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Articles 5161 - 5190 of 9226
Full-Text Articles in Entire DC Network
Tumor-Intrinsic Sirpa Promotes Sensitivity To Checkpoint Inhibition Immunotherapy In Melanoma, Zhicheng Zhou, Mei-Ju May Chen, Yikai Luo, Kamalika Mojumdar, Xin Peng, Hu Chen, Shweta V Kumar, Rehan Akbani, Yiling Lu, Han Liang
Tumor-Intrinsic Sirpa Promotes Sensitivity To Checkpoint Inhibition Immunotherapy In Melanoma, Zhicheng Zhou, Mei-Ju May Chen, Yikai Luo, Kamalika Mojumdar, Xin Peng, Hu Chen, Shweta V Kumar, Rehan Akbani, Yiling Lu, Han Liang
Faculty, Staff and Student Publications
Checkpoint inhibition immunotherapy has revolutionized cancer treatment, but many patients show resistance. Here we perform integrative transcriptomic and proteomic analyses on emerging immuno-oncology targets across multiple clinical cohorts of melanoma under anti-PD-1 treatment, on both bulk and single-cell levels. We reveal a surprising role of tumor-intrinsic SIRPA in enhancing antitumor immunity, in contrast to its well-established role as a major inhibitory immune modulator in macrophages. The loss of SIRPA expression is a marker of melanoma dedifferentiation, a key phenotype linked to immunotherapy efficacy. Inhibition of SIRPA in melanoma cells abrogates tumor killing by activated CD8+ T cells in a co-culture …
Increased Circulating Cortisol After Vaginal Birth Is Associated With Increased Fgf19 Secretion In Neonatal Pigs, Caitlin Vonderohe, Gregory Guthrie, Barbara Stoll, Valeria Melendez Hebib, Harry Dawson, Douglas Burrin
Increased Circulating Cortisol After Vaginal Birth Is Associated With Increased Fgf19 Secretion In Neonatal Pigs, Caitlin Vonderohe, Gregory Guthrie, Barbara Stoll, Valeria Melendez Hebib, Harry Dawson, Douglas Burrin
Children’s Nutrition Research Center Staff Publications
The influence of birth modality (scheduled cesarean or spontaneous vaginal) on the development of the newborn has been a source of controversy in neonatology. The impact of cesarean vs vaginal birth on the development of bile acid and fibroblast growth factor 19 (FGF19) signaling is unknown. Our aim was to determine the effect of birth modality and gestational age (preterm vs term) on plasma hormone levels, bile acid pool distribution, expression of genes in the bile acid-FXR-FGF19 pathway, and plasma levels of FGF19 at birth and on day 3 of life in neonatal pigs. Four sows underwent cesarean delivery on …
Inhibiting Ack1-Mediated Phosphorylation Of C-Terminal Src Kinase Counteracts Prostate Cancer Immune Checkpoint Blockade Resistance, Dhivya Sridaran, Surbhi Chouhan, Kiran Mahajan, Arun Renganathan, Cody Weimholt, Shambhavi Bhagwat, Melissa Reimers, Eric H Kim, Manish K Thakur, Muhammad A Saeed, Russell K Pachynski, Markus A Seeliger, W Todd Miller, Felix Y Feng, Nupam P Mahajan
Inhibiting Ack1-Mediated Phosphorylation Of C-Terminal Src Kinase Counteracts Prostate Cancer Immune Checkpoint Blockade Resistance, Dhivya Sridaran, Surbhi Chouhan, Kiran Mahajan, Arun Renganathan, Cody Weimholt, Shambhavi Bhagwat, Melissa Reimers, Eric H Kim, Manish K Thakur, Muhammad A Saeed, Russell K Pachynski, Markus A Seeliger, W Todd Miller, Felix Y Feng, Nupam P Mahajan
2020-Current year OA Pubs
Solid tumours are highly refractory to immune checkpoint blockade (ICB) therapies due to the functional impairment of effector T cells and their inefficient trafficking to tumours. T-cell activation is negatively regulated by C-terminal Src kinase (CSK); however, the exact mechanism remains unknown. Here we show that the conserved oncogenic tyrosine kinase Activated CDC42 kinase 1 (ACK1) is able to phosphorylate CSK at Tyrosine 18 (pY18), which enhances CSK function, constraining T-cell activation. Mice deficient in the Tnk2 gene encoding Ack1, are characterized by diminished CSK Y18-phosphorylation and spontaneous activation of CD8
Enterotoxigenic Escherichia Coli Heat-Labile Toxin Drives Enteropathic Changes In Small Intestinal Epithelia, Alaullah Sheikh, Brunda Tumala, Tim J Vickers, John C Martin, Bruce A Rosa, Subrata Sabui, Supratim Basu, Rita D Simoes, Makedonka Mitreva, Chad Storer, Erik Tyksen, Richard D Head, Wandy Beatty, Hamid M Said, James M Fleckenstein
Enterotoxigenic Escherichia Coli Heat-Labile Toxin Drives Enteropathic Changes In Small Intestinal Epithelia, Alaullah Sheikh, Brunda Tumala, Tim J Vickers, John C Martin, Bruce A Rosa, Subrata Sabui, Supratim Basu, Rita D Simoes, Makedonka Mitreva, Chad Storer, Erik Tyksen, Richard D Head, Wandy Beatty, Hamid M Said, James M Fleckenstein
2020-Current year OA Pubs
Enterotoxigenic E. coli (ETEC) produce heat-labile (LT) and/or heat-stable (ST) enterotoxins, and commonly cause diarrhea in resource-poor regions. ETEC have been linked repeatedly to sequelae in children including enteropathy, malnutrition, and growth impairment. Although cellular actions of ETEC enterotoxins leading to diarrhea are well-established, their contributions to sequelae remain unclear. LT increases cellular cAMP to activate protein kinase A (PKA) that phosphorylates ion channels driving intestinal export of salt and water resulting in diarrhea. As PKA also modulates transcription of many genes, we interrogated transcriptional profiles of LT-treated intestinal epithelia. Here we show that LT significantly alters intestinal epithelial gene …
Caspase-8 Inactivation Drives Autophagy-Dependent Inflammasome Activation In Myeloid Cells., Yung-Hsuan Wu, Shu-Ting Mo, I-Ting Chen, Fu-Yi Hsieh, Shie-Liang Hsieh, Jianke Zhang, Ming-Zong Lai
Caspase-8 Inactivation Drives Autophagy-Dependent Inflammasome Activation In Myeloid Cells., Yung-Hsuan Wu, Shu-Ting Mo, I-Ting Chen, Fu-Yi Hsieh, Shie-Liang Hsieh, Jianke Zhang, Ming-Zong Lai
Department of Microbiology and Immunology Faculty Papers
Caspase-8 activity controls the switch from cell death to pyroptosis when apoptosis and necroptosis are blocked, yet how caspase-8 inactivation induces inflammasome assembly remains unclear. We show that caspase-8 inhibition via IETD treatment in Toll-like receptor (TLR)-primed Fadd-/-Ripk3-/- myeloid cells promoted interleukin-1β (IL-1β) and IL-18 production through inflammasome activation. Caspase-8, caspase-1/11, and functional GSDMD, but not NLRP3 or RIPK1 activity, proved essential for IETD-triggered inflammasome activation. Autophagy became prominent in IETD-treated Fadd-/-Ripk3-/- macrophages, and inhibiting it attenuated IETD-induced cell death and IL-1β/IL-18 production. In contrast, inhibiting GSDMD or autophagy did not prevent IETD-induced septic …
Pancreatic Tumor Microenvironmental Acidosis And Hypoxia Transform Gold Nanorods Into Cell-Penetrant Particles For Potent Radiosensitization, Pradipta Ranjan Rauta, Yuri Mackeyev, Keith Sanders, Joseph B K Kim, Valeria V Gonzalez, Yasmin Zahra, Muhammad A Shohayeb, Belal Abousaida, Geraldine V Vijay, Okan Tezcan, Paul Derry, Anton V Liopo, Eugene R Zubarev, Rickey Carter, Pankaj Singh, Sunil Krishnan
Pancreatic Tumor Microenvironmental Acidosis And Hypoxia Transform Gold Nanorods Into Cell-Penetrant Particles For Potent Radiosensitization, Pradipta Ranjan Rauta, Yuri Mackeyev, Keith Sanders, Joseph B K Kim, Valeria V Gonzalez, Yasmin Zahra, Muhammad A Shohayeb, Belal Abousaida, Geraldine V Vijay, Okan Tezcan, Paul Derry, Anton V Liopo, Eugene R Zubarev, Rickey Carter, Pankaj Singh, Sunil Krishnan
Faculty, Staff and Student Publications
Coating nanoparticles with stealth epilayers increases circulation time by evading opsonization, macrophage phagocytosis, and reticuloendothelial sequestration. However, this also reduces internalization by cancer cells upon reaching the tumor. We designed gold nanorods (GNRs) with an epilayer that retains stealth properties in circulation but transforms spontaneously in the acidotic tumor microenvironment to a cell-penetrating particle. We used a customized stoichiometric ratio of l-glutamic acid and l-lysine within an amphiphilic polymer of poly(l-glutamic acid-co-l-lysine), or P(Glu-co-Lys), to effect this transformation in acidotic environments. P(Glu-co-Lys)-GNRs were internalized by cancer cells to facilitate potent in vitro radiosensitization. When administered intravenously in mice, they accumulate …
Pancreatic Tumor Microenvironmental Acidosis And Hypoxia Transform Gold Nanorods Into Cell-Penetrant Particles For Potent Radiosensitization, Pradipta Ranjan Rauta, Yuri Mackeyev, Keith Sanders, Joseph B K Kim, Valeria V Gonzalez, Yasmin Zahra, Muhammad A Shohayeb, Belal Abousaida, Geraldine V Vijay, Okan Tezcan, Paul Derry, Anton V Liopo, Eugene R Zubarev, Rickey Carter, Pankaj Singh, Sunil Krishnan
Pancreatic Tumor Microenvironmental Acidosis And Hypoxia Transform Gold Nanorods Into Cell-Penetrant Particles For Potent Radiosensitization, Pradipta Ranjan Rauta, Yuri Mackeyev, Keith Sanders, Joseph B K Kim, Valeria V Gonzalez, Yasmin Zahra, Muhammad A Shohayeb, Belal Abousaida, Geraldine V Vijay, Okan Tezcan, Paul Derry, Anton V Liopo, Eugene R Zubarev, Rickey Carter, Pankaj Singh, Sunil Krishnan
Faculty, Staff and Student Publications
Coating nanoparticles with stealth epilayers increases circulation time by evading opsonization, macrophage phagocytosis, and reticuloendothelial sequestration. However, this also reduces internalization by cancer cells upon reaching the tumor. We designed gold nanorods (GNRs) with an epilayer that retains stealth properties in circulation but transforms spontaneously in the acidotic tumor microenvironment to a cell-penetrating particle. We used a customized stoichiometric ratio of l-glutamic acid and l-lysine within an amphiphilic polymer of poly(l-glutamic acid-co-l-lysine), or P(Glu-co-Lys), to effect this transformation in acidotic environments. P(Glu-co-Lys)-GNRs were internalized by cancer cells to facilitate potent in vitro radiosensitization. When administered intravenously in mice, they accumulate …
Sex Differences In Brain Tumor Glutamine Metabolism Reveal Sex-Specific Vulnerabilities To Treatment, Jasmin Sponagel, Jill K Jones, Cheryl Frankfater, Shanshan Zhang, Olivia Tung, Kevin Cho, Kelsey L Tinkum, Hannah Gass, Elena Nunez, Gary J Patti, Jingqin Luo, Joshua B Rubin, Joseph E Ippolito, Et Al.
Sex Differences In Brain Tumor Glutamine Metabolism Reveal Sex-Specific Vulnerabilities To Treatment, Jasmin Sponagel, Jill K Jones, Cheryl Frankfater, Shanshan Zhang, Olivia Tung, Kevin Cho, Kelsey L Tinkum, Hannah Gass, Elena Nunez, Gary J Patti, Jingqin Luo, Joshua B Rubin, Joseph E Ippolito, Et Al.
2020-Current year OA Pubs
BACKGROUND: Brain cancer incidence and mortality rates are greater in males. Understanding the molecular mechanisms that underlie those sex differences could improve treatment strategies. Although sex differences in normal metabolism are well described, it is currently unknown whether they persist in cancerous tissue.
METHODS: Using positron emission tomography (PET) imaging and mass spectrometry, we assessed sex differences in glioma metabolism in samples from affected individuals. We assessed the role of glutamine metabolism in male and female murine transformed astrocytes using isotope labeling, metabolic rescue experiments, and pharmacological and genetic perturbations to modulate pathway activity.
FINDINGS: We found that male glioblastoma …
Omics Analyses Of A Somatic Trp53r245w/+ Breast Cancer Model Identify Cooperating Driver Events Activating Pi3k/Akt/Mtor Signaling, Xiaojie Yu, Yun Zhang, Shunbin Xiong, Joy M Mcdaniel, Chang Sun, Gilda P Chau, Jovanka Gencel-Augusto, Dhruv Chachad, Rhiannon L Morrissey, Xiayu Rao, Jing Wang, Guillermina Lozano
Omics Analyses Of A Somatic Trp53r245w/+ Breast Cancer Model Identify Cooperating Driver Events Activating Pi3k/Akt/Mtor Signaling, Xiaojie Yu, Yun Zhang, Shunbin Xiong, Joy M Mcdaniel, Chang Sun, Gilda P Chau, Jovanka Gencel-Augusto, Dhruv Chachad, Rhiannon L Morrissey, Xiayu Rao, Jing Wang, Guillermina Lozano
Faculty, Staff and Student Publications
Alterations of the tumor suppressor
Two Neuronal Peptides Encoded From A Single Transcript Regulate Mitochondrial Complex Iii In Drosophila, Justin A Bosch, Berrak Ugur, Israel Pichardo-Casas, Jordan Rabasco, Felipe Escobedo, Zhongyuan Zuo, Ben Brown, Susan Celniker, David A Sinclair, Hugo J Bellen, Norbert Perrimon
Two Neuronal Peptides Encoded From A Single Transcript Regulate Mitochondrial Complex Iii In Drosophila, Justin A Bosch, Berrak Ugur, Israel Pichardo-Casas, Jordan Rabasco, Felipe Escobedo, Zhongyuan Zuo, Ben Brown, Susan Celniker, David A Sinclair, Hugo J Bellen, Norbert Perrimon
Duncan NRI Faculty and Staff Publications
Naturally produced peptides (<100 amino acids) are important regulators of physiology, development, and metabolism. Recent studies have predicted that thousands of peptides may be translated from transcripts containing small open-reading frames (smORFs). Here, we describe two peptides in Drosophila encoded by conserved smORFs, Sloth1 and Sloth2. These peptides are translated from the same bicistronic transcript and share sequence similarities, suggesting that they encode paralogs. Yet, Sloth1 and Sloth2 are not functionally redundant, and loss of either peptide causes animal lethality, reduced neuronal function, impaired mitochondrial function, and neurodegeneration. We provide evidence that Sloth1/2 are highly expressed in neurons, imported to mitochondria, and regulate mitochondrial complex III assembly. These results suggest that phenotypic analysis of smORF genes in Drosophila can provide a wealth of information on the biological functions of this poorly characterized class of …100>
A Human Stat3 Gain-Of-Function Variant Confers T Cell Dysregulation Without Predominant Treg Dysfunction In Mice, Erica G Schmitt, Kelsey A Toth, Samuel I Risma, Ana Kolicheski, Nermina Saucier, Rafael J. Feliciano Berríos, Zev J. Greenberg, Jennifer W. Leiding, Jack J. Bleesing, Akaluck Thatayatikom, Laura G. Schuettpelz, John R. Edwards, Tiphanie P. Vogel, Megan A Cooper
A Human Stat3 Gain-Of-Function Variant Confers T Cell Dysregulation Without Predominant Treg Dysfunction In Mice, Erica G Schmitt, Kelsey A Toth, Samuel I Risma, Ana Kolicheski, Nermina Saucier, Rafael J. Feliciano Berríos, Zev J. Greenberg, Jennifer W. Leiding, Jack J. Bleesing, Akaluck Thatayatikom, Laura G. Schuettpelz, John R. Edwards, Tiphanie P. Vogel, Megan A Cooper
2020-Current year OA Pubs
Primary immune regulatory disorders (PIRD) represent a group of disorders characterized by immune dysregulation, presenting with a wide range of clinical disease, including autoimmunity, autoinflammation, or lymphoproliferation. Autosomal dominant germline gain-of-function (GOF) variants in STAT3 result in a PIRD with a broad clinical spectrum. Studies in patients have documented a decreased frequency of FOXP3+ Tregs and an increased frequency of Th17 cells in some patients with active disease. However, the mechanisms of disease pathogenesis in STAT3 GOF syndrome remain largely unknown, and treatment is challenging. We developed a knock-in mouse model harboring a de novo pathogenic human STAT3 variant (p.G421R) …
Tuft-Cell-Intrinsic And -Extrinsic Mediators Of Norovirus Tropism Regulate Viral Immunity, Madison S Strine, Mia Madel Alfajaro, Vincent R Graziano, Jaewon Song, Leon L Hsieh, Ryan Hill, Jun Guo, Kelli L Vandussen, Robert C Orchard, Megan T Baldridge, Sanghyun Lee, Craig B Wilen
Tuft-Cell-Intrinsic And -Extrinsic Mediators Of Norovirus Tropism Regulate Viral Immunity, Madison S Strine, Mia Madel Alfajaro, Vincent R Graziano, Jaewon Song, Leon L Hsieh, Ryan Hill, Jun Guo, Kelli L Vandussen, Robert C Orchard, Megan T Baldridge, Sanghyun Lee, Craig B Wilen
2020-Current year OA Pubs
Murine norovirus (MNoV) is a model for human norovirus and for interrogating mechanisms of viral tropism and persistence. We previously demonstrated that the persistent strain MNoV
Ornithine Decarboxylase Supports Ilc3 Responses In Infectious And Autoimmune Colitis Through Positive Regulation Of Il-22 Transcription, Vincent Peng, Siyan Cao, Tihana Trsan, Jennifer K Bando, Julian Avila-Pacheco, John L Cleveland, Clary Clish, Ramnik J Xavier, Marco Colonna
Ornithine Decarboxylase Supports Ilc3 Responses In Infectious And Autoimmune Colitis Through Positive Regulation Of Il-22 Transcription, Vincent Peng, Siyan Cao, Tihana Trsan, Jennifer K Bando, Julian Avila-Pacheco, John L Cleveland, Clary Clish, Ramnik J Xavier, Marco Colonna
2020-Current year OA Pubs
Group 3 innate lymphoid cells (ILC3s) are RORγT
The Nogo Receptor Ngr2, A Novel Αvβ3 Integrin Effector, Induces Neuroendocrine Differentiation In Prostate Cancer, Fabio Quaglia, Shiv Ram Krishn, Khalid Sossey-Alaoui, Priyanka Shailendra Rana, Elzbieta Pluskota, Pyung Hun Park, Christopher D. Shields, Stephen Lin, Peter Mccue, Andrew V. Kossenkov, Yanqing Wang, David W. Goodrich, Sheng-Yu Ku, Himisha Beltran, William K. Kelly, Eva Corey, Maja Klose, Christine Bandtlow, Qin Liu, Dario C. Altieri, Edward F. Plow, Lucia R. Languino
The Nogo Receptor Ngr2, A Novel Αvβ3 Integrin Effector, Induces Neuroendocrine Differentiation In Prostate Cancer, Fabio Quaglia, Shiv Ram Krishn, Khalid Sossey-Alaoui, Priyanka Shailendra Rana, Elzbieta Pluskota, Pyung Hun Park, Christopher D. Shields, Stephen Lin, Peter Mccue, Andrew V. Kossenkov, Yanqing Wang, David W. Goodrich, Sheng-Yu Ku, Himisha Beltran, William K. Kelly, Eva Corey, Maja Klose, Christine Bandtlow, Qin Liu, Dario C. Altieri, Edward F. Plow, Lucia R. Languino
Department of Cancer Biology Faculty Papers
Androgen deprivation therapies aimed to target prostate cancer (PrCa) are only partially successful given the occurrence of neuroendocrine PrCa (NEPrCa), a highly aggressive and highly metastatic form of PrCa, for which there is no effective therapeutic approach. Our group has demonstrated that while absent in prostate adenocarcinoma, the αVβ3 integrin expression is increased during PrCa progression toward NEPrCa. Here, we show a novel pathway activated by αVβ3 that promotes NE differentiation (NED). This novel pathway requires the expression of a GPI-linked surface molecule, NgR2, also known as Nogo-66 receptor homolog 1. We show here that NgR2 is upregulated by αVβ3, …
High-Contrast Detection Of Somatostatin Receptor Subtype-2 For Fluorescence-Guided Surgery, Servando Hernandez Vargas, Solmaz Aghaamiri, Sukhen C Ghosh, Michael P Luciano, Luis C Borbon, Po Hien Ear, James R Howe, Jennifer M Bailey-Lundberg, Gregory D Simonek, Daniel M Halperin, Hop S Tran Cao, Naruhiko Ikoma, Martin J Schnermann, Ali Azhdarinia
High-Contrast Detection Of Somatostatin Receptor Subtype-2 For Fluorescence-Guided Surgery, Servando Hernandez Vargas, Solmaz Aghaamiri, Sukhen C Ghosh, Michael P Luciano, Luis C Borbon, Po Hien Ear, James R Howe, Jennifer M Bailey-Lundberg, Gregory D Simonek, Daniel M Halperin, Hop S Tran Cao, Naruhiko Ikoma, Martin J Schnermann, Ali Azhdarinia
Faculty, Staff and Student Publications
Dye design can influence the ability of fluorescently labeled imaging agents to generate tumor contrast and has become an area of significant interest in the field of fluorescence-guided surgery (FGS). Here, we show that the charge-balanced near-infrared fluorescent (NIRF) dye FNIR-Tag enhances the imaging properties of a fluorescently labeled somatostatin analogue.
Bifidobacterial Carbohydrate/Nucleoside Metabolism Enhances Oxidative Phosphorylation In White Adipose Tissue To Protect Against Diet-Induced Obesity., Gihyeon Kim, Youngmin Yoon, Jin Ho Park, Jae Won Park, Myung-Guin Noh, Hyun Kim, Changho Park, Hyuktae Kwon, Jeong-Hyeon Park, Yena Kim, Jinyoung Sohn, Shinyoung Park, Hyeonhui Kim, Sun-Kyoung Im, Yeongmin Kim, Ha Yung Chung, Myung Hee Nam, Jee Young Kwon, Il Yong Kim, Yong Jae Kim, Ji Hyeon Baek, Hak Su Kim, George M Weinstock, Belong Cho, Charles Lee, Sungsoon Fang, Hansoo Park, Je Kyung Seong
Bifidobacterial Carbohydrate/Nucleoside Metabolism Enhances Oxidative Phosphorylation In White Adipose Tissue To Protect Against Diet-Induced Obesity., Gihyeon Kim, Youngmin Yoon, Jin Ho Park, Jae Won Park, Myung-Guin Noh, Hyun Kim, Changho Park, Hyuktae Kwon, Jeong-Hyeon Park, Yena Kim, Jinyoung Sohn, Shinyoung Park, Hyeonhui Kim, Sun-Kyoung Im, Yeongmin Kim, Ha Yung Chung, Myung Hee Nam, Jee Young Kwon, Il Yong Kim, Yong Jae Kim, Ji Hyeon Baek, Hak Su Kim, George M Weinstock, Belong Cho, Charles Lee, Sungsoon Fang, Hansoo Park, Je Kyung Seong
Faculty Research 2022
BACKGROUND: Comparisons of the gut microbiome of lean and obese humans have revealed that obesity is associated with the gut microbiome plus changes in numerous environmental factors, including high-fat diet (HFD). Here, we report that two species of Bifidobacterium are crucial to controlling metabolic parameters in the Korean population.
RESULTS: Based on gut microbial analysis from 99 Korean individuals, we observed the abundance of Bifidobacterium longum and Bifidobacterium bifidum was markedly reduced in individuals with increased visceral adipose tissue (VAT), body mass index (BMI), blood triglyceride (TG), and fatty liver. Bacterial transcriptomic analysis revealed that carbohydrate/nucleoside metabolic processes of Bifidobacterium …
Adding Gene Transcripts Into Genomic Prediction Improves Accuracy And Reveals Sampling Time Dependence., Bruno C Perez, Marco C A M Bink, Karen L. Svenson, Gary Churchill, Mario P L Calus
Adding Gene Transcripts Into Genomic Prediction Improves Accuracy And Reveals Sampling Time Dependence., Bruno C Perez, Marco C A M Bink, Karen L. Svenson, Gary Churchill, Mario P L Calus
Faculty Research 2022
Recent developments allowed generating multiple high-quality 'omics' data that could increase the predictive performance of genomic prediction for phenotypes and genetic merit in animals and plants. Here, we have assessed the performance of parametric and nonparametric models that leverage transcriptomics in genomic prediction for 13 complex traits recorded in 478 animals from an outbred mouse population. Parametric models were implemented using the best linear unbiased prediction, while nonparametric models were implemented using the gradient boosting machine algorithm. We also propose a new model named GTCBLUP that aims to remove between-omics-layer covariance from predictors, whereas its counterpart GTBLUP does not do …
Uremic Myopathy And Mitochondrial Dysfunction In Kidney Disease, Eurico Serrano, Diana Whitaker-Menezes, Zhao Lin, Megan Roche, Maria Paula Martinez Cantarin
Uremic Myopathy And Mitochondrial Dysfunction In Kidney Disease, Eurico Serrano, Diana Whitaker-Menezes, Zhao Lin, Megan Roche, Maria Paula Martinez Cantarin
Kimmel Cancer Center Faculty Papers
Alterations in muscle structure and function in chronic kidney disease (CKD) patients are associated with poor outcomes. As key organelles in muscle cell homeostasis, mitochondrial metabolism has been studied in the context of muscle dysfunction in CKD. We conducted a study to determine the contribution of oxidative metabolism, glycolysis and fatty acid oxidation to the muscle metabolism in CKD. Mice developed CKD by exposure to adenine in the diet. Muscle of CKD mice showed significant weight loss compared to non-CKD mice, but only extensor digitorum longus (EDL) muscle showed a decreased number of fibers. There was no difference in the …
Blockade Of Fgf2/Fgfr2 Partially Overcomes Bone Marrow Mesenchymal Stromal Cells Mediated Progression Of T-Cell Acute Lymphoblastic Leukaemia, Chen Tian, Yueyang Li, Lina Wang, Junqi Si, Yaxin Zheng, Junnan Kang, Yafei Wang, M James You, Guoguang Zheng
Blockade Of Fgf2/Fgfr2 Partially Overcomes Bone Marrow Mesenchymal Stromal Cells Mediated Progression Of T-Cell Acute Lymphoblastic Leukaemia, Chen Tian, Yueyang Li, Lina Wang, Junqi Si, Yaxin Zheng, Junnan Kang, Yafei Wang, M James You, Guoguang Zheng
Faculty, Staff and Student Publications
The development of acute lymphoblastic leuakemia (ALL) is partly attributed to the effects of bone marrow (BM) microenvironment, especially mesenchymal stromal cells (MSCs), which interact bilaterally with leukaemia cells, leading to ALL progression. In order to find MSCs-based microenvironment targeted therapeutic strategies, Notch1-induced T-cell ALL (T-ALL) mice models were used and dynamic alterations of BM-MSCs with increased cell viability during T-ALL development was observed. In T-ALL mice derived stroma-based condition, leukaemia cells showed significantly elevated growth capacity indicating that MSCs participated in leukaemic niche formation. RNA sequence results revealed that T-ALL derived MSCs secreted fibroblast growth factor 2 (FGF2), which …
Mitochondrial Protective Effects Caused By The Administration Of Mefenamic Acid In Sepsis, Diogo Dominguini, Monique Michels, Leticia B Wessler, Emilio L Streck, Tatiana Barichello, Felipe Dal-Pizzol
Mitochondrial Protective Effects Caused By The Administration Of Mefenamic Acid In Sepsis, Diogo Dominguini, Monique Michels, Leticia B Wessler, Emilio L Streck, Tatiana Barichello, Felipe Dal-Pizzol
Faculty, Staff and Student Publications
The pathophysiology of sepsis may involve the activation of the NOD-type receptor containing the pyrin-3 domain (NLPR-3), mitochondrial and oxidative damages. One of the primary essential oxidation products is 8-oxoguanine (8-oxoG), and its accumulation in mitochondrial DNA (mtDNA) induces cell dysfunction and death, leading to the hypothesis that mtDNA integrity is crucial for maintaining neuronal function during sepsis. In sepsis, the modulation of NLRP-3 activation is critical, and mefenamic acid (MFA) is a potent drug that can reduce inflammasome activity, attenuating the acute cerebral inflammatory process. Thus, this study aimed to evaluate the administration of MFA and its implications for …
Single-Cell Multiomics Identifies Clinically Relevant Mesenchymal Stem-Like Cells And Key Regulators For Mpnst Malignancy, Lai Man Natalie Wu, Joshua Rubin, Et Al.
Single-Cell Multiomics Identifies Clinically Relevant Mesenchymal Stem-Like Cells And Key Regulators For Mpnst Malignancy, Lai Man Natalie Wu, Joshua Rubin, Et Al.
2020-Current year OA Pubs
Malignant peripheral nerve sheath tumor (MPNST), a highly aggressive Schwann cell (SC)-derived soft tissue sarcoma, arises from benign neurofibroma (NF); however, the identity, heterogeneity and origins of tumor populations remain elusive. Nestin
Bi-Allelic Camsap1 Variants Cause A Clinically Recognizable Neuronal Migration Disorder, Reham Khalaf-Nazzal, Jennifer L Griffith, Joseph R Walsh, Amber Neilson, Evguenia Kouranova, Xiaoxia Cui, David T Curiel, Et Al.
Bi-Allelic Camsap1 Variants Cause A Clinically Recognizable Neuronal Migration Disorder, Reham Khalaf-Nazzal, Jennifer L Griffith, Joseph R Walsh, Amber Neilson, Evguenia Kouranova, Xiaoxia Cui, David T Curiel, Et Al.
2020-Current year OA Pubs
Non-centrosomal microtubules are essential cytoskeletal filaments that are important for neurite formation, axonal transport, and neuronal migration. They require stabilization by microtubule minus-end-targeting proteins including the CAMSAP family of molecules. Using exome sequencing on samples from five unrelated families, we show that bi-allelic CAMSAP1 loss-of-function variants cause a clinically recognizable, syndromic neuronal migration disorder. The cardinal clinical features of the syndrome include a characteristic craniofacial appearance, primary microcephaly, severe neurodevelopmental delay, cortical visual impairment, and seizures. The neuroradiological phenotype comprises a highly recognizable combination of classic lissencephaly with a posterior more severe than anterior gradient similar to PAFAH1B1(LIS1)-related lissencephaly and …
Hormonal Therapies Up-Regulate Manf And Overcome Female Susceptibility To Immune Checkpoint Inhibitor Myocarditis, Yaohua Zhang, Chengcao Sun, Yajuan Li, Juan Qin, Kaushik Amancherla, Ying Jing, Qingsong Hu, Ke Liang, Zhao Zhang, Youqiong Ye, Lisa A Huang, Tina K Nguyen, Sergey D Egranov, Zilong Zhao, Andrew Wu, Yutao Xi, Jun Yao, Mien-Chie Hung, George A Calin, Jie Cheng, Bora Lim, Lorenz H Lehmann, Joe-Elie Salem, Douglas B Johnson, Michael A Curran, Dihua Yu, Leng Han, Radbod Darabi, Liuqing Yang, Javid J Moslehi, Chunru Lin
Hormonal Therapies Up-Regulate Manf And Overcome Female Susceptibility To Immune Checkpoint Inhibitor Myocarditis, Yaohua Zhang, Chengcao Sun, Yajuan Li, Juan Qin, Kaushik Amancherla, Ying Jing, Qingsong Hu, Ke Liang, Zhao Zhang, Youqiong Ye, Lisa A Huang, Tina K Nguyen, Sergey D Egranov, Zilong Zhao, Andrew Wu, Yutao Xi, Jun Yao, Mien-Chie Hung, George A Calin, Jie Cheng, Bora Lim, Lorenz H Lehmann, Joe-Elie Salem, Douglas B Johnson, Michael A Curran, Dihua Yu, Leng Han, Radbod Darabi, Liuqing Yang, Javid J Moslehi, Chunru Lin
Faculty, Staff and Student Publications
Immune checkpoint inhibitors (ICIs) have been increasingly used in combination for cancer treatment but are associated with myocarditis. Here, we report that tumor-bearing mice exhibited response to treatment with combinatorial anti-programmed cell death 1 and anti-cytotoxic T lymphocyte antigen-4 antibodies but also presented with cardiovascular toxicities observed clinically with ICI therapy, including myocarditis and arrhythmia. Female mice were preferentially affected with myocarditis compared to male mice, consistent with a previously described genetic model of ICI myocarditis and emerging clinical data. Mechanistically, myocardial tissue from ICI-treated mice, the genetic mouse model, and human heart tissue from affected patients with ICI myocarditis …
Broad-Acting Therapeutic Effects Of Mir-29b-Chitosan On Hypertension And Diabetic Complications, David M Jensen, Peng Han, Lingegowda S Mangala, Gabriel Lopez-Berestein, Anil K Sood, Jing Liu, Alison J Kriegel, Kristie Usa, Michael E Widlansky, Mingyu Liang
Broad-Acting Therapeutic Effects Of Mir-29b-Chitosan On Hypertension And Diabetic Complications, David M Jensen, Peng Han, Lingegowda S Mangala, Gabriel Lopez-Berestein, Anil K Sood, Jing Liu, Alison J Kriegel, Kristie Usa, Michael E Widlansky, Mingyu Liang
Faculty, Staff and Student Publications
MicroRNA miR-29 promotes endothelial function in human arterioles in part by targeting LYPLA1 and increasing nitric oxide production. In addition, miR-29 is a master inhibitor of extracellular matrix gene expression, which may attenuate fibrosis but could also weaken tissue structure. The goal of this study was to test whether miR-29 could be developed as an effective, broad-acting, and safe therapeutic. Substantial accumulation of miR-29b and effective knockdown of Lypla1 in several mouse tissues were achieved using a chitosan-packaged, chemically modified miR-29b mimic (miR-29b-CH-NP) injected systemically at 200 μg/kg body weight. miR-29b-CH-NP, injected once every 3 days, significantly attenuated angiotensin II-induced …
Modified Messengers: Flatworm Stem Cells And Regeneration Are Guarded By Rna Methylation, Blair W Benham-Pyle
Modified Messengers: Flatworm Stem Cells And Regeneration Are Guarded By Rna Methylation, Blair W Benham-Pyle
Faculty, Staff and Students Publications
The contribution of RNA modifications to whole-body regeneration remains unclear. In this issue, Dagan et al (2022) show that m6a mRNA pathway components are critically required for stem cell differentiation, survival, and tissue renewal in the planarian Schmidtea mediterranea.
Differential Regulation Of Gene Expression Pathways With Dexamethasone And Acth After Early Life Seizures., Jeffrey L Brabec, Mohamed Ouardouz, J Matthew Mahoney, Rod C Scott, Amanda E Hernan
Differential Regulation Of Gene Expression Pathways With Dexamethasone And Acth After Early Life Seizures., Jeffrey L Brabec, Mohamed Ouardouz, J Matthew Mahoney, Rod C Scott, Amanda E Hernan
Faculty Research 2022
Early-life seizures (ELS) are associated with persistent cognitive deficits such as ADHD and memory impairment. These co-morbidities have a dramatic negative impact on the quality of life of patients. Therapies that improve cognitive outcomes have enormous potential to improve patients' quality of life. Our previous work in a rat flurothyl-induction model showed that administration of adrenocorticotropic hormone (ACTH) at time of seizure induction led to improved learning and memory in the animals despite no effect on seizure latency or duration. Administration of dexamethasone (Dex), a corticosteroid, did not have the same positive effect on learning and memory and has even …
Cholinergic Receptor-Wnt Pathway Controls Immune Activation By Sensing Intestinal Dysfunction, Jie Ren, Yu Sang, Alejandro Aballay
Cholinergic Receptor-Wnt Pathway Controls Immune Activation By Sensing Intestinal Dysfunction, Jie Ren, Yu Sang, Alejandro Aballay
Faculty, Staff and Student Publications
Alterations in the intestinal physiology caused by pathogen colonization result in immune activation. To provide insights into the mechanisms underlying the control of immune activation by changes in intestinal homeostasis, we conducted a forward genetic screen for suppressors of immune activation by intestinal distension in Caenorhabditis elegans. Our results indicate that C. elegans ACC-4, a member of a family of acetylcholine receptors, is required in immune activation by defects in the defecation motor program or by pathogen infection. ACC-4 acts postsynaptically in non-cholinergic RIM neurons to regulate several immune genes and a Wnt-mediated host immune response. These findings uncover a …
Bile Acids Regulate The Epithelial Na+ Channel In Native Tissues Through Direct Binding At Multiple Sites, Xue-Ping Wang, Viktor Tomilin, Andrew J Nickerson, Runze Tian, Merve Ertem, Abagail Mckernan, Xiaoguang Lei, Oleh Pochynyuk, Ossama B Kashlan
Bile Acids Regulate The Epithelial Na+ Channel In Native Tissues Through Direct Binding At Multiple Sites, Xue-Ping Wang, Viktor Tomilin, Andrew J Nickerson, Runze Tian, Merve Ertem, Abagail Mckernan, Xiaoguang Lei, Oleh Pochynyuk, Ossama B Kashlan
Faculty, Staff and Student Publications
Bile acids, originally known to emulsify dietary lipids, are now established signalling molecules that regulate physiological processes. Signalling targets several proteins that include the ion channels involved in regulating intestinal motility and bile viscosity. Studies show that bile acids regulate the epithelial sodium channel (ENaC) in cultured cell models and heterologous expression systems. ENaC plays both local and systemic roles in regulating extracellular fluids. Here we investigated whether bile acids regulate ENaC expressed in native tissues. We found that taurocholic acid and taurohyodeoxycholic acid regulated ENaC in both the distal nephron and distal colon. We also tested the hypothesis that …
Development Of A Novel Mouse Model Of Menopause-Associated Asthma, William P Pederson, Laurie M Ellerman, Estevan C Sandoval, Scott Boitano, Jennifer B Frye, Kristian P Doyle, Heddwen L Brooks, Francesca Polverino, Julie G Ledford
Development Of A Novel Mouse Model Of Menopause-Associated Asthma, William P Pederson, Laurie M Ellerman, Estevan C Sandoval, Scott Boitano, Jennifer B Frye, Kristian P Doyle, Heddwen L Brooks, Francesca Polverino, Julie G Ledford
Faculty, Staff and Students Publications
No abstract provided.
Stat6 Blockade Abrogates Aspergillus-Induced Eosinophilic Chronic Rhinosinusitis And Asthma, A Model Of Unified Airway Disease, Meng Lin, Amy T Ku, Jie Dong, Fei Yue, Weiyu Jiang, Ahmed Atef Ibrahim, Fanglue Peng, Chad J Creighton, Chandandeep Nagi, Carolina Gutierrez, Jeffrey M Rosen, Xiang H-F Zhang, Susan G Hilsenbeck, Xi Chen, Yi-Chieh Nancy Du, Shixia Huang, Aiping Shi, Zhimin Fan, Yi Li
Stat6 Blockade Abrogates Aspergillus-Induced Eosinophilic Chronic Rhinosinusitis And Asthma, A Model Of Unified Airway Disease, Meng Lin, Amy T Ku, Jie Dong, Fei Yue, Weiyu Jiang, Ahmed Atef Ibrahim, Fanglue Peng, Chad J Creighton, Chandandeep Nagi, Carolina Gutierrez, Jeffrey M Rosen, Xiang H-F Zhang, Susan G Hilsenbeck, Xi Chen, Yi-Chieh Nancy Du, Shixia Huang, Aiping Shi, Zhimin Fan, Yi Li
Faculty, Staff and Student Publications
Signal transducer and activator of transcription 5 (STAT5) promotes cell survival and instigates breast tumor formation, and in the normal breast it also drives alveolar differentiation and lactogenesis. However, whether STAT5 drives a differentiated phenotype in breast tumorigenesis and therefore impacts cancer spread and metastasis is unclear. We found in two genetically engineered mouse models of breast cancer that constitutively activated Stat5a (Stat5aca) caused precancerous mammary epithelial cells to become lactogenic and evolve into tumors with diminished potential to metastasize. We also showed that STAT5aca reduced the migratory and invasive ability of human breast cancer cell lines in …