prostate remains incompletely understood. Using lineage tracing and light-sheet imaging, we show that some fibroblast cells at the mouse proximal prostatic ducts and prostatic urethra highly express Lgr5. Genetic ablation of these anatomically restricted stromal cells, but not nonselective ablation of prostatic stromal cells, rapidly induces prostate epithelial turnover and dedifferentiation that are reversed following spontaneous restoration of the Lgr5


Genetic- And Diet-Induced Ω-3 Fatty Acid Enrichment Enhances Trpv4-Mediated Vasodilation In Mice, Rebeca Caires, Tessa A C Garrud, Luis O Romero, Carlos Fernández-Peña, Valeria Vásquez, Jonathan H Jaggar, Julio F Cordero-Morales Sep 2022

Genetic- And Diet-Induced Ω-3 Fatty Acid Enrichment Enhances Trpv4-Mediated Vasodilation In Mice, Rebeca Caires, Tessa A C Garrud, Luis O Romero, Carlos Fernández-Peña, Valeria Vásquez, Jonathan H Jaggar, Julio F Cordero-Morales

Faculty, Staff and Student Publications

TRPV4 channel activation in endothelial cells leads to vasodilation, while impairment of TRPV4 activity is implicated in vascular dysfunction. Strategies that increase TRPV4 activity could enhance vasodilation and ameliorate vascular disorders. Here, we show that supplementation with eicosapentaenoic acid (EPA), an ω-3 polyunsaturated fatty acid known to have beneficial cardiovascular effects, increases TRPV4 activity in human endothelial cells of various vascular beds. Mice carrying the C. elegans FAT-1 enzyme, which converts ω-6 to ω-3 polyunsaturated fatty acids, display higher EPA content and increased TRPV4-mediated vasodilation in mesenteric arteries. Likewise, mice fed an EPA-enriched diet exhibit enhanced and prolonged TRPV4-dependent vasodilation …


In Vivo Measurement Of Intradiscal Pressure Changes Related To Thrust And Non-Thrust Spinal Manipulation In An Animal Model: A Pilot Study, William R Reed, Michael A K Liebschner, Carla R Lima, Harshvardhan Singh, Christopher P Hurt, Daniel F Martins, James M Cox, Maruti R Gudavalli Sep 2022

In Vivo Measurement Of Intradiscal Pressure Changes Related To Thrust And Non-Thrust Spinal Manipulation In An Animal Model: A Pilot Study, William R Reed, Michael A K Liebschner, Carla R Lima, Harshvardhan Singh, Christopher P Hurt, Daniel F Martins, James M Cox, Maruti R Gudavalli

Faculty, Staff and Students Publications

BACKGROUND: The intervertebral disc is a known back pain generator and is frequently the focus of spinal manipulative therapy evaluation and treatment. The majority of our current knowledge regarding intradiscal pressure (IDP) changes related to spinal manual therapy involves cadaveric studies with their inherent limitations. Additional in vivo animal models are needed to investigate intervertebral disc physiological and molecular mechanisms related to spinal manipulation and spinal mobilization treatment for low back disorders.

METHODS: Miniature pressure catheters (Millar SPR-1000) were inserted into either the L4-L5 or L5-L6 intervertebral disc of 3 deeply anesthetized adult cats (Oct 2012-May 2013). Changes in IDP …


The Lawnmower And The Pediatric Lower Extremity: A Catastrophic Combination, Alvaro Tamayo-Gutierrez, Hassan N Ibrahim Sep 2022

The Lawnmower And The Pediatric Lower Extremity: A Catastrophic Combination, Alvaro Tamayo-Gutierrez, Hassan N Ibrahim

Faculty, Staff and Student Publications

Heart failure can lead to renal impairment, an interaction now termed "cardiorenal syndrome." The prevalent physiological explanation for the renal impairment that accompanies heart failure centers around the forward failure hypothesis, which emphasizes the role of left ventricular dysfunction in causing edema, and the backward failure hypothesis, which singles out venous congestion as the dominant mechanism of edema and reduced glomerular filtration rate. In this review, we provide an appraisal on venous congestion, an extremely important contributor that has received little attention. We also summarize the pharmacology of loop diuretics, explain current understanding of diuretic resistance, and address controversies regarding …


An Enzymatically Cleavable Tripeptide Linker For Maximizing The Therapeutic Index Of Antibody-Drug Conjugates, Summer Y Y Ha, Yasuaki Anami, Chisato M Yamazaki, Wei Xiong, Candice M Haase, Scott D Olson, Jangsoon Lee, Naoto T Ueno, Ningyan Zhang, Zhiqiang An, Kyoji Tsuchikama Sep 2022

An Enzymatically Cleavable Tripeptide Linker For Maximizing The Therapeutic Index Of Antibody-Drug Conjugates, Summer Y Y Ha, Yasuaki Anami, Chisato M Yamazaki, Wei Xiong, Candice M Haase, Scott D Olson, Jangsoon Lee, Naoto T Ueno, Ningyan Zhang, Zhiqiang An, Kyoji Tsuchikama

Faculty, Staff and Student Publications

Valine-citrulline is a protease-cleavable linker commonly used in many drug delivery systems, including antibody-drug conjugates (ADC) for cancer therapy. However, its suboptimal in vivo stability can cause various adverse effects such as neutropenia and hepatotoxicity, leading to dose delays or treatment discontinuation. Here, we report that glutamic acid-glycine-citrulline (EGCit) linkers have the potential to solve this clinical issue without compromising the ability of traceless drug release and ADC therapeutic efficacy. We demonstrate that our EGCit ADC resists neutrophil protease-mediated degradation and spares differentiating human neutrophils. Notably, our anti-HER2 ADC shows almost no sign of blood and liver toxicity in healthy …


Longitudinal Effects Of Combination Antiretroviral Therapy On Cognition And Neuroimaging Biomarkers In Treatment-Naive People With Hiv, Miriam T Weber, Alan Finkelstein, Md Nasir Uddin, Elizabeth Asiago Reddy, Roberto C Arduino, Lu Wang, Madalina E Tivarus, Jianhui Zhong, Xing Qiu, Giovanni Schifitto Sep 2022

Longitudinal Effects Of Combination Antiretroviral Therapy On Cognition And Neuroimaging Biomarkers In Treatment-Naive People With Hiv, Miriam T Weber, Alan Finkelstein, Md Nasir Uddin, Elizabeth Asiago Reddy, Roberto C Arduino, Lu Wang, Madalina E Tivarus, Jianhui Zhong, Xing Qiu, Giovanni Schifitto

Faculty, Staff and Student Publications

BACKGROUND AND OBJECTIVES: While combination antiretroviral therapy (cART) has dramatically increased the life expectancy of people with HIV (PWH), nearly 50% develop HIV-associated neurocognitive disorders. This may be due to previously uncontrolled HIV viral replication, immune activation maintained by residual viral replication or activation from other sources, or cART-associated neurotoxicity. The aim of this study was to determine the effect of cART on cognition and neuroimaging biomarkers in PWH before and after initiation of cART compared with that in HIV-negative controls (HCs) and HIV elite controllers (ECs) who remain untreated.

METHODS: We recruited 3 groups of participants from the University …


Developing High-Affinity Decoy Receptors To Treat Multiple Myeloma And Diffuse Large B Cell Lymphoma, Yu Rebecca Miao, Kaushik Thakkar, Can Cenik, Dadi Jiang, Kazue Mizuno, Chenjun Jia, Caiyun Grace Li, Hongjuan Zhao, Anh Diep, Yu Xu, Xin Eric Zhang, Teddy Tat Chi Yang, Michaela Liedtke, Parveen Abidi, Wing-Sze Leung, Albert C Koong, Amato J Giaccia Sep 2022

Developing High-Affinity Decoy Receptors To Treat Multiple Myeloma And Diffuse Large B Cell Lymphoma, Yu Rebecca Miao, Kaushik Thakkar, Can Cenik, Dadi Jiang, Kazue Mizuno, Chenjun Jia, Caiyun Grace Li, Hongjuan Zhao, Anh Diep, Yu Xu, Xin Eric Zhang, Teddy Tat Chi Yang, Michaela Liedtke, Parveen Abidi, Wing-Sze Leung, Albert C Koong, Amato J Giaccia

Faculty, Staff and Student Publications

Disease relapse and treatment-induced immunotoxicity pose significant clinical challenges for patients with hematological cancers. Here, we reveal distinctive requirements for neutralizing TNF receptor ligands APRIL and BAFF and their receptor activity in MM and DLBCL, impacting protein translation and production in MM cells and modulating the translation efficiency of the ATM interactor (ATMIN/ACSIZ). Therapeutically, we investigated the use of BCMA decoy receptor (sBCMA-Fc) as an inhibitor of APRIL and BAFF. While wild-type sBCMA-Fc effectively blocked APRIL signaling in MM, it lacked activity in DLBCL due to its weak BAFF binding. To expand the therapeutic utility of sBCMA-Fc, we engineered an …


Comparative Analysis Of Co-Cultured Amniotic Cell-Conditioned Media With Cell-Free Amniotic Fluid Reveals Differential Effects On Epithelial-Mesenchymal Transition And Myofibroblast Activation, Naiyou Liu, Charles M Bowen, Mohammadali M Shoja, Karen Larissa Castro De Pereira, Laxmi Priya Dongur, Antonio Saad, William K Russell, Thomas Christopher Broderick, Jeffrey H Fair, William Samuel Fagg Sep 2022

Comparative Analysis Of Co-Cultured Amniotic Cell-Conditioned Media With Cell-Free Amniotic Fluid Reveals Differential Effects On Epithelial-Mesenchymal Transition And Myofibroblast Activation, Naiyou Liu, Charles M Bowen, Mohammadali M Shoja, Karen Larissa Castro De Pereira, Laxmi Priya Dongur, Antonio Saad, William K Russell, Thomas Christopher Broderick, Jeffrey H Fair, William Samuel Fagg

Faculty, Staff and Student Publications

Myofibroblast activation is a cellular response elicited by a variety of physiological or pathological insults whereby cells initiate a coordinated response intended to eradicate the insult and then revert back to a basal state. However, an underlying theme in various disease states is persistent myofibroblast activation that fails to resolve. Based on multiple observations, we hypothesized that the secreted factors harvested from co-culturing amniotic stem cells might mimic the anti-inflammatory state that cell-free amniotic fluid (AF) elicits. We optimized an amnion epithelial and amniotic fluid cell co-culture system, and tested this hypothesis in the context of myofibroblast activation. However, we …


A Potential Role For Substance P In West Nile Virus Neuropathogenesis, Shannon E Ronca, Sarah M Gunter, Rebecca Berry Kairis, Allison Lino, Jonathan Romero, Robia G Pautler, Alan Nimmo, Kristy O Murray Sep 2022

A Potential Role For Substance P In West Nile Virus Neuropathogenesis, Shannon E Ronca, Sarah M Gunter, Rebecca Berry Kairis, Allison Lino, Jonathan Romero, Robia G Pautler, Alan Nimmo, Kristy O Murray

Faculty, Staff and Students Publications

Of individuals who develop West Nile neuroinvasive disease (WNND), ~10% will die and >40% will develop long-term complications. Current treatment recommendations solely focus on supportive care; therefore, we urgently need to identify novel and effective therapeutic options. We observed a correlation between substance P (SP), a key player in neuroinflammation, and its receptor Neurokinin-1 (NK1R). Our study in a wild-type BL6 mouse model found that SP is upregulated in the brain during infection, which correlated with neuroinvasion and damage to the blood−brain barrier. Blocking the SP/NK1R interaction beginning at disease onset modestly improved survival and prolonged time to death in …


The Tfeb-Tgif1 Axis Regulates Emt In Mouse Epicardial Cells, Elena Astanina, Gabriella Doronzo, Davide Corà, Francesco Neri, Salvatore Oliviero, Tullio Genova, Federico Mussano, Emanuele Middonti, Edoardo Vallariello, Chiara Cencioni, Donatella Valdembri, Guido Serini, Federica Limana, Eleonora Foglio, Andrea Ballabio, Federico Bussolino Sep 2022

The Tfeb-Tgif1 Axis Regulates Emt In Mouse Epicardial Cells, Elena Astanina, Gabriella Doronzo, Davide Corà, Francesco Neri, Salvatore Oliviero, Tullio Genova, Federico Mussano, Emanuele Middonti, Edoardo Vallariello, Chiara Cencioni, Donatella Valdembri, Guido Serini, Federica Limana, Eleonora Foglio, Andrea Ballabio, Federico Bussolino

Duncan NRI Faculty and Staff Publications

Epithelial-mesenchymal transition (EMT) is a complex and pivotal process involved in organogenesis and is related to several pathological processes, including cancer and fibrosis. During heart development, EMT mediates the conversion of epicardial cells into vascular smooth muscle cells and cardiac interstitial fibroblasts. Here, we show that the oncogenic transcription factor EB (TFEB) is a key regulator of EMT in epicardial cells and that its genetic overexpression in mouse epicardium is lethal due to heart defects linked to impaired EMT. TFEB specifically orchestrates the EMT-promoting function of transforming growth factor (TGF) β, and this effect results from activated transcription of thymine-guanine-interacting …


Retinoic Acid Receptor Activation Reduces Metastatic Prostate Cancer Bone Lesions By Blocking The Endothelial-To-Osteoblast Transition, Guoyu Yu, Paul G Corn, Pengfei Shen, Jian H Song, Yu-Chen Lee, Song-Chang Lin, Jing Pan, Sandeep K Agarwal, Theocharis Panaretakis, Maurizio Pacifici, Christopher J Logothetis, Li-Yuan Yu-Lee, Sue-Hwa Lin Sep 2022

Retinoic Acid Receptor Activation Reduces Metastatic Prostate Cancer Bone Lesions By Blocking The Endothelial-To-Osteoblast Transition, Guoyu Yu, Paul G Corn, Pengfei Shen, Jian H Song, Yu-Chen Lee, Song-Chang Lin, Jing Pan, Sandeep K Agarwal, Theocharis Panaretakis, Maurizio Pacifici, Christopher J Logothetis, Li-Yuan Yu-Lee, Sue-Hwa Lin

Faculty, Staff and Students Publications

Metastatic prostate cancer (PCa) in the bone induces bone-forming lesions that contribute to progression and therapy resistance. PCa-induced bone originates from endothelial cells (EC) that have undergone endothelial-to-osteoblast (EC-to-OSB) transition in response to tumor-secreted BMP4. Current strategies targeting PCa-induced bone formation are lacking. Here, we show that activation of retinoic acid receptor (RAR) inhibits EC-to-OSB transition and reduces PCa-induced bone formation. Treatment with palovarotene, an RARγ agonist being tested for heterotopic ossification in fibrodysplasia ossificans progressiva, inhibited EC-to-OSB transition and osteoblast mineralization in vitro and decreased tumor-induced bone formation and tumor growth in several osteogenic PCa models, and similar effects …


Chd1 Promotes Sensitivity To Aurora Kinase Inhibitors By Suppressing Interaction Of Aurka With Its Coactivator Tpx2, Haoyan Li, Yin Wang, Kevin Lin, Varadha Balaji Venkadakrishnan, Martin Bakht, Wei Shi, Chenling Meng, Jie Zhang, Kaitlyn Tremble, Xin Liang, Jian H Song, Xu Feng, Vivien Van, Pingna Deng, Jared K Burks, Ana Aparicio, Khandan Keyomarsi, Junjie Chen, Yue Lu, Himisha Beltran, Di Zhao Sep 2022

Chd1 Promotes Sensitivity To Aurora Kinase Inhibitors By Suppressing Interaction Of Aurka With Its Coactivator Tpx2, Haoyan Li, Yin Wang, Kevin Lin, Varadha Balaji Venkadakrishnan, Martin Bakht, Wei Shi, Chenling Meng, Jie Zhang, Kaitlyn Tremble, Xin Liang, Jian H Song, Xu Feng, Vivien Van, Pingna Deng, Jared K Burks, Ana Aparicio, Khandan Keyomarsi, Junjie Chen, Yue Lu, Himisha Beltran, Di Zhao

Faculty, Staff and Student Publications

UNLABELLED: Clinical studies have shown that subsets of patients with cancer achieve a significant benefit from Aurora kinase inhibitors, suggesting an urgent need to identify biomarkers for predicting drug response. Chromodomain helicase DNA binding protein 1 (CHD1) is involved in chromatin remodeling, DNA repair, and transcriptional plasticity. Prior studies have demonstrated that CHD1 has distinct expression patterns in cancers with different molecular features, but its impact on drug responsiveness remains understudied. Here, we show that CHD1 promotes the susceptibility of prostate cancer cells to inhibitors targeting Aurora kinases, while depletion of CHD1 impairs their efficacy in vitro and in vivo. …