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Articles 3361 - 3390 of 4657
Full-Text Articles in Entire DC Network
Metabolism Of Jq1, An Inhibitor Of Bromodomain And Extra Terminal Bromodomain Proteins, In Human And Mouse Liver Microsomes†, Feng Li, Kevin R Mackenzie, Prashi Jain, Conrad Santini, Damian W Young, Martin M Matzuk
Metabolism Of Jq1, An Inhibitor Of Bromodomain And Extra Terminal Bromodomain Proteins, In Human And Mouse Liver Microsomes†, Feng Li, Kevin R Mackenzie, Prashi Jain, Conrad Santini, Damian W Young, Martin M Matzuk
Faculty, Staff and Students Publications
JQ1 is a small-molecule inhibitor of the bromodomain and extra terminal (BET) protein family that potently inhibits the bromodomain testis-specific protein (BRDT), which is essential for spermatogenesis. JQ1 treatment produces a reversible contraceptive effect by targeting the activity of BRDT in mouse male germ cells, validating BRDT as a male contraceptive target. Although JQ1 possesses favourable physical properties, it exhibits a short half-life. Because the details of xenobiotic metabolism play important roles in the optimization of drug candidates and in determining the role of metabolism in drug efficacy, we investigated the metabolism of JQ1 in human and mouse liver microsomes. …
Npc1 Deficiency Impairs Cerebellar Postnatal Development Of Microglia And Climbing Fiber Refinement In A Mouse Model Of Niemann-Pick Disease Type C., Bridget R Boyle, Sierra E Melli, Ruth S Altreche, Zachary M Padron, Fawad A K Yousufzai, Sarah Kim, Mariella D Vasquez, Dawn M Carone, Benjamin Carone, Ileana Soto Reyes
Npc1 Deficiency Impairs Cerebellar Postnatal Development Of Microglia And Climbing Fiber Refinement In A Mouse Model Of Niemann-Pick Disease Type C., Bridget R Boyle, Sierra E Melli, Ruth S Altreche, Zachary M Padron, Fawad A K Yousufzai, Sarah Kim, Mariella D Vasquez, Dawn M Carone, Benjamin Carone, Ileana Soto Reyes
College of Science & Mathematics Departmental Research
Little is known about the effects of NPC1 deficiency in brain development and whether these effects contribute to neurodegeneration in Niemann-Pick disease type C (NPC). Degeneration of cerebellar Purkinje cells occurs at an earlier stage and to a greater extent in NPC; therefore, we analyzed the effect of NPC1 deficiency on microglia and on climbing fiber synaptic refinement during cerebellar postnatal development using the
A Global Slc7a7 Knockout Mouse Model Demonstrates Characteristic Phenotypes Of Human Lysinuric Protein Intolerance, Bridget M Stroup, Ronit Marom, Xiaohui Li, Chih-Wei Hsu, Cheng-Yen Chang, Luan D Truong, Brian Dawson, Ingo Grafe, Yuqing Chen, Ming-Ming Jiang, Denise Lanza, Jennie Rose Green, Qin Sun, J P Barrish, Safa Ani, Audrey E Christiansen, John R Seavitt, Mary E Dickinson, Farrah Kheradmand, Jason D Heaney, Brendan Lee, Lindsay C Burrage
A Global Slc7a7 Knockout Mouse Model Demonstrates Characteristic Phenotypes Of Human Lysinuric Protein Intolerance, Bridget M Stroup, Ronit Marom, Xiaohui Li, Chih-Wei Hsu, Cheng-Yen Chang, Luan D Truong, Brian Dawson, Ingo Grafe, Yuqing Chen, Ming-Ming Jiang, Denise Lanza, Jennie Rose Green, Qin Sun, J P Barrish, Safa Ani, Audrey E Christiansen, John R Seavitt, Mary E Dickinson, Farrah Kheradmand, Jason D Heaney, Brendan Lee, Lindsay C Burrage
Faculty, Staff and Students Publications
Lysinuric protein intolerance (LPI) is an inborn error of cationic amino acid (arginine, lysine, ornithine) transport caused by biallelic pathogenic variants in SLC7A7, which encodes the light subunit of the y+LAT1 transporter. Treatments for the complications of LPI, including growth failure, renal disease, pulmonary alveolar proteinosis, autoimmune disorders and osteoporosis, are limited. Given the early lethality of the only published global Slc7a7 knockout mouse model, a viable animal model to investigate global SLC7A7 deficiency is needed. Hence, we generated two mouse models with global Slc7a7 deficiency (Slc7a7em1Lbu/em1Lbu; Slc7a7Lbu/Lbu and Slc7a7em1(IMPC)Bay/em1(IMPC)Bay; Slc7a7Bay/Bay) using CRISPR/Cas9 technology by introducing a deletion of exons …
Nanoceria Distribution And Effects Are Mouse-Strain Dependent, Robert A. Yokel, Michael T. Tseng, D. Allan Butterfield, Matthew L. Hancock, Eric A. Grulke, Jason M. Unrine, Arnold J. Stromberg, Alan K. Dozier, Uschi M. Graham
Nanoceria Distribution And Effects Are Mouse-Strain Dependent, Robert A. Yokel, Michael T. Tseng, D. Allan Butterfield, Matthew L. Hancock, Eric A. Grulke, Jason M. Unrine, Arnold J. Stromberg, Alan K. Dozier, Uschi M. Graham
Pharmaceutical Sciences Faculty Publications
Prior studies showed nanoparticle clearance was different in C57BL/6 versus BALB/c mice, strains prone to Th1 and Th2 immune responses, respectively. Objective: Assess nanoceria (cerium oxide, CeO2 nanoparticle) uptake time course and organ distribution, cellular and oxidative stress, and bioprocessing as a function of mouse strain. Methods: C57BL/6 and BALB/c female mice were i.p. injected with 10 mg/kg nanoceria or vehicle and terminated 0.5 to 24 h later. Organs were collected for cerium analysis; light and electron microscopy with elemental mapping; and protein carbonyl, IL-1β, and caspase-1 determination. Results: Peripheral organ cerium significantly increased, generally more …
Tlr2/6 Signaling Promotes The Expansion Of Premalignant Hematopoietic Stem And Progenitor Cells In The Nup98-Hoxd13 Mouse Model Of Mds, Darlene A Monlish, Zev J Greenberg, Sima T Bhatt, Kathryn M Leonard, Molly P Romine, Qian Dong, Lauren Bendesky, Eric J Duncavage, Jeffrey A Magee, Laura G Schuettpelz
Tlr2/6 Signaling Promotes The Expansion Of Premalignant Hematopoietic Stem And Progenitor Cells In The Nup98-Hoxd13 Mouse Model Of Mds, Darlene A Monlish, Zev J Greenberg, Sima T Bhatt, Kathryn M Leonard, Molly P Romine, Qian Dong, Lauren Bendesky, Eric J Duncavage, Jeffrey A Magee, Laura G Schuettpelz
Open Access Publications
Toll-like receptor 2 (TLR2) expression is increased on hematopoietic stem and progenitor cells (HSPCs) of patients with myelodysplastic syndromes (MDS), and enhanced TLR2 signaling is thought to contribute to MDS pathogenesis. Notably, TLR2 heterodimerizes with TLR1 or TLR6, and while high TLR2 is associated with lower-risk disease, high TLR6, but not TLR1, correlates with higher-risk disease. This raises the possibility of heterodimer-specific effects of TLR2 signaling in MDS, and in the work described here, we tested the effects of specific modulation of TLR1/2 versus TLR2/6 signaling on premalignant HSPCs. Indeed, chronic stimulation of TLR2/6, but not TLR1/2, accelerates leukemic transformation …
Symmetric Inverse Consistent Nonlinear Registration Driven By Mutual Information, Wen Fury, Keun Woo Park, Zhuhao Wu, Eunhee Kim, Moon-Sook Woo, Yu Bai, Lynn E Macdonald, Susan D Croll, Sunghee Cho
Symmetric Inverse Consistent Nonlinear Registration Driven By Mutual Information, Wen Fury, Keun Woo Park, Zhuhao Wu, Eunhee Kim, Moon-Sook Woo, Yu Bai, Lynn E Macdonald, Susan D Croll, Sunghee Cho
Faculty, Staff and Student Publications
BACKGROUND AND PURPOSE: Stroke is a major cause of chronic neurological disability. There is considerable interest in understanding how acute transcriptome changes evolve into subacute and chronic patterns that facilitate or limit spontaneous recovery. Here we mapped longitudinal changes in gene expression at multiple time points after stroke in mice out to 6 months.
METHODS: Adult C57BL/6 mice were subjected to transient middle cerebral artery occlusion. Longitudinal transcriptome levels were measured at 10 time points after stroke from acute to recovery phases of ischemic stroke. Localization and the number of mononuclear phagocytes were determined in the postischemic brain. Whole-mount brain …
Glycan Cross-Feeding Supports Mutualism Between Fusobacterium And The Vaginal Microbiota, Kavita Agarwal, Lloyd S. Robinson, Somya Aggarwal, Lynne R. Foster, Ariel Hernandez-Leyva, Hueylie Lin, Brett A. Tortelli, Valerie P. O'Brien, Liza Miller, Andrew L. Kau, Hilary Reno, Nicole M. Gilbert, Warren G. Lewis, Amanda L. Lewis
Glycan Cross-Feeding Supports Mutualism Between Fusobacterium And The Vaginal Microbiota, Kavita Agarwal, Lloyd S. Robinson, Somya Aggarwal, Lynne R. Foster, Ariel Hernandez-Leyva, Hueylie Lin, Brett A. Tortelli, Valerie P. O'Brien, Liza Miller, Andrew L. Kau, Hilary Reno, Nicole M. Gilbert, Warren G. Lewis, Amanda L. Lewis
Open Access Publications
Women with bacterial vaginosis (BV), an imbalance of the vaginal microbiome, are more likely to be colonized by potential pathogens such as Fusobacterium nucleatum, a bacterium linked with intrauterine infection and preterm birth. However, the conditions and mechanisms supporting pathogen colonization during vaginal dysbiosis remain obscure. We demonstrate that sialidase activity, a diagnostic feature of BV, promoted F. nucleatum foraging and growth on mammalian sialoglycans, a nutrient resource that was otherwise inaccessible because of the lack of endogenous F. nucleatum sialidase. In mice with sialidase-producing vaginal microbiotas, mutant F. nucleatum unable to consume sialic acids was impaired in vaginal colonization. …
Radiation Causes Tissue Damage By Dysregulating Inflammasome-Gasdermin D Signaling In Both Host And Transplanted Cells, Jianqiu Xiao, Chun Wang, Juo-Chin Yao, Yael Alippe, Tong Yang, Dustin Kress, Kai Sun, Kourtney L. Kostecki, Joseph B. Monahan, Deborah J. Veis, Yousef Abu-Amer, Daniel C. Link, Gabriel Mbalaviele
Radiation Causes Tissue Damage By Dysregulating Inflammasome-Gasdermin D Signaling In Both Host And Transplanted Cells, Jianqiu Xiao, Chun Wang, Juo-Chin Yao, Yael Alippe, Tong Yang, Dustin Kress, Kai Sun, Kourtney L. Kostecki, Joseph B. Monahan, Deborah J. Veis, Yousef Abu-Amer, Daniel C. Link, Gabriel Mbalaviele
Open Access Publications
Radiotherapy is a commonly used conditioning regimen for bone marrow transplantation (BMT). Cytotoxicity limits the use of this life-saving therapy, but the underlying mechanisms remain poorly defined. Here, we use the syngeneic mouse BMT model to test the hypothesis that lethal radiation damages tissues, thereby unleashing signals that indiscriminately activate the inflammasome pathways in host and transplanted cells. We find that a clinically relevant high dose of radiation causes severe damage to bones and the spleen through mechanisms involving the NLRP3 and AIM2 inflammasomes but not the NLRC4 inflammasome. Downstream, we demonstrate that gasdermin D (GSDMD), the common effector of …
Gut Microbiota-Derived Short-Chain Fatty Acids Promote Poststroke Recovery In Aged Mice, Juneyoung Lee, John D'Aigle, Louise Atadja, Victoria Quaicoe, Pedram Honarpisheh, Bhanu P Ganesh, Ahmad Hassan, Joerg Graf, Joseph Petrosino, Nagireddy Putluri, Liang Zhu, David J Durgan, Robert M Bryan, Louise D Mccullough, Venugopal Reddy Venna
Gut Microbiota-Derived Short-Chain Fatty Acids Promote Poststroke Recovery In Aged Mice, Juneyoung Lee, John D'Aigle, Louise Atadja, Victoria Quaicoe, Pedram Honarpisheh, Bhanu P Ganesh, Ahmad Hassan, Joerg Graf, Joseph Petrosino, Nagireddy Putluri, Liang Zhu, David J Durgan, Robert M Bryan, Louise D Mccullough, Venugopal Reddy Venna
Faculty, Staff and Students Publications
RATIONALE: The elderly experience profound systemic responses after stroke, which contribute to higher mortality and more severe long-term disability. Recent studies have revealed that stroke outcomes can be influenced by the composition of gut microbiome. However, the potential benefits of manipulating the gut microbiome after injury is unknown.
OBJECTIVE: To determine if restoring youthful gut microbiota after stroke aids in recovery in aged subjects, we altered the gut microbiome through young fecal transplant gavage in aged mice after experimental stroke. Further, the effect of direct enrichment of selective bacteria producing short-chain fatty acids (SCFAs) was tested as a more targeted …
Paraventricular Hypothalamus Mediates Diurnal Rhythm Of Metabolism, Eun Ran Kim, Yuanzhong Xu, Ryan M Cassidy, Yungang Lu, Yongjie Yang, Jinbin Tian, De-Pei Li, Rachel Van Drunen, Aleix Ribas-Latre, Zhao-Lin Cai, Mingshan Xue, Benjamin R Arenkiel, Kristin Eckel-Mahan, Yong Xu, Qingchun Tong
Paraventricular Hypothalamus Mediates Diurnal Rhythm Of Metabolism, Eun Ran Kim, Yuanzhong Xu, Ryan M Cassidy, Yungang Lu, Yongjie Yang, Jinbin Tian, De-Pei Li, Rachel Van Drunen, Aleix Ribas-Latre, Zhao-Lin Cai, Mingshan Xue, Benjamin R Arenkiel, Kristin Eckel-Mahan, Yong Xu, Qingchun Tong
Children’s Nutrition Research Center Staff Publications
Defective rhythmic metabolism is associated with high-fat high-caloric diet (HFD) feeding, ageing and obesity; however, the neural basis underlying HFD effects on diurnal metabolism remains elusive. Here we show that deletion of BMAL1, a core clock gene, in paraventricular hypothalamic (PVH) neurons reduces diurnal rhythmicity in metabolism, causes obesity and diminishes PVH neuron activation in response to fast-refeeding. Animal models mimicking deficiency in PVH neuron responsiveness, achieved through clamping PVH neuron activity at high or low levels, both show obesity and reduced diurnal rhythmicity in metabolism. Interestingly, the PVH exhibits BMAL1-controlled rhythmic expression of GABA-A receptor γ2 subunit, and dampening …
Pdgfrα-Cre Mediated Knockout Of The Aryl Hydrocarbon Receptor Protects Mice From High-Fat Diet Induced Obesity And Hepatic Steatosis, Francoise A. Gourronc, Kathleen R. Markan, Katarina Kulhankova, Jingpeng Zhu, Zhiyong Zhu, Ryan Sheehy, Dawn E. Quelle, Leonid V. Zingman, Zoya B. Kurago, James A. Ankrum, Aloysius J. Klingelhutz
Pdgfrα-Cre Mediated Knockout Of The Aryl Hydrocarbon Receptor Protects Mice From High-Fat Diet Induced Obesity And Hepatic Steatosis, Francoise A. Gourronc, Kathleen R. Markan, Katarina Kulhankova, Jingpeng Zhu, Zhiyong Zhu, Ryan Sheehy, Dawn E. Quelle, Leonid V. Zingman, Zoya B. Kurago, James A. Ankrum, Aloysius J. Klingelhutz
Faculty and Staff Publications
Aryl hydrocarbon receptor (AHR) agonists such as dioxin have been associated with obesity and the development of diabetes. Whole-body Ahr knockout mice on high-fat diet (HFD) have been shown to resist obesity and hepatic steatosis. Tissue-specific knockout of Ahr in mature adipocytes via adiponectin-Cre exacerbates obesity while knockout in liver increases steatosis without having significant effects on obesity. Our previous studies demonstrated that treatment of subcutaneous preadipocytes with exogenous or endogenous AHR agonists disrupts maturation into functional adipocytes in vitro. Here, we used platelet-derived growth factor receptor alpha (Pdgfrα)-Cre mice, a Cre model previously established to knock out genes in …
Whole Exome Sequencing In Patients With Williams-Beuren Syndrome Followed By Disease Modeling In Mice Points To Four Novel Pathways That May Modify Stenosis Risk, Phoebe C R Parrish, Delong Liu, Russell H Knutsen, Charles J Billington, Robert P Mecham, Yi-Ping Fu, Beth A Kozel
Whole Exome Sequencing In Patients With Williams-Beuren Syndrome Followed By Disease Modeling In Mice Points To Four Novel Pathways That May Modify Stenosis Risk, Phoebe C R Parrish, Delong Liu, Russell H Knutsen, Charles J Billington, Robert P Mecham, Yi-Ping Fu, Beth A Kozel
2020-Current year OA Pubs
Supravalvular aortic stenosis (SVAS) is a narrowing of the aorta caused by elastin (ELN) haploinsufficiency. SVAS severity varies among patients with Williams-Beuren syndrome (WBS), a rare disorder that removes one copy of ELN and 25-27 other genes. Twenty percent of children with WBS require one or more invasive and often risky procedures to correct the defect while 30% have no appreciable stenosis, despite sharing the same basic genetic lesion. There is no known medical therapy. Consequently, identifying genes that modify SVAS offers the potential for novel modifier-based therapeutics. To improve statistical power in our rare-disease cohort (N = 104 exomes), …
Duodenal Microbiota In Stunted Undernourished Children With Enteropathy, Robert Y Chen, Vanderlene L Kung, Matthew C Hibberd, Janaki Guruge, Blanda Di Luccia, Kazi Ahsan, Elizabeth Kennedy, Jesus Santiago-Borges, Michael J Barratt, Jeffrey I Gordon, Et Al
Duodenal Microbiota In Stunted Undernourished Children With Enteropathy, Robert Y Chen, Vanderlene L Kung, Matthew C Hibberd, Janaki Guruge, Blanda Di Luccia, Kazi Ahsan, Elizabeth Kennedy, Jesus Santiago-Borges, Michael J Barratt, Jeffrey I Gordon, Et Al
Open Access Publications
BACKGROUND: Environmental enteric dysfunction (EED) is an enigmatic disorder of the small intestine that is postulated to play a role in childhood undernutrition, a pressing global health problem. Defining the incidence of this disorder, its pathophysiological features, and its contribution to impaired linear and ponderal growth has been hampered by the difficulty in directly sampling the small intestinal mucosa and microbial community (microbiota).
METHODS: In this study, among 110 young children (mean age, 18 months) with linear growth stunting who were living in an urban slum in Dhaka, Bangladesh, and had not benefited from a nutritional intervention, we performed endoscopy …
Critical Micrornas And Regulatory Motifs In Cleft Palate Identified By A Conserved Mirna-Tf-Gene Network Approach In Humans And Mice, Aimin Li, Peilin Jia, Saurav Mallik, Rong Fei, Hiroki Yoshioka, Akiko Suzuki, Junichi Iwata, Zhongming Zhao
Critical Micrornas And Regulatory Motifs In Cleft Palate Identified By A Conserved Mirna-Tf-Gene Network Approach In Humans And Mice, Aimin Li, Peilin Jia, Saurav Mallik, Rong Fei, Hiroki Yoshioka, Akiko Suzuki, Junichi Iwata, Zhongming Zhao
Faculty, Staff and Student Publications
Cleft palate (CP) is the second most common congenital birth defect. The etiology of CP is complicated, with involvement of various genetic and environmental factors. To investigate the gene regulatory mechanisms, we designed a powerful regulatory analytical approach to identify the conserved regulatory networks in humans and mice, from which we identified critical microRNAs (miRNAs), target genes and regulatory motifs (miRNA-TF-gene) related to CP. Using our manually curated genes and miRNAs with evidence in CP in humans and mice, we constructed miRNA and transcription factor (TF) co-regulation networks for both humans and mice. A consensus regulatory loop (miR17/miR20a-FOXE1-PDGFRA) and eight …
Fam20b-Catalyzed Glycosaminoglycans Control Murine Tooth Number By Restricting Fgfr2b Signaling, Jingyi Wu, Ling Li, David M Ornitz, Et Al
Fam20b-Catalyzed Glycosaminoglycans Control Murine Tooth Number By Restricting Fgfr2b Signaling, Jingyi Wu, Ling Li, David M Ornitz, Et Al
Open Access Publications
BACKGROUND: The formation of supernumerary teeth is an excellent model for studying the molecular mechanisms that control stem/progenitor cell homeostasis needed to generate a renewable source of replacement cells and tissues. Although multiple growth factors and transcriptional factors have been associated with supernumerary tooth formation, the regulatory inputs of extracellular matrix in this regenerative process remains poorly understood.
RESULTS: In this study, we present evidence that disrupting glycosaminoglycans (GAGs) in the dental epithelium of mice by inactivating FAM20B, a xylose kinase essential for GAG assembly, leads to supernumerary tooth formation in a pattern reminiscent of replacement teeth. The dental epithelial …
Lipocalin 2 Induces Neuroinflammation And Blood-Brain Barrier Dysfunction Through Liver-Brain Axis In Murine Model Of Nonalcoholic Steatohepatitis, Ayan Mondal, Dipro Bose, Punnag Saha, Sutapa Sarkar, Ratanesh K. Seth, Diana Kimono, Muayad Albadrani, Mitzi Nagarkatti, Prakash Nagarkatti, Saurabh Chatterjee
Lipocalin 2 Induces Neuroinflammation And Blood-Brain Barrier Dysfunction Through Liver-Brain Axis In Murine Model Of Nonalcoholic Steatohepatitis, Ayan Mondal, Dipro Bose, Punnag Saha, Sutapa Sarkar, Ratanesh K. Seth, Diana Kimono, Muayad Albadrani, Mitzi Nagarkatti, Prakash Nagarkatti, Saurabh Chatterjee
Faculty Publications
BACKGROUND:
Recent clinical and basic research implicated a strong correlation between NAFLD/NASH phenotypes with ectopic manifestations including neuroinflammation and neurodegeneration, but the mediators and critical pathways involved are not well understood. Lipocalin 2 (Lcn2) is one of the important mediators exclusively produced in the liver and circulation during NASH pathology.
METHODS:
Using murine model of NASH, we studied the role of Lcn2 as a potent mediator of neuroinflammation and neurodegeneration in NASH pathology via the liver-brain axis. RESULTS: Results showed that high circulatory Lcn2 activated 24p3R (Lipocalin2 receptor) in the brain and induced the release of high mobility group box …
C1q/Tnf-Related Protein 5 Contributes To Diabetic Vascular Endothelium Dysfunction Through Promoting Nox-1 Signaling., Jing Liu, Zhijun Meng, Lu Gan, Rui Guo, Jia Gao, Caihong Liu, Di Zhu, Demin Liu, Ling Zhang, Zhen Zhang, Dina Xie, Xiangying Jiao, Wayne Bond Lau, Bernard L. Lopez, Theodore A. Christopher, Xin-Liang Ma, Jimin Cao, Yajing Wang
C1q/Tnf-Related Protein 5 Contributes To Diabetic Vascular Endothelium Dysfunction Through Promoting Nox-1 Signaling., Jing Liu, Zhijun Meng, Lu Gan, Rui Guo, Jia Gao, Caihong Liu, Di Zhu, Demin Liu, Ling Zhang, Zhen Zhang, Dina Xie, Xiangying Jiao, Wayne Bond Lau, Bernard L. Lopez, Theodore A. Christopher, Xin-Liang Ma, Jimin Cao, Yajing Wang
Department of Emergency Medicine Faculty Papers
OBJECTIVE: Dysregulated adipokine profiles contribute to the pathogenesis of diabetic cardiovascular complications. Endothelial cell (EC) dysfunction, a common pathological alteration in cardiovascular disorders, is exaggerated in diabetes. However, it is unclear whether and how dysregulated adipokines may contribute to diabetic EC dysfunction.
METHODS AND RESULTS: Serum C1q/TNF-Related Protein 5 (CTRP5) were determined in control/diabetes patients, and control/diabetic mice (high-fat diet, HFD). We observed for the first time that serum total CTRP5 was increased, high molecular weight (HMW) form was decreased, but the globular form (gCTRP5) was significantly increased in diabetic patients. These pathological alterations were reproduced in diabetic mice. To …
Microbial Experience Influences Tumor- Infiltrating T Lymphocytes, Hanna Groeber
Microbial Experience Influences Tumor- Infiltrating T Lymphocytes, Hanna Groeber
Masters Theses
Immune cells, including T cells, have been used for anti-cancer therapy with varying degrees of success. One potential reason for immunotherapy failures in clinical trials may be that typical specific pathogen free (SPF) mice do not accurately replicate human microbial experience, which has important influence on shaping the adaptive immune response. Recently, several previous studies have shown that the immune system of SPF mice more closely resembles newborn human immunity, whereas immune systems from mice exposed to diverse pathogens more closely reflect adult human immunity.
To study the impact of microbial experience on the immune response, we have adopted a …
An Immune Response To The Avascular Lens Following Wounding Of The Cornea Involves Ciliary Zonule Fibrils., Jodirae Dedreu, Caitlin J Bowen, Caitlin M Logan, Sonali Pal-Ghosh, Paola Parlanti, Mary Ann Stepp, A Sue Menko
An Immune Response To The Avascular Lens Following Wounding Of The Cornea Involves Ciliary Zonule Fibrils., Jodirae Dedreu, Caitlin J Bowen, Caitlin M Logan, Sonali Pal-Ghosh, Paola Parlanti, Mary Ann Stepp, A Sue Menko
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
The lens and central cornea are avascular. It was assumed that the adult lens had no source of immune cells and that the basement membrane capsule surrounding the lens was a barrier to immune cell migration. Yet, microfibril-associated protein-1 (MAGP1)-rich ciliary zonules that originate from the vasculature-rich ciliary body and extend along the surface of the lens capsule, form a potential conduit for immune cells to the lens. In response to cornea debridement wounding, we find increased expression of MAGP1 throughout the central corneal stroma. The immune cells that populate this typically avascular region after wounding closely associate with this …
Nuclear Localization Of A Novel Calpain-2 Mediated Junctophilin-2 C-Terminal Cleavage Peptide Promotes Cardiomyocyte Remodeling, Satadru K Lahiri, Ann P Quick, Benoit Samson-Couterie, Mohit Hulsurkar, Ies Elzenaar, Ralph J Van Oort, Xander H T Wehrens
Nuclear Localization Of A Novel Calpain-2 Mediated Junctophilin-2 C-Terminal Cleavage Peptide Promotes Cardiomyocyte Remodeling, Satadru K Lahiri, Ann P Quick, Benoit Samson-Couterie, Mohit Hulsurkar, Ies Elzenaar, Ralph J Van Oort, Xander H T Wehrens
Faculty, Staff and Students Publications
Heart failure (HF) is a leading cause of morbidity and mortality worldwide. Patients with HF exhibit a loss of junctophilin-2 (JPH2), a structural protein critical in forming junctional membrane complexes in which excitation-contraction takes place. Several mechanisms have been proposed to mediate the loss of JPH2, one being cleavage by the calcium-dependent protease calpain. The downstream mechanisms underlying HF progression after JPH2 cleavage are presently poorly understood. In this study, we used Labcas to bioinformatically predict putative calpain cleavage sites on JPH2. We identified a cleavage site that produces a novel C-terminal JPH2 peptide (JPH2-CTP) using several domain-specific antibodies. Western …
Acute Tubular Injury In A Patient On A Proprotein Convertase Subtilisin/Kexin Type 9 Inhibitor, June K Pickett, Maulin Shah, Michael Gillette, Peter Jones, Salim Virani, Christie Ballantyne, Vijay Nambi
Acute Tubular Injury In A Patient On A Proprotein Convertase Subtilisin/Kexin Type 9 Inhibitor, June K Pickett, Maulin Shah, Michael Gillette, Peter Jones, Salim Virani, Christie Ballantyne, Vijay Nambi
Faculty, Staff and Students Publications
A 72-year-old man with coronary artery disease, statin intolerance, and chronic kidney disease stage IIIa was initiated on alirocumab, a proprotein convertase subtilisin/kexin type 9 inhibitor, and developed acute kidney injury. A kidney biopsy was performed and suggested acute tubular injury. The serum creatinine returned to baseline after discontinuation of alirocumab. (Level of Difficulty: Intermediate.)
25-Hydroxycholesterol Amplifies Microglial Il-1Β Production In An Apoe Isoform-Dependent Manner, Man Ying Wong, Michael Lewis, James J Doherty, Yang Shi, Anil G Cashikar, Anna Amelianchik, Svitlana Tymchuk, Patrick M Sullivan, Mingxing Qian, Douglas F Covey, Gregory A Petsko, David M Holtzman, Steven M Paul, Wenjie Luo
25-Hydroxycholesterol Amplifies Microglial Il-1Β Production In An Apoe Isoform-Dependent Manner, Man Ying Wong, Michael Lewis, James J Doherty, Yang Shi, Anil G Cashikar, Anna Amelianchik, Svitlana Tymchuk, Patrick M Sullivan, Mingxing Qian, Douglas F Covey, Gregory A Petsko, David M Holtzman, Steven M Paul, Wenjie Luo
2020-Current year OA Pubs
BACKGROUND: Genome-wide association studies of Alzheimer's disease (AD) have implicated pathways related to lipid homeostasis and innate immunity in AD pathophysiology. However, the exact cellular and chemical mediators of neuroinflammation in AD remain poorly understood. The oxysterol 25-hydroxycholesterol (25-HC) is an important immunomodulator produced by peripheral macrophages with wide-ranging effects on cell signaling and innate immunity. Cholesterol 25-hydroxylase (CH25H), the enzyme responsible for 25-HC production, has also been found to be one of the disease-associated microglial (DAM) genes that are upregulated in the brain of AD and AD transgenic mouse models.
METHODS: We used real-time PCR and immunoblotting to examine …
Facial Shape And Allometry Quantitative Trait Locus Intervals In The Diversity Outbred Mouse Are Enriched For Known Skeletal And Facial Development Genes., David C Katz, J David Aponte, Wei Liu, Rebecca M Green, Jessica M Mayeux, K Michael Pollard, Daniel Pomp, Steven C. Munger, Stephen A Murray, Charles C Roseman, Christopher J Percival, James Cheverud, Ralph S Marcucio, Benedikt Hallgrímsson
Facial Shape And Allometry Quantitative Trait Locus Intervals In The Diversity Outbred Mouse Are Enriched For Known Skeletal And Facial Development Genes., David C Katz, J David Aponte, Wei Liu, Rebecca M Green, Jessica M Mayeux, K Michael Pollard, Daniel Pomp, Steven C. Munger, Stephen A Murray, Charles C Roseman, Christopher J Percival, James Cheverud, Ralph S Marcucio, Benedikt Hallgrímsson
Faculty Research 2020
The biology of how faces are built and come to differ from one another is complex. Discovering normal variants that contribute to differences in facial morphology is one key to untangling this complexity, with important implications for medicine and evolutionary biology. This study maps quantitative trait loci (QTL) for skeletal facial shape using Diversity Outbred (DO) mice. The DO is a randomly outcrossed population with high heterozygosity that captures the allelic diversity of eight inbred mouse lines from three subspecies. The study uses a sample of 1147 DO animals (the largest sample yet employed for a shape QTL study in …
Multidimensional Imaging Of Liver Injury Repair In Mice Reveals Fundamental Role Of The Ductular Reaction, Kenji Kamimoto, Yasuhiro Nakano, Kota Kaneko, Atsushi Miyajima, Tohru Itoh
Multidimensional Imaging Of Liver Injury Repair In Mice Reveals Fundamental Role Of The Ductular Reaction, Kenji Kamimoto, Yasuhiro Nakano, Kota Kaneko, Atsushi Miyajima, Tohru Itoh
Open Access Publications
Upon severe and/or chronic liver injury, ectopic emergence and expansion of atypical biliary epithelial-like cells in the liver parenchyma, known as the ductular reaction, is typically induced and implicated in organ regeneration. Although this phenomenon has long been postulated to represent activation of facultative liver stem/progenitor cells that give rise to new hepatocytes, recent lineage-tracing analyses have challenged this notion, thereby leaving the pro-regenerative role of the ductular reaction enigmatic. Here, we show that the expanded and remodelled intrahepatic biliary epithelia in the ductular reaction constituted functional and complementary bile-excreting conduit systems in injured parenchyma where hepatocyte bile canalicular networks …
Covid-19 Preclinical Models: Human Angiotensin-Converting Enzyme 2 Transgenic Mice., Cathleen Lutz, Leigh Maher, Charles Lee, Wonyoung Kang
Covid-19 Preclinical Models: Human Angiotensin-Converting Enzyme 2 Transgenic Mice., Cathleen Lutz, Leigh Maher, Charles Lee, Wonyoung Kang
Faculty Research 2020
Coronavirus disease 2019 (COVID-19) is a declared pandemic that is spreading all over the world at a dreadfully fast rate. Severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), the pathogen of COVID-19, infects the human body using angiotensin-converting enzyme 2 (ACE2) as a receptor identical to the severe acute respiratory syndrome (SARS) pandemic that occurred in 2002-2003. SARS-CoV-2 has a higher binding affinity to human ACE2 than to that of other species. Animal models that mimic the human disease are highly essential to develop therapeutics and vaccines against COVID-19. Here, we review transgenic mice that express human ACE2 in the airway and …
Aav-Crispr Gene Editing Is Negated By Pre-Existing Immunity To Cas9, Ang Li, Mark R Tanner, Ciaran M Lee, Ayrea E Hurley, Marco De Giorgi, Kelsey E Jarrett, Timothy H Davis, Alexandria M Doerfler, Gang Bao, Christine Beeton, William R Lagor
Aav-Crispr Gene Editing Is Negated By Pre-Existing Immunity To Cas9, Ang Li, Mark R Tanner, Ciaran M Lee, Ayrea E Hurley, Marco De Giorgi, Kelsey E Jarrett, Timothy H Davis, Alexandria M Doerfler, Gang Bao, Christine Beeton, William R Lagor
Faculty, Staff and Students Publications
Adeno-associated viral (AAV) vectors are a leading candidate for the delivery of CRISPR-Cas9 for therapeutic genome editing in vivo. However, AAV-based delivery involves persistent expression of the Cas9 nuclease, a bacterial protein. Recent studies indicate a high prevalence of neutralizing antibodies and T cells specific to the commonly used Cas9 orthologs from Streptococcus pyogenes (SpCas9) and Staphylococcus aureus (SaCas9) in humans. We tested in a mouse model whether pre-existing immunity to SaCas9 would pose a barrier to liver genome editing with AAV packaging CRISPR-Cas9. Although efficient genome editing occurred in mouse liver with pre-existing SaCas9 immunity, this was accompanied by …
Stress In Groups: Lessons From Non-Traditional Rodent Species And Housing Models, Annaliese K. Beery, Melissa M. Holmes, Won Lee, James P. Curley
Stress In Groups: Lessons From Non-Traditional Rodent Species And Housing Models, Annaliese K. Beery, Melissa M. Holmes, Won Lee, James P. Curley
Neuroscience: Faculty Publications
A major feature of life in groups is that individuals experience social stressors of varying intensity and type. Social stress can have profound effects on health, social behavior, and ongoing relationships. Relationships can also buffer the experience of exogenous stressors. Social stress has most commonly been investigated in dyadic contexts in mice and rats that produce intense stress. Here we review findings from studies of diverse rodents and non-traditional group housing paradigms, focusing on laboratory studies of mice and rats housed in visible burrow systems, prairie and meadow voles, and mole-rats. We argue that the use of methods informed by …
Phosphorylation Modulates The Coregulatory Protein Exchange Of The Nuclear Receptor Pregnane X Receptor, Wenqi Cui, Xunan Shen, Emre Agbas, Brandon Tompkins, Hadley Cameron-Carter, Jeff Staudinger
Phosphorylation Modulates The Coregulatory Protein Exchange Of The Nuclear Receptor Pregnane X Receptor, Wenqi Cui, Xunan Shen, Emre Agbas, Brandon Tompkins, Hadley Cameron-Carter, Jeff Staudinger
Faculty and Staff Publications
The pregnane X receptor (PXR), or nuclear receptor (NR) 1I2, is a ligand-activated NR superfamily member that is enriched in liver and intestine in mammals. Activation of PXR regulates the expression of genes encoding key proteins involved in drug metabolism, drug efflux, and drug transport. Recent mechanistic investigations reveal that post-translational modifications (PTMs), such as phosphorylation, play a critical role in modulating the bimodal function of PXR-mediated transrepression and transactivation of target gene transcription. Upon ligand binding, PXR undergoes a conformational change that promotes dissociation of histone deacetylase-containing multiprotein corepressor protein complexes while simultaneously favoring recruitment histone acetyl transferase-containing complexes. …
Hypoxia-Inducible Factor (Hif)-2Α Reprograms Liver Macrophages To Protect Against Acute Liver Injury Via The Production Of Interleukin-6, Rachel Y Gao, Meng Wang, Qihui Liu, Dechun Feng, Yankai Wen, Yang Xia, Sean P Colgan, Holger K Eltzschig, Cynthia Ju
Hypoxia-Inducible Factor (Hif)-2Α Reprograms Liver Macrophages To Protect Against Acute Liver Injury Via The Production Of Interleukin-6, Rachel Y Gao, Meng Wang, Qihui Liu, Dechun Feng, Yankai Wen, Yang Xia, Sean P Colgan, Holger K Eltzschig, Cynthia Ju
Faculty, Staff and Student Publications
BACKGROUND AND AIMS: Acetaminophen (APAP) overdose represents the most frequent cause of acute liver failure, resulting in death or liver transplantation in more than one third of patients in the United States. The effectiveness of the only antidote, N-acetylcysteine, declines rapidly after APAP ingestion, long before patients are admitted to the clinic with symptoms of severe liver injury. The direct hepatotoxicity of APAP triggers a cascade of innate immune responses that may exacerbate or limit the progression of tissue damage. A better understanding of this complex mechanism will help uncover targets for therapeutic interventions.
APPROACH AND RESULTS: We observed that …
Discovery Of A Selective Inhibitor Of Doublecortin Like Kinase 1, Fleur M Ferguson, Behnam Nabet, Srivatsan Raghavan, Yan Liu, Alan L Leggett, Miljan Kuljanin, Radha L Kalekar, Annan Yang, Shuning He, Jinhua Wang, Raymond W S Ng, Rita Sulahian, Lianbo Li, Emily J Poulin, Ling Huang, Jost Koren, Nora Dieguez-Martinez, Sergio Espinosa, Zhiyang Zeng, Cesear R Corona, James D Vasta, Ryoma Ohi, Taebo Sim, Nam Doo Kim, Wayne Harshbarger, Jose M Lizcano, Matthew B Robers, Senthil Muthaswamy, Charles Y Lin, A Thomas Look, Kevin M Haigis, Joseph D Mancias, Brian M Wolpin, Andrew J Aguirre, William C Hahn, Kenneth D Westover, Nathanael S Gray
Discovery Of A Selective Inhibitor Of Doublecortin Like Kinase 1, Fleur M Ferguson, Behnam Nabet, Srivatsan Raghavan, Yan Liu, Alan L Leggett, Miljan Kuljanin, Radha L Kalekar, Annan Yang, Shuning He, Jinhua Wang, Raymond W S Ng, Rita Sulahian, Lianbo Li, Emily J Poulin, Ling Huang, Jost Koren, Nora Dieguez-Martinez, Sergio Espinosa, Zhiyang Zeng, Cesear R Corona, James D Vasta, Ryoma Ohi, Taebo Sim, Nam Doo Kim, Wayne Harshbarger, Jose M Lizcano, Matthew B Robers, Senthil Muthaswamy, Charles Y Lin, A Thomas Look, Kevin M Haigis, Joseph D Mancias, Brian M Wolpin, Andrew J Aguirre, William C Hahn, Kenneth D Westover, Nathanael S Gray
Faculty, Staff and Students Publications
Doublecortin like kinase 1 (DCLK1) is an understudied kinase that is upregulated in a wide range of cancers, including pancreatic ductal adenocarcinoma (PDAC). However, little is known about its potential as a therapeutic target. We used chemoproteomic profiling and structure-based design to develop a selective, in vivo-compatible chemical probe of the DCLK1 kinase domain, DCLK1-IN-1. We demonstrate activity of DCLK1-IN-1 against clinically relevant patient-derived PDAC organoid models and use a combination of RNA-sequencing, proteomics and phosphoproteomics analysis to reveal that DCLK1 inhibition modulates proteins and pathways associated with cell motility in this context. DCLK1-IN-1 will serve as a versatile tool …