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Articles 4321 - 4350 of 7774
Full-Text Articles in Medicine and Health Sciences
Animal Models And Their Role In Imaging-Assisted Co-Clinical Trials, Donna M Peehl, Cristian T Badea, Thomas L Chenevert, Heike E Daldrup-Link, Li Ding, Lacey E Dobrolecki, A Mcgarry Houghton, Paul E Kinahan, John Kurhanewicz, Michael T Lewis, Shunqiang Li, Gary D Luker, Cynthia X Ma, H Charles Manning, Yvonne M Mowery, Peter J O'Dwyer, Robia G Pautler, Mark A Rosen, Raheleh Roudi, Brian D Ross, Kooresh I Shoghi, Renuka Sriram, Moshe Talpaz, Richard L Wahl, Rong Zhou
Animal Models And Their Role In Imaging-Assisted Co-Clinical Trials, Donna M Peehl, Cristian T Badea, Thomas L Chenevert, Heike E Daldrup-Link, Li Ding, Lacey E Dobrolecki, A Mcgarry Houghton, Paul E Kinahan, John Kurhanewicz, Michael T Lewis, Shunqiang Li, Gary D Luker, Cynthia X Ma, H Charles Manning, Yvonne M Mowery, Peter J O'Dwyer, Robia G Pautler, Mark A Rosen, Raheleh Roudi, Brian D Ross, Kooresh I Shoghi, Renuka Sriram, Moshe Talpaz, Richard L Wahl, Rong Zhou
Faculty, Staff and Student Publications
The availability of high-fidelity animal models for oncology research has grown enormously in recent years, enabling preclinical studies relevant to prevention, diagnosis, and treatment of cancer to be undertaken. This has led to increased opportunities to conduct co-clinical trials, which are studies on patients that are carried out parallel to or sequentially with animal models of cancer that mirror the biology of the patients' tumors. Patient-derived xenografts (PDX) and genetically engineered mouse models (GEMM) are considered to be the models that best represent human disease and have high translational value. Notably, one element of co-clinical trials that still needs significant …
The Alpha7 Integrin Subunit In Astrocytes Promotes Endothelial Blood-Brain Barrier Integrity, Zhihua Chen, Jack R Kelly, John E Morales, Raymond C Sun, Arpan De, Dean J Burkin, Joseph H Mccarty
The Alpha7 Integrin Subunit In Astrocytes Promotes Endothelial Blood-Brain Barrier Integrity, Zhihua Chen, Jack R Kelly, John E Morales, Raymond C Sun, Arpan De, Dean J Burkin, Joseph H Mccarty
Faculty, Staff and Student Publications
The blood-brain barrier (BBB) is a vascular endothelial cell boundary that partitions the circulation from the central nervous system to promote normal brain health. We have a limited understanding of how the BBB is formed during development and maintained in adulthood. We used quantitative transcriptional profiling to investigate whether specific adhesion molecules are involved in BBB functions, with an emphasis on understanding how astrocytes interact with endothelial cells. Our results reveal a striking enrichment of multiple genes encoding laminin subunits as well as the laminin receptor gene Itga7, which encodes the alpha7 integrin subunit, in astrocytes. Genetic ablation of Itga7 …
Generation Of Periventricular Reactive Astrocytes Overexpressing Aquaporin 4 Is Stimulated By Mesenchymal Stem Cell Therapy, María García-Bonilla, Kirill Shumilov, James P Mcallister 2nd, David D Limbrick Jr., Et Al.
Generation Of Periventricular Reactive Astrocytes Overexpressing Aquaporin 4 Is Stimulated By Mesenchymal Stem Cell Therapy, María García-Bonilla, Kirill Shumilov, James P Mcallister 2nd, David D Limbrick Jr., Et Al.
2020-Current year OA Pubs
Aquaporin-4 (AQP4) plays a crucial role in brain water circulation and is considered a therapeutic target in hydrocephalus. Congenital hydrocephalus is associated with a reaction of astrocytes in the periventricular white matter both in experimental models and human cases. A previous report showed that bone marrow-derived mesenchymal stem cells (BM-MSCs) transplanted into the lateral ventricles of hyh mice exhibiting severe congenital hydrocephalus are attracted by the periventricular astrocyte reaction, and the cerebral tissue displays recovery. The present investigation aimed to test the effect of BM-MSC treatment on astrocyte reaction formation. BM-MSCs were injected into the lateral ventricles of four-day-old hyh …
Evolutionarily Conserved Regulators Of Tau Identify Targets For New Therapies, Jiyoen Kim, Maria De Haro, Ismael Al-Ramahi, Lorena Laura Garaicoechea, Hyun-Hwan Jeong, Jun Young Sonn, Bakhos Tadros, Zhandong Liu, Juan Botas, Huda Yahya Zoghbi
Evolutionarily Conserved Regulators Of Tau Identify Targets For New Therapies, Jiyoen Kim, Maria De Haro, Ismael Al-Ramahi, Lorena Laura Garaicoechea, Hyun-Hwan Jeong, Jun Young Sonn, Bakhos Tadros, Zhandong Liu, Juan Botas, Huda Yahya Zoghbi
Duncan NRI Faculty and Staff Publications
Tauopathies are neurodegenerative diseases that involve the pathological accumulation of tau proteins; in this family are Alzheimer disease, corticobasal degeneration, and chronic traumatic encephalopathy, among others. Hypothesizing that reducing this accumulation could mitigate pathogenesis, we performed a cross-species genetic screen targeting 6,600 potentially druggable genes in human cells and Drosophila. We found and validated 83 hits in cells and further validated 11 hits in the mouse brain. Three of these hits (USP7, RNF130, and RNF149) converge on the C terminus of Hsc70-interacting protein (CHIP) to regulate tau levels, highlighting the role of CHIP in maintaining tau proteostasis in the brain. …
Glut1 Is Redundant In Hypoxic And Glycolytic Nucleus Pulposus Cells Of The Intervertebral Disc, Shira N. Johnston, Elizabeth S. Silagi, Vedavathi Madhu, Duc H. Nguyen, Irving M. Shapiro, Makarand V. Risbud
Glut1 Is Redundant In Hypoxic And Glycolytic Nucleus Pulposus Cells Of The Intervertebral Disc, Shira N. Johnston, Elizabeth S. Silagi, Vedavathi Madhu, Duc H. Nguyen, Irving M. Shapiro, Makarand V. Risbud
Department of Orthopaedic Surgery Faculty Papers
Glycolysis is central to homeostasis of nucleus pulposus (NP) cells in the avascular intervertebral disc. Since the glucose transporter, GLUT1, is a highly enriched phenotypic marker of NP cells, we hypothesized that it is vital for the development and postnatal maintenance of the disc. Surprisingly, primary NP cells treated with 2 well-characterized GLUT1 inhibitors maintained normal rates of glycolysis and ATP production, indicating intrinsic compensatory mechanisms. We showed in vitro that NP cells mitigated GLUT1 loss by rewiring glucose import through GLUT3. Of note, we demonstrated that substrates, such as glutamine and palmitate, did not compensate for glucose restriction resulting …
Noninvasive Electromyometrial Imaging Of Human Uterine Maturation During Term Labor, Hui Wang, Zichao Wen, Wenjie Wu, Zhexian Sun, Zulfia Kisrieva-Ware, Yiqi Lin, Sicheng Wang, Hansong Gao, Haonan Xu, Peinan Zhao, Qing Wang, Alan L Schwartz, Phillip Cuculich, Yong Wang, Et Al.
Noninvasive Electromyometrial Imaging Of Human Uterine Maturation During Term Labor, Hui Wang, Zichao Wen, Wenjie Wu, Zhexian Sun, Zulfia Kisrieva-Ware, Yiqi Lin, Sicheng Wang, Hansong Gao, Haonan Xu, Peinan Zhao, Qing Wang, Alan L Schwartz, Phillip Cuculich, Yong Wang, Et Al.
2020-Current year OA Pubs
Electromyometrial imaging (EMMI) was recently developed to image the three-dimensional (3D) uterine electrical activation during contractions noninvasively and accurately in sheep. Herein we describe the development and application of a human EMMI system to image and evaluate 3D uterine electrical activation patterns at high spatial and temporal resolution during human term labor. We demonstrate the successful integration of the human EMMI system during subjects' clinical visits to generate noninvasively the uterine surface electrical potential maps, electrograms, and activation sequence through an inverse solution using up to 192 electrodes distributed around the abdomen surface. Quantitative indices, including the uterine activation curve, …
Acute Acat1/Soat1 Blockade Increases Mam Cholesterol And Strengthens Er-Mitochondria Connectivity., Taylor C Harned, Radu V Stan, Ze Cao, Rajarshi Chakrabarti, Henry N Higgs, Catherine C Y Chang, Ta Yuan Chang
Acute Acat1/Soat1 Blockade Increases Mam Cholesterol And Strengthens Er-Mitochondria Connectivity., Taylor C Harned, Radu V Stan, Ze Cao, Rajarshi Chakrabarti, Henry N Higgs, Catherine C Y Chang, Ta Yuan Chang
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Cholesterol is a key component of all mammalian cell membranes. Disruptions in cholesterol metabolism have been observed in the context of various diseases, including neurodegenerative disorders such as Alzheimer's disease (AD). The genetic and pharmacological blockade of acyl-CoA:cholesterol acyltransferase 1/sterol O-acyltransferase 1 (ACAT1/SOAT1), a cholesterol storage enzyme found on the endoplasmic reticulum (ER) and enriched at the mitochondria-associated ER membrane (MAM), has been shown to reduce amyloid pathology and rescue cognitive deficits in mouse models of AD. Additionally, blocking ACAT1/SOAT1 activity stimulates autophagy and lysosomal biogenesis; however, the exact molecular connection between the ACAT1/SOAT1 blockade and these observed benefits remain …
Tsks Localizes To Nuage In Spermatids And Regulates Cytoplasmic Elimination During Spermiation, Keisuke Shimada, Soojin Park, Seiya Oura, Taichi Noda, Akane Morohoshi, Martin M Matzuk, Masahito Ikawa
Tsks Localizes To Nuage In Spermatids And Regulates Cytoplasmic Elimination During Spermiation, Keisuke Shimada, Soojin Park, Seiya Oura, Taichi Noda, Akane Morohoshi, Martin M Matzuk, Masahito Ikawa
Faculty, Staff and Students Publications
Spermatozoa have a streamlined shape to swim through the oviduct to fertilize oocytes. To become svelte spermatozoa, spermatid cytoplasm must be eliminated in several steps including sperm release, which is part of spermiation. Although this process has been well observed, the molecular mechanisms that underlie it remain unclear. In male germ cells, there are membraneless organelles called nuage, which are observed by electron microscopy in various forms of dense material. Reticulated body (RB) and chromatoid body remnant (CR) are two types of nuage in spermatids, but the functions of both are unknown. Using CRISPR/Cas9 technology, we deleted the entire coding …
In Vivo Functional Characterization Of Egfr Variants Identifies Novel Drivers Of Glioblastoma, Kwanha Yu, Kathleen Kong, Brittney Lozzi, Estefania Luna-Figueroa, Alexis Cervantes, Rachel Curry, Carrie A Mohila, Ganesh Rao, Ali Jalali, Gordon B Mills, Kenneth L Scott, Benjamin Deneen
In Vivo Functional Characterization Of Egfr Variants Identifies Novel Drivers Of Glioblastoma, Kwanha Yu, Kathleen Kong, Brittney Lozzi, Estefania Luna-Figueroa, Alexis Cervantes, Rachel Curry, Carrie A Mohila, Ganesh Rao, Ali Jalali, Gordon B Mills, Kenneth L Scott, Benjamin Deneen
Faculty, Staff and Students Publications
BACKGROUND: Glioblastoma is the most common and aggressive primary brain tumor. Large-scale sequencing initiatives have cataloged its mutational landscape in hopes of elucidating mechanisms driving this deadly disease. However, a major bottleneck in harnessing this data for new therapies is deciphering "driver" and "passenger" events amongst the vast volume of information.
METHODS: We utilized an autochthonous, in vivo screening approach to identify driver, EGFR variants. RNA-Seq identified unique molecular signatures of mouse gliomas across these variants, which only differ by a single amino acid change. In particular, we identified alterations to lipid metabolism, which we further validated through an unbiased …
Allopregnanolone Effects On Inhibition In Hippocampal Parvalbumin Interneurons, Xinguo Lu, Peter Lambert, Ann Benz, Charles F. Zorumski, Steven J. Mennerick
Allopregnanolone Effects On Inhibition In Hippocampal Parvalbumin Interneurons, Xinguo Lu, Peter Lambert, Ann Benz, Charles F. Zorumski, Steven J. Mennerick
2020-Current year OA Pubs
Allopregnanolone (AlloP) is a neurosteroid that potentiates ionotropic GABAergic (GABA
Hypomorphic Brca2 And Rad51c Double Mutant Mice Display Fanconi Anemia, Cancer And Polygenic Replication Stress, Karl-Heinz Tomaszowski, Sunetra Roy, Carolina Guerrero, Poojan Shukla, Caezaan Keshvani, Yue Chen, Martina Ott, Xiaogang Wu, Jianhua Zhang, Courtney D Dinardo, Detlev Schindler, Katharina Schlacher
Hypomorphic Brca2 And Rad51c Double Mutant Mice Display Fanconi Anemia, Cancer And Polygenic Replication Stress, Karl-Heinz Tomaszowski, Sunetra Roy, Carolina Guerrero, Poojan Shukla, Caezaan Keshvani, Yue Chen, Martina Ott, Xiaogang Wu, Jianhua Zhang, Courtney D Dinardo, Detlev Schindler, Katharina Schlacher
Faculty, Staff and Student Publications
The prototypic cancer-predisposition disease Fanconi Anemia (FA) is identified by biallelic mutations in any one of twenty-three FANC genes. Puzzlingly, inactivation of one Fanc gene alone in mice fails to faithfully model the pleiotropic human disease without additional external stress. Here we find that FA patients frequently display FANC co-mutations. Combining exemplary homozygous hypomorphic Brca2/Fancd1 and Rad51c/Fanco mutations in mice phenocopies human FA with bone marrow failure, rapid death by cancer, cellular cancer-drug hypersensitivity and severe replication instability. These grave phenotypes contrast the unremarkable phenotypes seen in mice with single gene-function inactivation, revealing an unexpected synergism between Fanc mutations. Beyond …
Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais
Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais
Faculty, Staff and Students Publications
The regenerative potential of the endometrium is attributed to endometrial stem cells; however, the signaling pathways controlling its regenerative potential remain obscure. In this study, genetic mouse models and endometrial organoids are used to demonstrate that SMAD2/3 signaling controls endometrial regeneration and differentiation. Mice with conditional deletion of SMAD2/3 in the uterine epithelium using Lactoferrin-iCre develop endometrial hyperplasia at 12-weeks and metastatic uterine tumors by 9-months of age. Mechanistic studies in endometrial organoids determine that genetic or pharmacological inhibition of SMAD2/3 signaling disrupts organoid morphology, increases the glandular and secretory cell markers, FOXA2 and MUC1, and alters the genome-wide distribution …
Brain Injury Accelerates The Onset Of A Reversible Age-Related Microglial Phenotype Associated With Inflammatory Neurodegeneration, Rodney M Ritzel, Yun Li, Yun Jiao, Zhuofan Lei, Sarah J Doran, Junyun He, Rami A Shahror, Rebecca J Henry, Romeesa Khan, Chunfeng Tan, Shaolin Liu, Bogdan A Stoica, Alan I Faden, Gregory Szeto, David J Loane, Junfang Wu
Brain Injury Accelerates The Onset Of A Reversible Age-Related Microglial Phenotype Associated With Inflammatory Neurodegeneration, Rodney M Ritzel, Yun Li, Yun Jiao, Zhuofan Lei, Sarah J Doran, Junyun He, Rami A Shahror, Rebecca J Henry, Romeesa Khan, Chunfeng Tan, Shaolin Liu, Bogdan A Stoica, Alan I Faden, Gregory Szeto, David J Loane, Junfang Wu
Faculty, Staff and Student Publications
Lipofuscin is an autofluorescent (AF) pigment formed by lipids and misfolded proteins, which accumulates in postmitotic cells with advanced age. Here, we immunophenotyped microglia in the brain of old C57BL/6 mice (>18 months old) and demonstrate that in comparison to young mice, one-third of old microglia are AF, characterized by profound changes in lipid and iron content, phagocytic activity, and oxidative stress. Pharmacological depletion of microglia in old mice eliminated the AF microglia following repopulation and reversed microglial dysfunction. Age-related neurological deficits and neurodegeneration after traumatic brain injury (TBI) were attenuated in old mice lacking AF microglia. Furthermore, increased …
Towards A Biomarker For Acute Arterial Thrombosis Using Complete Blood Count And White Blood Cell Differential Parameters In Mice, Hee Jeong Jang, Dawid Schellingerhout, Jiwon Kim, Jinyong Chung, Dong-Eog Kim
Towards A Biomarker For Acute Arterial Thrombosis Using Complete Blood Count And White Blood Cell Differential Parameters In Mice, Hee Jeong Jang, Dawid Schellingerhout, Jiwon Kim, Jinyong Chung, Dong-Eog Kim
Faculty, Staff and Student Publications
There is no blood biomarker diagnostic of arterial thrombosis. We investigated if arterial thrombosis per se was associated with alterations in complete blood count (CBC) and white blood cell (WBC) differential count in mice. Twelve-week-old C57Bl/6 mice were used for FeCl3-mediated carotid thrombosis (n = 72), sham-operation (n = 79), or non-operation (n = 26). Monocyte count (/µL) at 30-min after thrombosis (median 160 [interquartile range 140-280]) was ~ 1.3-fold higher than at 30-min after sham-operation (120 [77.5-170]), and twofold higher than in non-operated mice (80 [47.5-92.5]). At day-1 and -4 post-thrombosis, compared with 30-min, monocyte count decreased by about …
Mechanism Of Kmt5b Haploinsufficiency In Neurodevelopment In Humans And Mice, Sarah E Sheppard, Marisa Andrews, Dustin Baldridge, John Constantino, Et Al.
Mechanism Of Kmt5b Haploinsufficiency In Neurodevelopment In Humans And Mice, Sarah E Sheppard, Marisa Andrews, Dustin Baldridge, John Constantino, Et Al.
2020-Current year OA Pubs
Pathogenic variants in
Neurofibromatosis Type 1-Dependent Alterations In Mouse Microglia Function Are Not Cell-Intrinsic, Francesca Logiacco, Laura Cathleen Grzegorzek, Elizabeth C Cordell, Oliver Popp, Philipp Mertins, David H Gutmann, Helmut Kettenmann, Marcus Semtner
Neurofibromatosis Type 1-Dependent Alterations In Mouse Microglia Function Are Not Cell-Intrinsic, Francesca Logiacco, Laura Cathleen Grzegorzek, Elizabeth C Cordell, Oliver Popp, Philipp Mertins, David H Gutmann, Helmut Kettenmann, Marcus Semtner
2020-Current year OA Pubs
We previously discovered a sex-by-genotype defect in microglia function using a heterozygous germline knockout mouse model of Neurofibromatosis type 1 (Nf1 ± mice), in which only microglia from male Nf1 ± mice exhibited defects in purinergic signaling. Herein, we leveraged an unbiased proteomic approach to demonstrate that male, but not female, heterozygous Nf1 ± microglia exhibit differences in protein expression, which largely reflect pathways involved in cytoskeletal organization. In keeping with these predicted defects in cytoskeletal function, only male Nf1 ± microglia had reduced process arborization and surveillance capacity. To determine whether these microglial defects were cell autonomous or reflected …
Role Of Klotho And Age/Rage-Wnt/Β-Catenin Signalling Pathway On The Development Of Cardiac And Renal Fibrosis In Diabetes, Beatriz Martín-Carro, Julia Martín-Vírgala, Sara Fernández-Villabrille, Alejandra Fernández-Fernández, Marcos Pérez-Basterrechea, Juan F Navarro-González, Javier Donate-Correa, Carmen Mora-Fernández, Adriana S Dusso, Natalia Carrillo-López, Sara Panizo, Manuel Naves-Díaz, José L Fernández-Martín, Jorge B Cannata-Andía, Cristina Alonso-Montes
Role Of Klotho And Age/Rage-Wnt/Β-Catenin Signalling Pathway On The Development Of Cardiac And Renal Fibrosis In Diabetes, Beatriz Martín-Carro, Julia Martín-Vírgala, Sara Fernández-Villabrille, Alejandra Fernández-Fernández, Marcos Pérez-Basterrechea, Juan F Navarro-González, Javier Donate-Correa, Carmen Mora-Fernández, Adriana S Dusso, Natalia Carrillo-López, Sara Panizo, Manuel Naves-Díaz, José L Fernández-Martín, Jorge B Cannata-Andía, Cristina Alonso-Montes
2020-Current year OA Pubs
Fibrosis plays an important role in the pathogenesis of long-term diabetic complications and contributes to the development of cardiac and renal dysfunction. The aim of this experimental study, performed in a long-term rat model, which resembles type 1 diabetes mellitus, was to investigate the role of soluble Klotho (sKlotho), advanced glycation end products (AGEs)/receptor for AGEs (RAGE), fibrotic Wnt/β-catenin pathway, and pro-fibrotic pathways in kidney and heart. Diabetes was induced by streptozotocin. Glycaemia was maintained by insulin administration for 24 weeks. Serum and urine sKlotho, AGEs, soluble RAGE (sRAGE) and biochemical markers were studied. The levels of Klotho, RAGEs, ADAM10, …
Engineering T Cells To Suppress Acute Gvhd And Leukemia Relapse After Allogeneic Hematopoietic Stem Cell Transplantation, Feiyan Mo, Norihiro Watanabe, Kayleigh I Omdahl, Phillip M Burkhardt, Xiaoyun Ding, Eiko Hayase, Angela Panoskaltsis-Mortari, Robert R Jenq, Helen E Heslop, Leslie S Kean, Malcolm K Brenner, Victor Tkachev, Maksim Mamonkin
Engineering T Cells To Suppress Acute Gvhd And Leukemia Relapse After Allogeneic Hematopoietic Stem Cell Transplantation, Feiyan Mo, Norihiro Watanabe, Kayleigh I Omdahl, Phillip M Burkhardt, Xiaoyun Ding, Eiko Hayase, Angela Panoskaltsis-Mortari, Robert R Jenq, Helen E Heslop, Leslie S Kean, Malcolm K Brenner, Victor Tkachev, Maksim Mamonkin
Faculty, Staff and Student Publications
Acute graft-versus-host disease (aGVHD) limits the therapeutic benefit of allogeneic hematopoietic stem cell transplantation (allo-HSCT) and requires immunosuppressive prophylaxis that compromises antitumor and antipathogen immunity. OX40 is a costimulatory receptor upregulated on circulating T cells in aGVHD and plays a central role in driving the expansion of alloreactive T cells. Here, we show that OX40 is also upregulated on T cells infiltrating GVHD target organs in a rhesus macaque model, supporting the hypothesis that targeted ablation of OX40+ T cells will mitigate GVHD pathogenesis. We thus created an OX40-specific cytotoxic receptor that, when expressed on human T cells, enables selective …
Young Astrocytic Mitochondria Attenuate The Elevated Level Of Ccl11 In The Aged Mice, Contributing To Cognitive Function Improvement, Ryosuke Tashiro, Dan Ozaki, Jesus Bautista-Garrido, Guanghua Sun, Lidiya Obertas, Alexis S Mobley, Gab Seok Kim, Jaroslaw Aronowski, Joo Eun Jung
Young Astrocytic Mitochondria Attenuate The Elevated Level Of Ccl11 In The Aged Mice, Contributing To Cognitive Function Improvement, Ryosuke Tashiro, Dan Ozaki, Jesus Bautista-Garrido, Guanghua Sun, Lidiya Obertas, Alexis S Mobley, Gab Seok Kim, Jaroslaw Aronowski, Joo Eun Jung
Faculty, Staff and Student Publications
Aging drives cognitive decline, and mitochondrial dysfunction is a hallmark of age-induced neurodegeneration. Recently, we demonstrated that astrocytes secrete functional mitochondria (Mt), which help adjacent cells to resist damage and promote repair after neurological injuries. However, the relationship between age-dependent changes in astrocytic Mt function and cognitive decline remains poorly understood. Here, we established that aged astrocytes secret less functional Mt compared to young astrocytes. We found the aging factor C-C motif chemokine 11 (CCL11) is elevated in the hippocampus of aged mice, and that its level is reduced upon systemic administration of young Mt, in vivo. Aged mice receiving …
Adipose-Targeted Swell1 Deletion Exacerbates Obesity- And Age-Related Nonalcoholic Fatty Liver Disease, Susheel K. Gunasekar, John Heebink, Danielle H Carpenter, Ashutosh Kumar, Litao Xie, Haixia Zhang, Joel D. Schilling, Rajan Sah
Adipose-Targeted Swell1 Deletion Exacerbates Obesity- And Age-Related Nonalcoholic Fatty Liver Disease, Susheel K. Gunasekar, John Heebink, Danielle H Carpenter, Ashutosh Kumar, Litao Xie, Haixia Zhang, Joel D. Schilling, Rajan Sah
2020-Current year OA Pubs
Healthy expansion of adipose tissue is critical for the maintenance of metabolic health, providing an optimized reservoir for energy storage in the form of triacylglycerol-rich lipoproteins. Dysfunctional adipocytes that are unable to efficiently store lipid can result in lipodystrophy and contribute to nonalcoholic fatty liver disease (NAFLD) and metabolic syndrome. Leucine-rich repeat containing protein 8a/SWELL1 functionally encodes the volume-regulated anion channel complex in adipocytes, is induced in early obesity, and is required for normal adipocyte expansion during high-fat feeding. Adipose-specific SWELL1 ablation (Adipo KO) leads to insulin resistance and hyperglycemia during caloric excess, both of which are associated with NAFLD. …
Neuronal Sirt3 Deletion Predisposes To Female-Specific Alterations In Cellular Metabolism, Memory, And Network Excitability, Jennifer N Pearson-Smith, Ruth Fulton, Christopher Q Huynh, Anna G Figueroa, Gia B Huynh, Li-Ping Liang, Lindsey B Gano, Cole R Michel, Nichole Reisdorph, Richard Reisdorph, Kristofer S Fritz, Eric Verdin, Manisha Patel
Neuronal Sirt3 Deletion Predisposes To Female-Specific Alterations In Cellular Metabolism, Memory, And Network Excitability, Jennifer N Pearson-Smith, Ruth Fulton, Christopher Q Huynh, Anna G Figueroa, Gia B Huynh, Li-Ping Liang, Lindsey B Gano, Cole R Michel, Nichole Reisdorph, Richard Reisdorph, Kristofer S Fritz, Eric Verdin, Manisha Patel
Faculty, Staff and Students Publications
Mitochondrial dysfunction is an early event in the pathogenesis of neurologic disorders and aging. Sirtuin 3 (SIRT3) regulates mitochondrial function in response to the cellular environment through the reversible deacetylation of proteins involved in metabolism and reactive oxygen species detoxification. As the primary mitochondrial deacetylase, germline, or peripheral tissue-specific deletion of SIRT3 produces mitochondrial hyperacetylation and the accelerated development of age-related diseases. Given the unique metabolic demands of neurons, the role of SIRT3 in the brain is only beginning to emerge. Using mass spectrometry-based acetylomics, high-resolution respirometry, video-EEG, and cognition testing, we report targeted deletion of SIRT3 from select neurons …
Multifaceted Role For P53 In Pancreatic Cancer Suppression, Stephano S Mello, Brittany M Flowers, Pawel K Mazur, James J Lee, Fabian Müller, Sarah K Denny, Sofia Ferreira, Kathryn Hanson, Seung K Kim, William J Greenleaf, Laura D Wood, Laura D Attardi
Multifaceted Role For P53 In Pancreatic Cancer Suppression, Stephano S Mello, Brittany M Flowers, Pawel K Mazur, James J Lee, Fabian Müller, Sarah K Denny, Sofia Ferreira, Kathryn Hanson, Seung K Kim, William J Greenleaf, Laura D Wood, Laura D Attardi
Faculty, Staff and Student Publications
The vast majority of human pancreatic ductal adenocarcinomas (PDACs) harbor TP53 mutations, underscoring p53's critical role in PDAC suppression. PDAC can arise when pancreatic acinar cells undergo acinar-to-ductal metaplasia (ADM), giving rise to premalignant pancreatic intraepithelial neoplasias (PanINs), which finally progress to PDAC. The occurrence of TP53 mutations in late-stage PanINs has led to the idea that p53 acts to suppress malignant transformation of PanINs to PDAC. However, the cellular basis for p53 action during PDAC development has not been explored in detail. Here, we leverage a hyperactive p53 variant-p5353,54-which we previously showed is a more robust PDAC suppressor than …
A Comprehensive And Integrative Approach To Mecp2 Disease Transcriptomics, Alexander J Trostle, Lucian Li, Seon-Young Kim, Jiasheng Wang, Rami Al-Ouran, Hari Krishna Yalamanchili, Zhandong Liu, Ying-Wooi Wan
A Comprehensive And Integrative Approach To Mecp2 Disease Transcriptomics, Alexander J Trostle, Lucian Li, Seon-Young Kim, Jiasheng Wang, Rami Al-Ouran, Hari Krishna Yalamanchili, Zhandong Liu, Ying-Wooi Wan
Faculty, Staff and Students Publications
Mutations in MeCP2 result in a crippling neurological disease, but we lack a lucid picture of MeCP2's molecular role. Individual transcriptomic studies yield inconsistent differentially expressed genes. To overcome these issues, we demonstrate a methodology to analyze all modern public data. We obtained relevant raw public transcriptomic data from GEO and ENA, then homogeneously processed it (QC, alignment to reference, differential expression analysis). We present a web portal to interactively access the mouse data, and we discovered a commonly perturbed core set of genes that transcends the limitations of any individual study. We then found functionally distinct, consistently up- and …
The Fly Homolog Of Supt16h, A Gene Associated With Neurodevelopmental Disorders, Is Required In A Cell-Autonomous Fashion For Cell Survival, Mengqi Ma, Xi Zhang, Yiming Zheng, Shenzhao Lu, Xueyang Pan, Xiao Mao, Hongling Pan, Hyung-Lok Chung, Hua Wang, Hong Guo, Hugo J Bellen
The Fly Homolog Of Supt16h, A Gene Associated With Neurodevelopmental Disorders, Is Required In A Cell-Autonomous Fashion For Cell Survival, Mengqi Ma, Xi Zhang, Yiming Zheng, Shenzhao Lu, Xueyang Pan, Xiao Mao, Hongling Pan, Hyung-Lok Chung, Hua Wang, Hong Guo, Hugo J Bellen
Faculty, Staff and Students Publications
SUPT16H encodes the large subunit of the FAcilitate Chromatin Transcription (FACT) complex, which functions as a nucleosome organizer during transcription. We identified two individuals from unrelated families carrying de novo missense variants in SUPT16H. The probands exhibit global developmental delay, intellectual disability, epilepsy, facial dysmorphism and brain structural abnormalities. We used Drosophila to characterize two variants: p.T171I and p.G808R. Loss of the fly ortholog, dre4, causes lethality at an early developmental stage. RNAi-mediated knockdown of dre4 in either glia or neurons causes severely reduced eclosion and longevity. Tissue-specific knockdown of dre4 in the eye or wing leads to the loss …
Heterochronic Parabiosis Causes Dacryoadenitis In Young Lacrimal Glands, Kaitlin K Scholand, Alexis F Mack, Gary U Guzman, Michael E Maniskas, Ritu Sampige, Gowthaman Govindarajan, Louise D Mccullough, Cintia S De Paiva
Heterochronic Parabiosis Causes Dacryoadenitis In Young Lacrimal Glands, Kaitlin K Scholand, Alexis F Mack, Gary U Guzman, Michael E Maniskas, Ritu Sampige, Gowthaman Govindarajan, Louise D Mccullough, Cintia S De Paiva
Faculty, Staff and Student Publications
Aging is associated with inflammation and oxidative stress in the lacrimal gland (LG). We investigated if heterochronic parabiosis of mice could modulate age-related LG alterations. In both males and females, there were significant increases in total immune infiltration in isochronic aged LGs compared to that in isochronic young LGs. Male heterochronic young LGs were significantly more infiltrated compared to male isochronic young LGs. While both females and males had significant increases in inflammatory and B-cell-related transcripts in isochronic and heterochronic aged LGs compared to levels isochronic and heterochronic young LGs, females had a greater fold expression of some of these …
Differences In Startle And Prepulse Inhibition In Contactin-Associated Protein-Like 2 Knock-Out Rats Are Associated With Sex-Specific Alterations In Brainstem Neural Activity, Alice Zheng, Kaela E Scott, Ashley L Schormans, Rajkamalpreet Mann, Brian L Allman, Susanne Schmid
Differences In Startle And Prepulse Inhibition In Contactin-Associated Protein-Like 2 Knock-Out Rats Are Associated With Sex-Specific Alterations In Brainstem Neural Activity, Alice Zheng, Kaela E Scott, Ashley L Schormans, Rajkamalpreet Mann, Brian L Allman, Susanne Schmid
Anatomy and Cell Biology Publications
The contactin-associated protein-like 2 (CNTNAP2) gene encodes for the CASPR2 protein, which plays an essential role in neurodevelopment. Mutations in CNTNAP2 are associated with neurodevelopmental disorders, including autism spectrum disorder and schizophrenia. Rats with a loss of function mutation in the Cntnap2 gene show increased acoustic startle response (ASR) and decreased prepulse inhibition (PPI). The neural basis of this altered auditory processing in Cntnap2 knock-out rats is currently unknown. Auditory brainstem recordings previously revealed no differences between the genotypes. The next step is to investigate brainstem structures outside of the primary auditory pathway that mediate ASR and PPI, which are …
Resolution Of Hepatic Fibrosis After Zfn-Mediated Gene Editing In The Piz Mouse Model Of Human Α1-Antitrypsin Deficiency, Yanfeng Li, Chandan Guha, Patrik Asp, Xia Wang, Tatyana L. Tchaikovskya, Kenneth Kim, Matthew Mendel, Gregory J. Cost, David H. Perlmutter, Namita Roy-Chowdhury, Ira J. Fox, Anthony Conway, Jayanta Roy-Chowdhury
Resolution Of Hepatic Fibrosis After Zfn-Mediated Gene Editing In The Piz Mouse Model Of Human Α1-Antitrypsin Deficiency, Yanfeng Li, Chandan Guha, Patrik Asp, Xia Wang, Tatyana L. Tchaikovskya, Kenneth Kim, Matthew Mendel, Gregory J. Cost, David H. Perlmutter, Namita Roy-Chowdhury, Ira J. Fox, Anthony Conway, Jayanta Roy-Chowdhury
2020-Current year OA Pubs
BACKGROUND: α1-antitrypsin deficiency is most commonly caused by a mutation in exon-7 of SERPINA1 (SA1-ATZ), resulting in hepatocellular accumulation of a misfolded variant (ATZ). Human SA1-ATZ-transgenic (PiZ) mice exhibit hepatocellular ATZ accumulation and liver fibrosis. We hypothesized that disrupting the SA1-ATZ transgene in PiZ mice by in vivo genome editing would confer a proliferative advantage to the genome-edited hepatocytes, enabling them to repopulate the liver.
METHODS: To create a targeted DNA break in exon-7 of the SA1-ATZ transgene, we generated 2 recombinant adeno-associated viruses (rAAV) expressing a zinc-finger nuclease pair (rAAV-ZFN), and another rAAV for gene correction by targeted insertion …
Targeted Deletion Of Fgf9 In Tendon Disrupts Mineralization Of The Developing Enthesis, Elahe Ganji, Connor Leek, William Duncan, Debabrata Patra, David M Ornitz, Megan L Killian
Targeted Deletion Of Fgf9 In Tendon Disrupts Mineralization Of The Developing Enthesis, Elahe Ganji, Connor Leek, William Duncan, Debabrata Patra, David M Ornitz, Megan L Killian
2020-Current year OA Pubs
The enthesis is a transitional tissue between tendon and bone that matures postnatally. The development and maturation of the enthesis involve cellular processes likened to an arrested growth plate. In this study, we explored the role of fibroblast growth factor 9 (Fgf9), a known regulator of chondrogenesis and vascularization during bone development, on the structure and function of the postnatal enthesis. First, we confirmed spatial expression of Fgf9 in the tendon and enthesis using in situ hybridization. We then used Cre-lox recombinase to conditionally knockout Fgf9 in mouse tendon and enthesis (Scx-Cre) and characterized enthesis morphology as well as mechanical …
Aging And Obesity Prime The Methylome And Transcriptome Of Adipose Stem Cells For Disease And Dysfunction, Shaojun Xie, Sulbha Choudhari, Chia-Lung Wu, Karen Abramson, David Corcoran, Simon G Gregory, Jyothi Thimmapuram, Farshid Guilak, Dianne Little
Aging And Obesity Prime The Methylome And Transcriptome Of Adipose Stem Cells For Disease And Dysfunction, Shaojun Xie, Sulbha Choudhari, Chia-Lung Wu, Karen Abramson, David Corcoran, Simon G Gregory, Jyothi Thimmapuram, Farshid Guilak, Dianne Little
2020-Current year OA Pubs
The epigenome of stem cells occupies a critical interface between genes and environment, serving to regulate expression through modification by intrinsic and extrinsic factors. We hypothesized that aging and obesity, which represent major risk factors for a variety of diseases, synergistically modify the epigenome of adult adipose stem cells (ASCs). Using integrated RNA- and targeted bisulfite-sequencing in murine ASCs from lean and obese mice at 5- and 12-months of age, we identified global DNA hypomethylation with either aging or obesity, and a synergistic effect of aging combined with obesity. The transcriptome of ASCs in lean mice was relatively stable to …
Tnk2/Ack1-Mediated Phosphorylation Of Atp5f1a (Atp Synthase F1 Subunit Alpha) Selectively Augments Survival Of Prostate Cancer While Engendering Mitochondrial Vulnerability, Surbhi Chouhan, Mithila Sawant, Cody Weimholt, Jingqin Luo, Robert W Sprung, Mailyn Terrado, David M Mueller, H Shelton Earp, Nupam P. Mahajan
Tnk2/Ack1-Mediated Phosphorylation Of Atp5f1a (Atp Synthase F1 Subunit Alpha) Selectively Augments Survival Of Prostate Cancer While Engendering Mitochondrial Vulnerability, Surbhi Chouhan, Mithila Sawant, Cody Weimholt, Jingqin Luo, Robert W Sprung, Mailyn Terrado, David M Mueller, H Shelton Earp, Nupam P. Mahajan
2020-Current year OA Pubs
The challenge of rapid macromolecular synthesis enforces the energy-hungry cancer cell mitochondria to switch their metabolic phenotypes, accomplished by activation of oncogenic tyrosine kinases. Precisely how kinase activity is directly exploited by cancer cell mitochondria to meet high-energy demand, remains to be deciphered. Here we show that a non-receptor tyrosine kinase, TNK2/ACK1 (tyrosine kinase non receptor 2), phosphorylated ATP5F1A (ATP synthase F1 subunit alpha) at Tyr243 and Tyr246 (Tyr200 and 203 in the mature protein, respectively) that not only increased the stability of complex V, but also increased mitochondrial energy output in cancer cells. Further, phospho-ATP5F1A (p-Y-ATP5F1A) prevented its binding …