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Articles 2551 - 2580 of 8065
Full-Text Articles in Entire DC Network
The Role Of The Circadian Clock In The Paraventricular Nucleus Of The Hypothalamus In Diurnal Energy Balance, Rachel Van Drunen
The Role Of The Circadian Clock In The Paraventricular Nucleus Of The Hypothalamus In Diurnal Energy Balance, Rachel Van Drunen
Dissertations and Theses (Open Access)
Circadian rhythms are internal biological rhythms that drive oscillations in physiology and metabolism. Maintained at the level of individual cells throughout the body, the circadian clock is necessary for driving tissue-specific temporal programs of energy balance. Though loss of the circadian transcription factor, BMAL1, in the paraventricular nucleus (PVN) of the hypothalamus has revealed its importance in driving rhythms in energy intake and metabolism, its transcriptional functions across time and in individual cell types in the PVN are not well understood. In this study, we show that loss of BMAL1 in the PVN not only results in arrhythmicity in processes …
Neoantigen-Specific Cytotoxic Tr1 Cd4 T Cells Suppress Cancer Immunotherapy, Hussein Sultan, Yoshiko Takeuchi, Jeffrey P Ward, Naveen Sharma, Tian-Tian Liu, Vladimir Sukhov, Maria Firulyova, Yuang Song, Samuel Ameh, Simone Brioschi, Darya Khantakova, Cora D Arthur, J Michael White, Heather Kohlmiller, Andres M Salazar, Robert Burns, Helio A Costa, Kelly D Moynihan, Yik Andy Yeung, Ivana Djuretic, Ton N Schumacher, Kathleen C F Sheehan, Marco Colonna, James P Allison, Kenneth M Murphy, Maxim N Artyomov, Robert D Schreiber
Neoantigen-Specific Cytotoxic Tr1 Cd4 T Cells Suppress Cancer Immunotherapy, Hussein Sultan, Yoshiko Takeuchi, Jeffrey P Ward, Naveen Sharma, Tian-Tian Liu, Vladimir Sukhov, Maria Firulyova, Yuang Song, Samuel Ameh, Simone Brioschi, Darya Khantakova, Cora D Arthur, J Michael White, Heather Kohlmiller, Andres M Salazar, Robert Burns, Helio A Costa, Kelly D Moynihan, Yik Andy Yeung, Ivana Djuretic, Ton N Schumacher, Kathleen C F Sheehan, Marco Colonna, James P Allison, Kenneth M Murphy, Maxim N Artyomov, Robert D Schreiber
Faculty, Staff and Student Publications
CD4+ T cells can either enhance or inhibit tumour immunity. Although regulatory T cells have long been known to impede antitumour responses1-5, other CD4+ T cells have recently been implicated in inhibiting this response6,7. Yet, the nature and function of the latter remain unclear. Here, using vaccines containing MHC class I (MHC-I) neoantigens (neoAgs) and different doses of tumour-derived MHC-II neoAgs, we discovered that whereas the inclusion of vaccines with low doses of MHC-II-restricted peptides (LDVax) promoted tumour rejection, vaccines containing high doses of the same MHC-II neoAgs (HDVax) inhibited rejection. Characterization of the inhibitory cells induced by HDVax identified …
Poly(Adp-Ribose) Polymerase-1 Regulates Pyroptosis Independent Function Of Nlrp3 Inflammasome In Neutrophil Extracellular Trap Formation, Louis J Delinois, Atul Sharma, Ashwin K Ramesh, Laurel D Boatright, Qun Li, Rong Xu, Hongbo R Luo, Bibhuti B Mishra, Jyotika Sharma
Poly(Adp-Ribose) Polymerase-1 Regulates Pyroptosis Independent Function Of Nlrp3 Inflammasome In Neutrophil Extracellular Trap Formation, Louis J Delinois, Atul Sharma, Ashwin K Ramesh, Laurel D Boatright, Qun Li, Rong Xu, Hongbo R Luo, Bibhuti B Mishra, Jyotika Sharma
Faculty, Staff and Student Publications
Neutrophil extracellular traps (NETs) function to control infectious agents as well as to propagate inflammatory response in a variety of disease conditions. DNA damage associated with chromatin decondensation and NACHT domain-leucine-rich repeat-and pyrin domain-containing protein 3 (NLRP3) inflammasome activation have emerged as crucial events in NET formation, but the link between the two processes is unknown. In this study, we demonstrate that poly(ADP-ribose) polymerase-1 (PARP-1), a key DNA repair enzyme, regulates NET formation triggered by NLRP3 inflammasome activation in neutrophils. Activation of mouse neutrophils with canonical NLRP3 stimulants LPS and nigericin induced NET formation, which was significantly abrogated by pharmacological …
Mechanism And Rational Combinations With Gp-2250, A Novel Oxathiazine Derivative, In Ovarian Cancer, Mark S Kim, Deanna Glassman, Katelyn F Handley, Adrian Lankenau Ahumada, Nicholas B Jennings, Emine Bayraktar, Katherine Foster, Robiya Joseph, Sanghoon Lee, Robert L Coleman, Anil K Sood
Mechanism And Rational Combinations With Gp-2250, A Novel Oxathiazine Derivative, In Ovarian Cancer, Mark S Kim, Deanna Glassman, Katelyn F Handley, Adrian Lankenau Ahumada, Nicholas B Jennings, Emine Bayraktar, Katherine Foster, Robiya Joseph, Sanghoon Lee, Robert L Coleman, Anil K Sood
Faculty, Staff and Student Publications
BACKGROUND: GP-2250, a novel analog of taurultam (TRLT), has emerged as a potent anti-neoplastic drug; however, the mechanisms underlying its effects are not well understood. Here, we investigated the mechanism of action and the biological effects of GP-2250 using in vitro and in vivo models.
METHODS: We carried out a series of in vitro (MTT assay, Annexin V/PI assay, colony formation assay, reverse-phase protein array [RPPA], and HRLC/IC analysis) to determine the biological activity of GP-2250 and investigate the mechanism of action. In vivo experiments were carried out to determine the therapeutic efficacy of GP-2250 alone and in combination with …
Autophagic Signaling Promotes Systems-Wide Remodeling In Skeletal Muscle Upon Oncometabolic Stress By D2-Hg, Yaqi Gao, Kyoungmin Kim, Heidi Vitrac, Rebecca L Salazar, Benjamin D Gould, Daniel Soedkamp, Weston Spivia, Koen Raedschelders, An Q Dinh, Anna G Guzman, Lin Tan, Stavros Azinas, David J R Taylor, Walter Schiffer, Daniel Mcnavish, Helen B Burks, Roberta A Gottlieb, Philip L Lorenzi, Blake M Hanson, Jennifer E Van Eyk, Heinrich Taegtmeyer, Anja Karlstaedt
Autophagic Signaling Promotes Systems-Wide Remodeling In Skeletal Muscle Upon Oncometabolic Stress By D2-Hg, Yaqi Gao, Kyoungmin Kim, Heidi Vitrac, Rebecca L Salazar, Benjamin D Gould, Daniel Soedkamp, Weston Spivia, Koen Raedschelders, An Q Dinh, Anna G Guzman, Lin Tan, Stavros Azinas, David J R Taylor, Walter Schiffer, Daniel Mcnavish, Helen B Burks, Roberta A Gottlieb, Philip L Lorenzi, Blake M Hanson, Jennifer E Van Eyk, Heinrich Taegtmeyer, Anja Karlstaedt
Faculty, Staff and Student Publications
OBJECTIVES: Cachexia is a metabolic disorder and comorbidity with cancer and heart failure. The syndrome impacts more than thirty million people worldwide, accounting for 20% of all cancer deaths. In acute myeloid leukemia, somatic mutations of the metabolic enzyme isocitrate dehydrogenase 1 and 2 cause the production of the oncometabolite D2-hydroxyglutarate (D2-HG). Increased production of D2-HG is associated with heart and skeletal muscle atrophy, but the mechanistic links between metabolic and proteomic remodeling remain poorly understood. Therefore, we assessed how oncometabolic stress by D2-HG activates autophagy and drives skeletal muscle loss.
METHODS: We quantified genomic, metabolomic, and proteomic changes in …
Nf1 Mutation Disrupts Activity-Dependent Oligodendroglial Plasticity And Motor Learning In Mice, Yuan Pan, Jared D Hysinger, Belgin Yalçın, James J Lennon, Youkyeong Gloria Byun, Preethi Raghavan, Nicole F Schindler, Corina Anastasaki, Jit Chatterjee, Lijun Ni, Haojun Xu, Karen Malacon, Samin M Jahan, Alexis E Ivec, Benjamin E Aghoghovwia, Christopher W Mount, Surya Nagaraja, Suzanne Scheaffer, Laura D Attardi, David H Gutmann, Michelle Monje
Nf1 Mutation Disrupts Activity-Dependent Oligodendroglial Plasticity And Motor Learning In Mice, Yuan Pan, Jared D Hysinger, Belgin Yalçın, James J Lennon, Youkyeong Gloria Byun, Preethi Raghavan, Nicole F Schindler, Corina Anastasaki, Jit Chatterjee, Lijun Ni, Haojun Xu, Karen Malacon, Samin M Jahan, Alexis E Ivec, Benjamin E Aghoghovwia, Christopher W Mount, Surya Nagaraja, Suzanne Scheaffer, Laura D Attardi, David H Gutmann, Michelle Monje
Faculty, Staff and Student Publications
Neurogenetic disorders, such as neurofibromatosis type 1 (NF1), can cause cognitive and motor impairments, traditionally attributed to intrinsic neuronal defects such as disruption of synaptic function. Activity-regulated oligodendroglial plasticity also contributes to cognitive and motor functions by tuning neural circuit dynamics. However, the relevance of oligodendroglial plasticity to neurological dysfunction in NF1 is unclear. Here we explore the contribution of oligodendrocyte progenitor cells (OPCs) to pathological features of the NF1 syndrome in mice. Both male and female littermates (4-24 weeks of age) were used equally in this study. We demonstrate that mice with global or OPC-specific Nf1 heterozygosity exhibit defects …
Comprehensive Investigation Into The Molecular Mechanisms Driving The Emergence Of Emm4 Group A Streptococcus, Chioma Odo, Samuel A Shelburne, Anthony R. Flores, Steven J Norris, Anna Konovalova, Blake Hanson
Comprehensive Investigation Into The Molecular Mechanisms Driving The Emergence Of Emm4 Group A Streptococcus, Chioma Odo, Samuel A Shelburne, Anthony R. Flores, Steven J Norris, Anna Konovalova, Blake Hanson
Dissertations and Theses (Open Access)
Abstract
Comprehensive Investigation into the Molecular Mechanisms Driving the Emergence of emm4 Group A Streptococcus
Chioma Modeline Odo, M.S.
Advisory Professor: Samuel A. Shelburne, MD, Ph.D.
The major gram-positive bacterium group A Streptococcus (GAS) is a model organism for studying microbial epidemics as it is well known to cause infections that occur in waves. GAS strains are grouped based on the composition of the N-terminal sequence of the M protein which is encoded by the emm gene. With the advent of large-scale whole genome sequencing, GAS clonal emergence events in emm1, emm3, and emm89 types have been identified …
Early Onset Alzheimer’S Disease Markers In Mouse Hippocampus Unveiled By Single-Cell Transcriptomic Analysis Following Cranial Radiotherapy, Tuba Aksoy
Dissertations and Theses (Open Access)
Cranial radiation therapy plays an integral role in the treatment of brain tumors but can lead to progressive cognitive deficits in survivors by mechanisms that are poorly understood. To develop preventive or mitigative strategies, it is crucial to better understand the underlying pathogenesis of radiation-induced cognitive impairments. The study investigated single-cell transcriptomics and DNA methylation changes as potential drivers of persistent cellular dysfunction after radiation exposure, specifically concentrating on the CA1-3 regions of the hippocampus and the prefrontal cortex due to their role in cognitive functions. Thirteen-week-old mice underwent whole-brain radiation at clinically relevant doses. Following whole-brain radiation, an assessment …
Placental Co-Transcriptional Activator Vestigial-Like 1 (Vgll1) Drives Tumorigenesis Via Increasing Transcription Of Proliferation And Invasion Genes, Heather Sonnemann
Placental Co-Transcriptional Activator Vestigial-Like 1 (Vgll1) Drives Tumorigenesis Via Increasing Transcription Of Proliferation And Invasion Genes, Heather Sonnemann
Dissertations and Theses (Open Access)
Vestigial-like 1 (VGLL1) is a co-transcriptional activator that binds to TEA domain containing transcription factors (TEADs). Its expression is upregulated in a variety of aggressive cancer types, including pancreatic and basal-like breast cancer, and increased transcription of VGLL1 is strongly correlated with poor prognosis and decreased overall patient survival. In normal tissues, VGLL1 is most highly expressed within placental trophoblast cells, which share the common attributes of rapid cellular proliferation and invasion with tumor cells. The impact of VGLL1 in cancer has not been fully elucidated and no VGLL1-targeted therapy currently exists. The aim of this study was to evaluate …
Exploring The Role Of The Arginine-Methylation Writer-Reader Pair Prmt5/Snd1 In Jak2-Mutant Myeloproliferative Neoplasms, Rocio Rubiano
Exploring The Role Of The Arginine-Methylation Writer-Reader Pair Prmt5/Snd1 In Jak2-Mutant Myeloproliferative Neoplasms, Rocio Rubiano
Dissertations and Theses (Open Access)
Myeloproliferative neoplasms (MPNs) are a hematopoietic disease characterized by hyperproliferation of cells of the myeloid lineage for which current therapeutic options are limited. Discovered in 2005, the JAK2V617F mutation is the most common driver mutation in BCR-ABL negative MPNs, resulting in constitutive activation of the JAK2 protein and the JAK-STAT signaling pathway. A role for the methyltransferase activity of Protein Arginine Methyltransferase 5 (PRMT5) has been proposed in JAK2-mutant MPN, highlighting both a mechanism through which this mutation can drive disease progression and a potential mode of therapeutic intervention. Staphylococcal Nuclease Domain-Containing Protein 1 (SND1) is the effector molecule responsible …
The Role Of An Ultraconserved Long Non-Coding Rna In B-Cell Lymphomagenesis, Swati Mohapatra
The Role Of An Ultraconserved Long Non-Coding Rna In B-Cell Lymphomagenesis, Swati Mohapatra
Dissertations and Theses (Open Access)
Ultraconserved regions (UCRs) are genomic segments with perfect (100%) conservation between the orthologous regions of human, rat, and mouse genomes. UCRs can be transcribed into mono-exonic long non-coding RNAs (lncRNAs) known as transcribed ultraconserved regions (T-UCRs). These regions, despite lacking protein-coding potential, are increasingly recognized for their regulatory roles in gene expression, including the modulation of non-coding RNA (ncRNA) transcripts. NcRNAs play crucial roles in cellular processes, including oncogenic transformation, with emerging evidence revealing their ability to encode small peptides known as ncRNA-encoded peptides (ncPEPs). These peptides, originating from small open reading frames (smORFs), contribute to diverse cellular functions and …
The Role Of The Circadian Clock In Disease And Tissue Function, Marvin Wirianto
The Role Of The Circadian Clock In Disease And Tissue Function, Marvin Wirianto
Dissertations and Theses (Open Access)
The mammalian circadian clock responds to the 24-hour daily cycle and regulates tissue-specific gene expression and downstream physiology. The central pacemaker located in the hypothalamic suprachiasmatic nuclei (SCN) synchronizes the peripheral clocks in different tissues. This dissertation aims to uncover specific circadian regulatory mechanisms in the brain and skeletal muscle.
Alzheimer’s Disease (AD) is the most common type of dementia. It has previously been shown that there is a strong correlation of disease progression with circadian rhythm decline. We showed that circadian modulation by a small molecule Nobiletin (NOB) was able to mitigate AD pathogenesis. Furthermore, NOB significantly alleviated the …
Genetic Analysis Of Kmt2d Loss In Tumorigenesis Using Genetically Engineered Mouse Models, Yingda Jiang
Genetic Analysis Of Kmt2d Loss In Tumorigenesis Using Genetically Engineered Mouse Models, Yingda Jiang
Dissertations and Theses (Open Access)
The Cancer Genome Atlas Program (TCGA) has discovered multiple tumor suppressors that are commonly mutated across a variety of human cancers, such as chromatin regulators in COMPASS and SWI/SNF complexes. KMT2D, a histone H3K4 methyltransferase in the COMPASS complex, is frequently mutated in human lymphoma, melanoma, and epithelial carcinoma. Biochemically, KMT2D shapes the cellular enhancer landscape as the major writer of the putative enhancer mark H3K4me1. Given the critical role of cellular enhancer landscape in determining cellular lineage in embryonic development, it is unknown whether enhancer dysregulation caused by KMT2D loss leads lineage switch of tumor cells, which has …
Utilizing The In4mer Crispr/Cas12a Multiplex Knockout Platform To Investigate Synthetic Lethality In The Human Genome, Xingdi Ma
Dissertations and Theses (Open Access)
The emergence of high-throughput sequencing technologies and the development of targeted cancer therapies have significantly advanced our understanding of cancer genomics and prolonged patient survival. Despite these advances, durable response remains difficult to achieve in the clinic. The concept of synthetic lethality has gained traction as a promising opportunity to discover novel cancer-specific vulnerabilities and therapeutic targets. Unfortunately, initial technologies for combinatorial genetic perturbation in mammalian cells suffer from inefficiency and are challenging to scale. In this dissertation, I report: 1) paralog selection method to select candidate synthetic lethal paralogs; 2) our Cas12a multiplex platform “IN4MER” that provides superior sensitivity …
Vesicle-Associated Membrane Proteins In Airway Mucin Secretion, Boxuan Yang
Vesicle-Associated Membrane Proteins In Airway Mucin Secretion, Boxuan Yang
Dissertations and Theses (Open Access)
Mucus plays a vital role in shielding the lungs against harmful substances such as particles, pathogens, and chemicals inhaled from the environment. It captures these harmful elements, and ciliary action helps to expel them from the lungs. Paradoxically, malfunctioning of mucus induces the development of various respiratory illnesses, including asthma, cystic fibrosis, chronic obstructive pulmonary disease (COPD), and interstitial lung diseases. Despite extensive research on controlling mucin production and hydration, the process of secretion is not yet fully comprehended.
Mucin undergoes regulated secretion at two rates: a low baseline rate and a high stimulated rate. Over the past 25 years, …
Evaluation Of Myogenic Differentiation Potential Of Bmd Ipscs In Vitro And The Effect Of Ubiquitination Inhibitors On Dystrophin Stability In Vivo, Muchen Liu
Dissertations and Theses (Open Access)
Background: Muscular dystrophies are heterogeneous groups of inherited diseases leading to progressive muscular weakness and degeneration. In the case of Becker muscular dystrophy (BMD), non-disrupting mutations of the DMD gene reading frame is the causative defect. By the age of 30s, about 60 to 70% of BMD patients develop cardiomyopathy, which is often lethal. Unfortunately, there is currently no cure for BMD. Meanwhile, improvement of dystrophin stability by repressing polyubiquitination is a promising strategy. The application of human iPSCs in tissue regeneration also serves as a potential therapeutic strategy. This study aims to test the efficacy of selected drugs interfering …
Plasma Proteins Associated With Plant-Based Diets: Results From The Atherosclerosis Risk In Communities (Aric) Study And Framingham Heart Study (Fhs), Hyunju Kim, Jingsha Chen, Brenton Prescott, Maura E Walker, Morgan E Grams, Bing Yu, Ramachandran S Vasan, James S Floyd, Nona Sotoodehnia, Nicholas L Smith, Dan E Arking, Josef Coresh, Casey M Rebholz
Plasma Proteins Associated With Plant-Based Diets: Results From The Atherosclerosis Risk In Communities (Aric) Study And Framingham Heart Study (Fhs), Hyunju Kim, Jingsha Chen, Brenton Prescott, Maura E Walker, Morgan E Grams, Bing Yu, Ramachandran S Vasan, James S Floyd, Nona Sotoodehnia, Nicholas L Smith, Dan E Arking, Josef Coresh, Casey M Rebholz
Faculty, Staff and Student Publications
Background & aims: Plant-based diets are associated with a lower risk of chronic diseases. Large-scale proteomics can identify objective biomarkers of plant-based diets, and improve our understanding of the pathways that link plant-based diets to health outcomes. This study investigated the plasma proteome of four different plant-based diets [overall plant-based diet (PDI), provegetarian diet, healthful plant-based diet (hPDI), and unhealthful plant-based diet (uPDI)] in the Atherosclerosis Risk in Communities (ARIC) Study and replicated the findings in the Framingham Heart Study (FHS) Offspring cohort.
Methods: ARIC Study participants at visit 3 (1993-1995) with completed food frequency questionnaire (FFQ) data and proteomics …
In Vivo Examination Of Peripheral Drivers Of Alzheimer’S Disease, Celso Catumbela
In Vivo Examination Of Peripheral Drivers Of Alzheimer’S Disease, Celso Catumbela
Dissertations and Theses (Open Access)
Alzheimer’s disease (AD) is the leading cause of dementia worldwide, and predominantly affects elderly populations. This disease is well known for its effects on the brain, but a wealth of clinical reports show that dementia can also modify, or be modified by, various peripheral and systemic processes. Yet, the pathological contribution of peripheral comorbidities to AD remains to be fully understood. In an attempt to address some knowledge gaps, we characterized the cerebral and peripheral pathology in mice with history of either liver injury or sepsis. In the former subjects, we found that even in the absence of genetic risk …
Sequential Inhibition Of Parp And Bet As A Rational Therapeutic Strategy For Glioblastoma, Xin Peng, Xin Huang, Shaolu Zhang, Naixin Zhang, Shengfan Huang, Yingying Wang, Zhenxing Zhong, Shan Zhu, Haiwang Gao, Zixiang Yu, Xiaotong Yan, Zhennan Tao, Yuxiang Dai, Zhe Zhang, Xi Chen, Feng Wang, Francois X Claret, Moshe Elkabets, Ning Ji, Yuxu Zhong, Dexin Kong
Sequential Inhibition Of Parp And Bet As A Rational Therapeutic Strategy For Glioblastoma, Xin Peng, Xin Huang, Shaolu Zhang, Naixin Zhang, Shengfan Huang, Yingying Wang, Zhenxing Zhong, Shan Zhu, Haiwang Gao, Zixiang Yu, Xiaotong Yan, Zhennan Tao, Yuxiang Dai, Zhe Zhang, Xi Chen, Feng Wang, Francois X Claret, Moshe Elkabets, Ning Ji, Yuxu Zhong, Dexin Kong
Faculty, Staff and Student Publications
PARP inhibitors (PARPi) hold substantial promise in treating glioblastoma (GBM). However, the adverse effects have restricted their broad application. Through unbiased transcriptomic and proteomic sequencing, it is discovered that the BET inhibitor (BETi) Birabresib profoundly alters the processes of DNA replication and cell cycle progression in GBM cells, beyond the previously reported impact of BET inhibition on homologous recombination repair. Through in vitro experiments using established GBM cell lines and patient-derived primary GBM cells, as well as in vivo orthotopic transplantation tumor experiments in zebrafish and nude mice, it is demonstrated that the concurrent administration of PARPi and BETi can …
Smyd5 Methylation Of Rpl40 Links Ribosomal Output To Gastric Cancer, Juhyung Park, Jibo Wu, Krzysztof J Szkop, Jinho Jeong, Predrag Jovanovic, Dylan Husmann, Natasha M Flores, Joel W Francis, Ying-Jiun C Chen, Ana Morales Benitez, Emily Zahn, Shumei Song, Jaffer A Ajani, Linghua Wang, Kamini Singh, Ola Larsson, Benjamin A Garcia, Ivan Topisirovic, Or Gozani, Pawel K Mazur
Smyd5 Methylation Of Rpl40 Links Ribosomal Output To Gastric Cancer, Juhyung Park, Jibo Wu, Krzysztof J Szkop, Jinho Jeong, Predrag Jovanovic, Dylan Husmann, Natasha M Flores, Joel W Francis, Ying-Jiun C Chen, Ana Morales Benitez, Emily Zahn, Shumei Song, Jaffer A Ajani, Linghua Wang, Kamini Singh, Ola Larsson, Benjamin A Garcia, Ivan Topisirovic, Or Gozani, Pawel K Mazur
Faculty, Staff and Student Publications
Dysregulated transcription due to disruption in histone lysine methylation dynamics is an established contributor to tumorigenesis1,2. However, whether analogous pathologic epigenetic mechanisms act directly on the ribosome to advance oncogenesis is unclear. Here we find that trimethylation of the core ribosomal protein L40 (rpL40) at lysine 22 (rpL40K22me3) by the lysine methyltransferase SMYD5 regulates mRNA translation output to promote malignant progression of gastric adenocarcinoma (GAC) with lethal peritoneal ascites. A biochemical-proteomics strategy identifies the monoubiquitin fusion protein partner rpL40 (ref. 3) as the principal physiological substrate of SMYD5 across diverse samples. Inhibiting the SMYD5-rpL40K22me3 axis in GAC cell lines reprogrammes …
Antitumor Activity Of A Novel Lair1 Antagonist In Combination With Anti-Pd1 To Treat Collagen-Rich Solid Tumors, Bertha L Rodriguez, Jiawei Huang, Laura Gibson, Jared J Fradette, Hung-I H Chen, Kikuye Koyano, Czrina Cortez, Betty Li, Carmence Ho, Amir M Ashique, Vicky Y Lin, Suzanne Crawley, Julie M Roda, Peirong Chen, Bin Fan, Jeong Kim, James Sissons, Jonathan Sitrin, Daniel D Kaplan, Don L Gibbons, Lee B Rivera
Antitumor Activity Of A Novel Lair1 Antagonist In Combination With Anti-Pd1 To Treat Collagen-Rich Solid Tumors, Bertha L Rodriguez, Jiawei Huang, Laura Gibson, Jared J Fradette, Hung-I H Chen, Kikuye Koyano, Czrina Cortez, Betty Li, Carmence Ho, Amir M Ashique, Vicky Y Lin, Suzanne Crawley, Julie M Roda, Peirong Chen, Bin Fan, Jeong Kim, James Sissons, Jonathan Sitrin, Daniel D Kaplan, Don L Gibbons, Lee B Rivera
Faculty, Staff and Student Publications
We recently reported that resistance to PD-1 blockade in a refractory lung cancer-derived model involved increased collagen deposition and the collagen-binding inhibitory receptor leukocyte-associated immunoglobulin-like receptor 1 (LAIR1). Thus, we hypothesized that LAIR1 and collagen cooperated to suppress therapeutic response. In this study, we report that LAIR1 is associated with tumor stroma and is highly expressed by intratumoral myeloid cells in both human tumors and mouse models of cancer. Stroma-associated myeloid cells exhibit a suppressive phenotype and correlate with LAIR1 expression in human cancer. NGM438, a novel humanized LAIR1 antagonist mAb, elicits myeloid inflammation and allogeneic T-cell responses by binding …
Ephb2 Receptor Promotes Dermal Fibrosis In Systemic Sclerosis, Erika S A Egal, Severin Donald Kamdem, Masaaki Yoshigi, Ching-Chu Yang, Sarah Pellizzari, Ernest M Kameni, My N Helms, Shervin Assassi, Mark Henkemeyer, Tracy M Frech, Patrice N Mimche
Ephb2 Receptor Promotes Dermal Fibrosis In Systemic Sclerosis, Erika S A Egal, Severin Donald Kamdem, Masaaki Yoshigi, Ching-Chu Yang, Sarah Pellizzari, Ernest M Kameni, My N Helms, Shervin Assassi, Mark Henkemeyer, Tracy M Frech, Patrice N Mimche
Faculty, Staff and Student Publications
Objective: Erythropoietin-producing hepatocellular (Eph)/Ephrin cell-cell signaling is emerging as a key player in tissue fibrogenesis. The aim of this study was to test the hypothesis that the receptor tyrosine kinase EphB2 mediates dermal fibrosis in systemic sclerosis (SSc).
Methods: We assessed normal and SSc human skin biopsies for EphB2 expression. The in vivo role of EphB2 in skin fibrosis was investigated by subjecting EphB2-knockout mice to both bleomycin-induced and tight skin (Tsk1/+) genetic mouse models of skin fibrosis. EphB2 kinase-dead and overactive point mutant mice were used to evaluate the role of EphB2 forward signaling in bleomycin-induced dermal fibrosis. In …
From Disorder Comes Function: Regulation Of Small Gtpase Function By Intrinsically Disordered Lipidated Membrane Anchor, Chase M Hutchins, Alemayehu A Gorfe
From Disorder Comes Function: Regulation Of Small Gtpase Function By Intrinsically Disordered Lipidated Membrane Anchor, Chase M Hutchins, Alemayehu A Gorfe
Faculty, Staff and Student Publications
The intrinsically disordered, lipid-modified membrane anchor of small GTPases is emerging as a critical modulator of function through its ability to sort lipids in a conformation-dependent manner. We reviewed recent computational and experimental studies that have begun to shed light on the sequence-ensemble-function relationship in this unique class of lipidated intrinsically disordered regions (LIDRs).
Electrical Stimulation Of The Dorsal Motor Nucleus Of The Vagus In Male Mice Can Regulate Inflammation Without Affecting The Heart Rate, Aidan Falvey, Santhoshi P Palandira, Sangeeta S Chavan, Michael Brines, Robert Dantzer, Kevin J Tracey, Valentin A Pavlov
Electrical Stimulation Of The Dorsal Motor Nucleus Of The Vagus In Male Mice Can Regulate Inflammation Without Affecting The Heart Rate, Aidan Falvey, Santhoshi P Palandira, Sangeeta S Chavan, Michael Brines, Robert Dantzer, Kevin J Tracey, Valentin A Pavlov
Faculty, Staff and Student Publications
Background: The vagus nerve plays an important role in neuroimmune interactions and in the regulation of inflammation. A major source of efferent vagus nerve fibers that contribute to the regulation of inflammation is the brainstem dorsal motor nucleus of the vagus (DMN), as recently shown using optogenetics. In contrast to optogenetics, electrical neuromodulation has broad therapeutic implications. However, the anti-inflammatory effectiveness of electrical stimulation of the DMN (eDMNS) and the possible heart rate (HR) alterations associated with this approach have not been investigated. Here, we examined the effects of eDMNS on HR and cytokine levels in mice administered with lipopolysaccharide …
Candida Albicans Natural Diversity: A Resource To Dissect Fungal Commensalism And Pathogenesis, Elena Lindemann-Perez, J Christian Perez
Candida Albicans Natural Diversity: A Resource To Dissect Fungal Commensalism And Pathogenesis, Elena Lindemann-Perez, J Christian Perez
Faculty, Staff and Student Publications
Candida albicans is a ubiquitous fungus of humans. It is not only a component of the oral and intestinal microbiota of most healthy adults but also a major cause of mucosal disorders and life-threatening disseminated infections. Until recently, research on the biology and pathogenesis of the fungus was largely based on a single clinical isolate. We review investigations that have started to dissect a diverse set of C. albicans strains. Using different approaches to leverage the species' phenotypic and/or genetic diversity, these studies illuminate the wide range of interactions between fungus and host. While connecting genetic variants to phenotypes of …
Comparative Toxicological Assessment Of 2 Bisphenols Using A Systems Approach: Evaluation Of The Behavioral And Transcriptomic Responses Of Danio Rerio To Bisphenol A And Tetrabromobisphenol A, Michael G Morash, Morgan W Kirzinger, John C Achenbach, Ananda B Venkatachalam, Jessica Nixon, Susanne Penny, Joëlle Pinsonnault Cooper, Deborah E Ratzlaff, Cindy L A Woodland, Lee D Ellis
Comparative Toxicological Assessment Of 2 Bisphenols Using A Systems Approach: Evaluation Of The Behavioral And Transcriptomic Responses Of Danio Rerio To Bisphenol A And Tetrabromobisphenol A, Michael G Morash, Morgan W Kirzinger, John C Achenbach, Ananda B Venkatachalam, Jessica Nixon, Susanne Penny, Joëlle Pinsonnault Cooper, Deborah E Ratzlaff, Cindy L A Woodland, Lee D Ellis
Faculty, Staff and Student Publications
The zebrafish (Danio rerio) is becoming a critical component of new approach methods (NAMs) in chemical risk assessment. As a whole organism in vitro NAM, the zebrafish model offers significant advantages over individual cell-line testing, including toxicokinetic and toxicodynamic competencies. A transcriptomic approach not only allows for insight into mechanism of action for both apical endpoints and unobservable adverse outcomes, but also changes in gene expression induced by lower, environmentally relevant concentrations. In this study, we used a larval zebrafish model to assess the behavioral and transcriptomic alterations caused by subphenotypic concentrations of 2 chemicals with the same structural backbone, …
Challenges In Lncrna Biology: Views And Opinions, Donald A Adjeroh, Xiaobo Zhou, Alexandre Rossi Paschoal, Nadya Dimitrova, Ekaterina G Derevyanchuk, Tatiana P Shkurat, Jeffrey A Loeb, Ivan Martinez, Leonard Lipovich
Challenges In Lncrna Biology: Views And Opinions, Donald A Adjeroh, Xiaobo Zhou, Alexandre Rossi Paschoal, Nadya Dimitrova, Ekaterina G Derevyanchuk, Tatiana P Shkurat, Jeffrey A Loeb, Ivan Martinez, Leonard Lipovich
Faculty, Staff and Student Publications
This is a mini-review capturing the views and opinions of selected participants at the 2021 IEEE BIBM 3rd Annual LncRNA Workshop, held in Dubai, UAE. The views and opinions are expressed on five broad themes related to problems in lncRNA, namely, challenges in the computational analysis of lncRNAs, lncRNAs and cancer, lncRNAs in sports, lncRNAs and COVID-19, and lncRNAs in human brain activity.
Patient-Derived Organoids As Therapy Screening Platforms In Cancer Patients, Danial Khorsandi, Jia-Wei Yang, Samuel Foster, Safoora Khosravi, Negar Hosseinzadeh Kouchehbaghi, Fahimeh Zarei, Yun Bin Lee, Farhana Runa, Ankit Gangrade, Leon Voskanian, Darbaz Adnan, Yangzhi Zhu, Zhaohui Wang, Vadim Jucaud, Mehmet Remzi Dokmeci, Xiling Shen, Faraz Bishehsari, Jonathan A Kelber, Ali Khademhosseini, Natan Roberto De Barros
Patient-Derived Organoids As Therapy Screening Platforms In Cancer Patients, Danial Khorsandi, Jia-Wei Yang, Samuel Foster, Safoora Khosravi, Negar Hosseinzadeh Kouchehbaghi, Fahimeh Zarei, Yun Bin Lee, Farhana Runa, Ankit Gangrade, Leon Voskanian, Darbaz Adnan, Yangzhi Zhu, Zhaohui Wang, Vadim Jucaud, Mehmet Remzi Dokmeci, Xiling Shen, Faraz Bishehsari, Jonathan A Kelber, Ali Khademhosseini, Natan Roberto De Barros
Faculty, Staff and Student Publications
Patient-derived organoids (PDOs) developed ex vivo and in vitro are increasingly used for therapeutic screening. They provide a more physiologically relevant model for drug discovery and development compared to traditional cell lines. However, several challenges remain to be addressed to fully realize the potential of PDOs in therapeutic screening. This paper summarizes recent advancements in PDO development and the enhancement of PDO culture models. This is achieved by leveraging materials engineering and microfabrication technologies, including organs-on-a-chip and droplet microfluidics. Additionally, this work discusses the application of PDOs in therapy screening to meet diverse requirements and overcome bottlenecks in cancer treatment. …
Why Do Patients With Cancer Die?, Adrienne Boire, Katy Burke, Thomas R Cox, Theresa Guise, Mariam Jamal-Hanjani, Tobias Janowitz, Rosandra Kaplan, Rebecca Lee, Charles Swanton, Matthew G Vander Heiden, Erik Sahai
Why Do Patients With Cancer Die?, Adrienne Boire, Katy Burke, Thomas R Cox, Theresa Guise, Mariam Jamal-Hanjani, Tobias Janowitz, Rosandra Kaplan, Rebecca Lee, Charles Swanton, Matthew G Vander Heiden, Erik Sahai
Faculty, Staff and Student Publications
Cancer is a major cause of global mortality, both in affluent countries and increasingly in developing nations. Many patients with cancer experience reduced life expectancy and have metastatic disease at the time of death. However, the more precise causes of mortality and patient deterioration before death remain poorly understood. This scarcity of information, particularly the lack of mechanistic insights, presents a challenge for the development of novel treatment strategies to improve the quality of, and potentially extend, life for patients with late-stage cancer. In addition, earlier deployment of existing strategies to prolong quality of life is highly desirable. In this …
Pbi-05204, A Supercritical Co2 Extract Of Nerium Oleander, Suppresses Glioblastoma Stem Cells By Inhibiting Grp78 And Inducing Programmed Necroptotic Cell, Sharmistha Chakraborty, Daoyan Wei, Megan Tran, Frederick F Lang, Robert A Newman, Peiying Yang
Pbi-05204, A Supercritical Co2 Extract Of Nerium Oleander, Suppresses Glioblastoma Stem Cells By Inhibiting Grp78 And Inducing Programmed Necroptotic Cell, Sharmistha Chakraborty, Daoyan Wei, Megan Tran, Frederick F Lang, Robert A Newman, Peiying Yang
Faculty, Staff and Student Publications
Successful treatment of glioblastoma multiforme (GBM), an aggressive form of primary brain neoplasm, mandates the need to develop new therapeutic strategies. In this study, we investigated the potential of PBI-05204 in targeting GBM stem cells (GSCs) and the underlying mechanisms. Treatment with PBI-05204 significantly reduced both the number and size of tumor spheres derived from patient-derived GSCs (GBM9, GSC28 and TS543), and suppressed the tumorigenesis of GBM9 xenografts. Moreover, PBI-05204 treatment led to a significant decrease in the expression of CD44 and NANOG, crucial markers of progenitor stem cells, in GBM9 and GSC28 GSCs. This treatment also down-regulated GRP78 expression …