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Articles 1831 - 1860 of 5130
Full-Text Articles in Medicine and Health Sciences
Loss Of Ovol2 In Triple-Negative Breast Cancer Promotes Fatty Acid Oxidation Fueling Stemness Characteristics, Ruipeng Lu, Jingjing Hong, Tong Fu, Yu Zhu, Ruiqi Tong, Di Ai, Shuai Wang, Qingsong Huang, Ceshi Chen, Zhiming Zhang, Rui Zhang, Huiling Guo, Boan Li
Loss Of Ovol2 In Triple-Negative Breast Cancer Promotes Fatty Acid Oxidation Fueling Stemness Characteristics, Ruipeng Lu, Jingjing Hong, Tong Fu, Yu Zhu, Ruiqi Tong, Di Ai, Shuai Wang, Qingsong Huang, Ceshi Chen, Zhiming Zhang, Rui Zhang, Huiling Guo, Boan Li
Faculty, Staff and Student Publications
Triple-negative breast cancer (TNBC), the most aggressive subtype of breast cancer, has a poor prognosis and lacks effective treatment strategies. Here, the study discovered that TNBC shows a decreased expression of epithelial transcription factor ovo-like 2 (OVOL2). The loss of OVOL2 promotes fatty acid oxidation (FAO), providing additional energy and NADPH to sustain stemness characteristics, including sphere-forming capacity and tumor initiation. Mechanistically, OVOL2 not only suppressed STAT3 phosphorylation by directly inhibiting JAK transcription but also recruited histone deacetylase 1 (HDAC1) to STAT3, thereby reducing the transcriptional activation of downstream genes carnitine palmitoyltransferase1 (CPT1A and CPT1B). PyVT-Ovol2 knockout mice develop a …
Serum Extracellular Vesicle Protein Profiling For Prediction Of Corneal Transplant Rejection, Hyun Ju Lee, Eun-Hye Bae, Jong Min Choi, Hyemee Kim, Hyeon Ji Kim, Heather Barreda, Sung Yun Jung, Joo Youn Oh, Ryang Hwa Lee
Serum Extracellular Vesicle Protein Profiling For Prediction Of Corneal Transplant Rejection, Hyun Ju Lee, Eun-Hye Bae, Jong Min Choi, Hyemee Kim, Hyeon Ji Kim, Heather Barreda, Sung Yun Jung, Joo Youn Oh, Ryang Hwa Lee
Faculty, Staff and Students Publications
Background: Corneal transplantation is the most common transplant procedure worldwide. Despite immune and angiogenic privilege of the cornea, 50% to 70% of corneal transplants fail in high-risk recipients, primarily because of immune rejection. Therefore, it is crucial to identify predictive biomarkers of rejection to improve transplant survival.
Methods: In search for predictive biomarkers, we performed proteomics analysis of serum extracellular vesicles (EVs) in a fully major histocompatibility complex-mismatched (C57BL/6-to-BALB/c) murine corneal transplantation model, wherein 50% of transplants undergo rejection by day 28 following transplantation.
Results: Our time course study revealed a decrease in the number of serum EVs on day …
Endothelial-Specific Telomerase Inactivation Causes Telomere-Independent Cell Senescence And Multi-Organ Dysfunction Characteristic Of Aging, Zhanguo Gao, Rafael Bravo Santos, Joseph Rupert, Rachel Van Drunen, Yongmei Yu, Kristin Eckel-Mahan, Mikhail G Kolonin
Endothelial-Specific Telomerase Inactivation Causes Telomere-Independent Cell Senescence And Multi-Organ Dysfunction Characteristic Of Aging, Zhanguo Gao, Rafael Bravo Santos, Joseph Rupert, Rachel Van Drunen, Yongmei Yu, Kristin Eckel-Mahan, Mikhail G Kolonin
Faculty, Staff and Student Publications
It has remained unclear how aging of endothelial cells (EC) contributes to pathophysiology of individual organs. Cell senescence results in part from inactivation of telomerase (TERT). Here, we analyzed mice with Tert knockout specifically in EC. Tert loss in EC induced transcriptional changes indicative of senescence and tissue hypoxia in EC and in other cells. We demonstrate that EC-Tert-KO mice have leaky blood vessels. The blood-brain barrier of EC-Tert-KO mice is compromised, and their cognitive function is impaired. EC-Tert-KO mice display reduced muscle endurance and decreased expression of enzymes responsible for oxidative metabolism. Our data indicate that Tert-KO EC have …
Endothelial Knockdown Of The Tumor Suppressor, Wwox, Increases Inflammation In Ventilator-Induced Lung Injury, Zhenguo Zeng, Eltyeb Abdelwahid, Weiguo Chen, Christian Ascoli, Trinh Pham, Jeffrey R Jacobson, Steven M Dudek, Viswanathan Natarajan, C Marcelo Aldaz, Roberto F Machado, Sunit Singla
Endothelial Knockdown Of The Tumor Suppressor, Wwox, Increases Inflammation In Ventilator-Induced Lung Injury, Zhenguo Zeng, Eltyeb Abdelwahid, Weiguo Chen, Christian Ascoli, Trinh Pham, Jeffrey R Jacobson, Steven M Dudek, Viswanathan Natarajan, C Marcelo Aldaz, Roberto F Machado, Sunit Singla
Faculty, Staff and Student Publications
Chronic cigarette smoke exposure decreases lung expression of WWOX which is known to protect the endothelial barrier during infectious models of acute respiratory distress syndrome (ARDS). Proteomic analysis of WWOX-silenced endothelial cells (ECs) was done using tandem mass tag mass spectrometry (TMT-MS). WWOX-silenced ECs as well as those isolated from endothelial cell Wwox knockout (EC Wwox KO) mice were subjected to cyclic stretch (18% elongation, 0.5 Hz, 4 h). Cellular lysates and media supernatant were harvested for assays of cellular signaling, protein expression, and cytokine release. These were repeated with dual silencing of WWOX and zyxin. Control and …
Mesenchymal-Specific Alms1 Knockout In Mice Recapitulates Metabolic Features Of Alström Syndrome, Eleanor J Mckay, Ineke Luijten, Xiong Weng, Pablo B Martinez De Morentin, Elvira De Frutos González, Zhanguo Gao, Mikhail G Kolonin, Lora K Heisler, Robert K Semple
Mesenchymal-Specific Alms1 Knockout In Mice Recapitulates Metabolic Features Of Alström Syndrome, Eleanor J Mckay, Ineke Luijten, Xiong Weng, Pablo B Martinez De Morentin, Elvira De Frutos González, Zhanguo Gao, Mikhail G Kolonin, Lora K Heisler, Robert K Semple
Faculty, Staff and Student Publications
OBJECTIVE: Alström Syndrome (AS), caused by biallelic ALMS1 mutations, includes obesity with disproportionately severe insulin resistant diabetes, dyslipidemia, and fatty liver. Prior studies suggest that hyperphagia is accounted for by loss of ALMS1 function in hypothalamic neurones, whereas disproportionate metabolic complications may be due to impaired adipose tissue expandability. We tested this by comparing the metabolic effects of global and mesenchymal stem cell (MSC)-specific Alms1 knockout.
METHODS: Global Alms1 knockout (KO) mice were generated by crossing floxed Alms1 and CAG-Cre mice. A Pdgfrα-Cre driver was used to abrogate Alms1 function selectively in MSCs and their descendants, including preadipocytes. We combined …
Persistent ∆Fosb Expression Limits Recurrent Seizure Activity And Provides Neuroprotection In The Dentate Gyrus Of App Mice, Gabriel S Stephens, Jin Park, Andrew Eagle, Jason You, Manuel Silva-Pérez, Chia-Hsuan Fu, Sumin Choi, Corey P St Romain, Chiho Sugimoto, Shelly A Buffington, Yi Zheng, Mauro Costa-Mattioli, Yin Liu, A J Robison, Jeannie Chin
Persistent ∆Fosb Expression Limits Recurrent Seizure Activity And Provides Neuroprotection In The Dentate Gyrus Of App Mice, Gabriel S Stephens, Jin Park, Andrew Eagle, Jason You, Manuel Silva-Pérez, Chia-Hsuan Fu, Sumin Choi, Corey P St Romain, Chiho Sugimoto, Shelly A Buffington, Yi Zheng, Mauro Costa-Mattioli, Yin Liu, A J Robison, Jeannie Chin
Faculty, Staff and Student Publications
Recurrent seizures lead to accumulation of the activity-dependent transcription factor ∆FosB in hippocampal dentate granule cells in both mouse models of epilepsy and mouse models of Alzheimer's disease (AD), which is also associated with increased incidence of seizures. In patients with AD and related mouse models, the degree of ∆FosB accumulation corresponds with increasing severity of cognitive deficits. We previously found that ∆FosB impairs spatial memory in mice by epigenetically regulating expression of target genes such as calbindin that are involved in synaptic plasticity. However, the suppression of calbindin in conditions of neuronal hyperexcitability has been demonstrated to provide neuroprotection …
Anti-Α-Amino-3-Hydroxy-5-Methyl-4-Isoxazolepropionic Acid (Ampa) Receptor Antibody Encephalitis In An Immunosuppressed Patient With Myasthenia Gravis Post-Thymoma Treatment, Suyuan Tan, Heitor Frade, Kian S Abdul-Baki, Samantha De Gannes, Puneet Singh, Ernesto Lopez Valencia, Anand Kumar, Aimalohi Esechie, Chilvana Patel
Anti-Α-Amino-3-Hydroxy-5-Methyl-4-Isoxazolepropionic Acid (Ampa) Receptor Antibody Encephalitis In An Immunosuppressed Patient With Myasthenia Gravis Post-Thymoma Treatment, Suyuan Tan, Heitor Frade, Kian S Abdul-Baki, Samantha De Gannes, Puneet Singh, Ernesto Lopez Valencia, Anand Kumar, Aimalohi Esechie, Chilvana Patel
Faculty, Staff and Students Publications
Anti-α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor encephalitis is a rare form of autoimmune encephalitis. We report a case of a patient with myasthenia gravis post-thymoma treatment who presented with deteriorating mental status. She was found to have positive AMPA receptor titers in her cerebrospinal fluid and subsequently attained full recovery. Of the limited number of cases that were documented, we report the only case of a patient who was previously immunocompromised to develop the condition. Even though autoimmune encephalitis is an emerging condition, its early differentiation from other causes of encephalitis is crucial in the prognosis of the patient.
Single-Cell Lineage Capture Across Genomic Modalities With Celltag-Multi Reveals Fate-Specific Gene Regulatory Changes, Kunal Jindal, Mohd Tayyab Adil, Naoto Yamaguchi, Xue Yang, Helen C Wang, Kenji Kamimoto, Guillermo C Rivera-Gonzalez, Samantha A Morris
Single-Cell Lineage Capture Across Genomic Modalities With Celltag-Multi Reveals Fate-Specific Gene Regulatory Changes, Kunal Jindal, Mohd Tayyab Adil, Naoto Yamaguchi, Xue Yang, Helen C Wang, Kenji Kamimoto, Guillermo C Rivera-Gonzalez, Samantha A Morris
2020-Current year OA Pubs
Complex gene regulatory mechanisms underlie differentiation and reprogramming. Contemporary single-cell lineage-tracing (scLT) methods use expressed, heritable DNA barcodes to combine cell lineage readout with single-cell transcriptomics. However, reliance on transcriptional profiling limits adaptation to other single-cell assays. With CellTag-multi, we present an approach that enables direct capture of heritable random barcodes expressed as polyadenylated transcripts, in both single-cell RNA sequencing and single-cell Assay for Transposase Accessible Chromatin using sequencing assays, allowing for independent clonal tracking of transcriptional and epigenomic cell states. We validate CellTag-multi to characterize progenitor cell lineage priming during mouse hematopoiesis. Additionally, in direct reprogramming of fibroblasts to …
Kcnk1 Promotes Proliferation And Metastasis Of Breast Cancer Cells By Activating Lactate Dehydrogenase A (Ldha) And Up-Regulating H3k18 Lactylation, Xiangchan Hou, Jiawei Ouyang, Le Tang, Pan Wu, Xiangying Deng, Qijia Yan, Lei Shi, Songqing Fan, Chunmei Fan, Can Guo, Qianjin Liao, Yong Li, Wei Xiong, Guiyuan Li, Zhaoyang Zeng, Fuyan Wang
Kcnk1 Promotes Proliferation And Metastasis Of Breast Cancer Cells By Activating Lactate Dehydrogenase A (Ldha) And Up-Regulating H3k18 Lactylation, Xiangchan Hou, Jiawei Ouyang, Le Tang, Pan Wu, Xiangying Deng, Qijia Yan, Lei Shi, Songqing Fan, Chunmei Fan, Can Guo, Qianjin Liao, Yong Li, Wei Xiong, Guiyuan Li, Zhaoyang Zeng, Fuyan Wang
Faculty, Staff and Students Publications
Breast cancer is the most prevalent malignancy and the most significant contributor to mortality in female oncology patients. Potassium Two Pore Domain Channel Subfamily K Member 1 (KCNK1) is differentially expressed in a variety of tumors, but the mechanism of its function in breast cancer is unknown. In this study, we found for the first time that KCNK1 was significantly up-regulated in human breast cancer and was correlated with poor prognosis in breast cancer patients. KCNK1 promoted breast cancer proliferation, invasion, and metastasis in vitro and vivo. Further studies unexpectedly revealed that KCNK1 increased the glycolysis and lactate production in …
Individual Disruption Of 12 Testis-Enriched Genes Via The Crispr/Cas9 System Does Not Affect The Fertility Of Male Mice, Akira Suzuki, Norikazu Yabuta, Keisuke Shimada, Daisuke Mashiko, Keizo Tokuhiro, Yuki Oyama, Haruhiko Miyata, Thomas X Garcia, Martin M Matzuk, Masahito Ikawa
Individual Disruption Of 12 Testis-Enriched Genes Via The Crispr/Cas9 System Does Not Affect The Fertility Of Male Mice, Akira Suzuki, Norikazu Yabuta, Keisuke Shimada, Daisuke Mashiko, Keizo Tokuhiro, Yuki Oyama, Haruhiko Miyata, Thomas X Garcia, Martin M Matzuk, Masahito Ikawa
Faculty, Staff and Students Publications
More than 1200 genes have been shown in the database to be expressed predominantly in the mouse testes. Advances in genome editing technologies such as the CRISPR/Cas9 system have made it possible to create genetically engineered mice more rapidly and efficiently than with conventional methods, which can be utilized to screen genes essential for male fertility by knocking out testis-enriched genes. Finding such genes related to male fertility would not only help us understand the etiology of human infertility but also lead to the development of male contraceptives. In this study, we generated knockout mice for 12 genes (Acrv1, Adgrf3, …
Cadherin-11 Targeted Cell-Specific Liposomes Enabled Skin Fibrosis Treatment By Inducing Apoptosis, Himanshu N Bhatt, Rimpy Diwan, Igor L Estevao, Rui Dong, Jennifer Smith, Chuan Xiao, Sandeep K Agarwal, Md Nurunnabi
Cadherin-11 Targeted Cell-Specific Liposomes Enabled Skin Fibrosis Treatment By Inducing Apoptosis, Himanshu N Bhatt, Rimpy Diwan, Igor L Estevao, Rui Dong, Jennifer Smith, Chuan Xiao, Sandeep K Agarwal, Md Nurunnabi
Faculty, Staff and Students Publications
Continuous and aberrant activation of myofibroblasts is the hallmark of pathological fibrosis (e.g., abnormal wound healing). The deposition of excessive extracellular matrix (ECM) components alters or increases the stiffness of tissue and primarily accounts for multiple organ dysfunctions. Among various proteins, Cadherin-11 (CDH11) has been reported to be overexpressed on myofibroblasts in fibrotic tissues. Anti-apoptotic proteins such as (B cell lymphoma-2) (BCL-2) are also upregulated on myofibroblasts. Therefore, we hypothesize that CDH11 could be a targeted domain for cell-specific drug delivery and targeted inhibition of BCL-2 to ameliorate the development of fibrosis in the skin. To prove our hypothesis, we …
Generation Of A Humanized Mace2 And A Conditional Hace2 Mouse Models Permissive To Sars-Cov-2 Infection, I-Wen Song, Megan Washington, Carolina Leynes, Jason Hsu, Kempaiah Rayavara, Yangjin Bae, Nele Haelterman, Yuqing Chen, Ming-Ming Jiang, Aleksandra Drelich, Vivian Tat, Denise G Lanza, Isabel Lorenzo, Jason D Heaney, Chien-Te Kent Tseng, Brendan Lee, Ronit Marom
Generation Of A Humanized Mace2 And A Conditional Hace2 Mouse Models Permissive To Sars-Cov-2 Infection, I-Wen Song, Megan Washington, Carolina Leynes, Jason Hsu, Kempaiah Rayavara, Yangjin Bae, Nele Haelterman, Yuqing Chen, Ming-Ming Jiang, Aleksandra Drelich, Vivian Tat, Denise G Lanza, Isabel Lorenzo, Jason D Heaney, Chien-Te Kent Tseng, Brendan Lee, Ronit Marom
Faculty, Staff and Students Publications
The Severe Acute Respiratory Syndrome Coronavirus-2 (SARS-CoV-2) remains a public health concern and a subject of active research effort. Development of pre-clinical animal models is critical to study viral-host interaction, tissue tropism, disease mechanisms, therapeutic approaches, and long-term sequelae of infection. Here, we report two mouse models for studying SARS-CoV-2: A knock-in mAce2F83Y,H353K mouse that expresses a mouse-human hybrid form of the angiotensin-converting enzyme 2 (ACE2) receptor under the endogenous mouse Ace2 promoter, and a Rosa26 conditional knock-in mouse carrying the human ACE2 allele (Rosa26hACE2). Although the mAce2F83Y,H353K mice were susceptible to …
Mendelian Segregation And High Recombination Rates Facilitate Genetic Analyses In Cryptosporidium Parvum, Abigail Kimball, Lisa Funkhouser-Jones, Wanyi Huang, Rui Xu, William H. Witola, L. David Sibley
Mendelian Segregation And High Recombination Rates Facilitate Genetic Analyses In Cryptosporidium Parvum, Abigail Kimball, Lisa Funkhouser-Jones, Wanyi Huang, Rui Xu, William H. Witola, L. David Sibley
2020-Current year OA Pubs
Very little is known about the process of meiosis in the apicomplexan parasite Cryptosporidium despite the essentiality of sex in its life cycle. Most cell lines only support asexual growth of Cryptosporidium parvum (C. parvum), but stem cell derived intestinal epithelial cells grown under air-liquid interface (ALI) conditions support the sexual cycle. To examine chromosomal dynamics during meiosis in C. parvum, we generated two transgenic lines of parasites that were fluorescently tagged with mCherry or GFP on chromosomes 1 or 5, respectively. Infection of ALI cultures or Ifngr1-/- mice with mCherry and GFP parasites resulted in cross-fertilization and the formation …
Co-Aggregation With Apolipoprotein E Modulates The Function Of Amyloid-Β In Alzheimer's Disease, Zengjie Xia, Michael R Strickland, Hong Jiang, David M Holtzman, Et Al.
Co-Aggregation With Apolipoprotein E Modulates The Function Of Amyloid-Β In Alzheimer's Disease, Zengjie Xia, Michael R Strickland, Hong Jiang, David M Holtzman, Et Al.
2020-Current year OA Pubs
Which isoforms of apolipoprotein E (apoE) we inherit determine our risk of developing late-onset Alzheimer's Disease (AD), but the mechanism underlying this link is poorly understood. In particular, the relevance of direct interactions between apoE and amyloid-β (Aβ) remains controversial. Here, single-molecule imaging shows that all isoforms of apoE associate with Aβ in the early stages of aggregation and then fall away as fibrillation happens. ApoE-Aβ co-aggregates account for ~50% of the mass of diffusible Aβ aggregates detected in the frontal cortices of homozygotes with the higher-risk APOE4 gene. We show how dynamic interactions between apoE and Aβ tune disease-related …
Genetic Loci Regulate Sarbecovirus Pathogenesis: A Comparison Across Mice And Humans, Alexandra Schäfer, Laura A Vanblargan, Larissa B Thackray, Michael S Diamond, Et Al.
Genetic Loci Regulate Sarbecovirus Pathogenesis: A Comparison Across Mice And Humans, Alexandra Schäfer, Laura A Vanblargan, Larissa B Thackray, Michael S Diamond, Et Al.
2020-Current year OA Pubs
Coronavirus (CoV) cause considerable morbidity and mortality in humans and other mammals, as evidenced by the emergence of Severe Acute Respiratory CoV (SARS-CoV) in 2003, Middle East Respiratory CoV (MERS-CoV) in 2012, and SARS-CoV-2 in 2019. Although poorly characterized, natural genetic variation in human and other mammals modulate virus pathogenesis, as reflected by the spectrum of clinical outcomes ranging from asymptomatic infections to lethal disease. Using multiple human epidemic and zoonotic Sarbecoviruses, coupled with murine Collaborative Cross genetic reference populations, we identify several dozen quantitative trait loci that regulate SARS-like group-2B CoV pathogenesis and replication. Under a Chr4 QTL, we …
Inherited C-Terminal Trex1 Variants Disrupt Homology-Directed Repair To Cause Senescence And Dna Damage Phenotypes In Drosophila, Mice, And Humans, Samuel D Chauvin, Fang R Zhao, W Alexander Stinson, Wei Qian, Prabhakar S Andhey, Maxim N Artyomov, Elisha D O Roberson, Jonathan J Miner, Et Al.
Inherited C-Terminal Trex1 Variants Disrupt Homology-Directed Repair To Cause Senescence And Dna Damage Phenotypes In Drosophila, Mice, And Humans, Samuel D Chauvin, Fang R Zhao, W Alexander Stinson, Wei Qian, Prabhakar S Andhey, Maxim N Artyomov, Elisha D O Roberson, Jonathan J Miner, Et Al.
2020-Current year OA Pubs
Age-related microangiopathy, also known as small vessel disease (SVD), causes damage to the brain, retina, liver, and kidney. Based on the DNA damage theory of aging, we reasoned that genomic instability may underlie an SVD caused by dominant C-terminal variants in TREX1, the most abundant 3'-5' DNA exonuclease in mammals. C-terminal TREX1 variants cause an adult-onset SVD known as retinal vasculopathy with cerebral leukoencephalopathy (RVCL or RVCL-S). In RVCL, an aberrant, C-terminally truncated TREX1 mislocalizes to the nucleus due to deletion of its ER-anchoring domain. Since RVCL pathology mimics that of radiation injury, we reasoned that nuclear TREX1 would cause …
Skeletal Abnormalities In Mice With Dnmt3a Missense Mutations, Austin Bell-Hensley, Diana C Beard, Kathryn Feeney, Hongjun Zheng, Yunhao Jiang, Xiyun Zhang, Jin Liu, Harrison Gabel, Audrey Mcalinden
Skeletal Abnormalities In Mice With Dnmt3a Missense Mutations, Austin Bell-Hensley, Diana C Beard, Kathryn Feeney, Hongjun Zheng, Yunhao Jiang, Xiyun Zhang, Jin Liu, Harrison Gabel, Audrey Mcalinden
2020-Current year OA Pubs
Overgrowth and intellectual disability disorders in humans are typified by length/height and/or head circumference ≥ 2 standard deviations above the mean as well as intellectual disability and behavioral comorbidities, including autism and anxiety. Tatton-Brown-Rahman Syndrome is one type of overgrowth and intellectual disability disorder caused by heterozygous missense mutations in the DNA methyltransferase 3A (DNMT3A) gene. Numerous DNMT3A mutations have been identified in Tatton-Brown-Rahman Syndrome patients and may be associated with varying phenotype severities of clinical presentation. Two such mutations are the R882H and P904L mutations which result in severe and mild phenotypes, respectively. Mice with paralogous mutations (Dnmt3a
Presynaptic Nanoscale Components Of Retrograde Synaptic Signaling, Benjámin Barti, Barna Dudok, Kata Kenesei, Miklós Zöldi, Vivien Miczán, Gyula Y Balla, Diana Zala, Mariana Tasso, Claudia Sagheddu, Máté Kisfali, Blanka Tóth, Marco Ledri, E Sylvester Vizi, Miriam Melis, László Barna, Zsolt Lenkei, Iván Soltész, István Katona
Presynaptic Nanoscale Components Of Retrograde Synaptic Signaling, Benjámin Barti, Barna Dudok, Kata Kenesei, Miklós Zöldi, Vivien Miczán, Gyula Y Balla, Diana Zala, Mariana Tasso, Claudia Sagheddu, Máté Kisfali, Blanka Tóth, Marco Ledri, E Sylvester Vizi, Miriam Melis, László Barna, Zsolt Lenkei, Iván Soltész, István Katona
Faculty, Staff and Students Publications
While our understanding of the nanoscale architecture of anterograde synaptic transmission is rapidly expanding, the qualitative and quantitative molecular principles underlying distinct mechanisms of retrograde synaptic communication remain elusive. We show that a particular form of tonic cannabinoid signaling is essential for setting target cell–dependent synaptic variability. It does not require the activity of the two major endocannabinoid-producing enzymes. Instead, by developing a workflow for physiological, anatomical, and molecular measurements at the same unitary synapse, we demonstrate that the nanoscale stoichiometric ratio of type 1 cannabinoid receptors (CB1Rs) to the release machinery is sufficient to predict synapse-specific release probability. Accordingly, …
The Kat Module Of The Saga Complex Maintains The Oncogenic Gene Expression Program In Mycn- Amplified Neuroblastoma, Clare F Malone, Nathaniel W Mabe, Alexandra B Forman, Gabriela Alexe, Kathleen L Engel, Ying-Jiun C Chen, Melinda Soeung, Silvi Salhotra, Allen Basanthakumar, Bin Liu, Sharon Y R Dent, Kimberly Stegmaier
The Kat Module Of The Saga Complex Maintains The Oncogenic Gene Expression Program In Mycn- Amplified Neuroblastoma, Clare F Malone, Nathaniel W Mabe, Alexandra B Forman, Gabriela Alexe, Kathleen L Engel, Ying-Jiun C Chen, Melinda Soeung, Silvi Salhotra, Allen Basanthakumar, Bin Liu, Sharon Y R Dent, Kimberly Stegmaier
Faculty, Staff and Student Publications
Pediatric cancers are frequently driven by genomic alterations that result in aberrant transcription factor activity. Here, we used functional genomic screens to identify multiple genes within the transcriptional coactivator Spt-Ada-Gcn5-acetyltransferase (SAGA) complex as selective dependencies for MYCN-amplified neuroblastoma, a disease of dysregulated development driven by an aberrant oncogenic transcriptional program. We characterized the DNA recruitment sites of the SAGA complex in neuroblastoma and the consequences of loss of SAGA complex lysine acetyltransferase (KAT) activity on histone acetylation and gene expression. We demonstrate that loss of SAGA complex KAT activity is associated with reduced MYCN binding on chromatin, suppression of …
Multifactoral Immune Modulation Potentiates Durable Remission In Multiple Models Of Aggressive Malignancy, Matthew M Halpert, Briana A Burns, Spencer R Rosario, Henry G Withers, Akshar J Trivedi, Colby J Hofferek, Benjamin D Gephart, Haotong Wang, Jonathan Vazquez-Perez, Sharon B Amanya, Sean T Hyslop, Jianhua Yang, Jan O Kemnade, Vlad C Sandulache, Vanaja Konduri, William K Decker
Multifactoral Immune Modulation Potentiates Durable Remission In Multiple Models Of Aggressive Malignancy, Matthew M Halpert, Briana A Burns, Spencer R Rosario, Henry G Withers, Akshar J Trivedi, Colby J Hofferek, Benjamin D Gephart, Haotong Wang, Jonathan Vazquez-Perez, Sharon B Amanya, Sean T Hyslop, Jianhua Yang, Jan O Kemnade, Vlad C Sandulache, Vanaja Konduri, William K Decker
Faculty, Staff and Students Publications
Tumors typically lack canonical danger signals required to activate adaptive immunity and also frequently employ substantial immunomodulatory mechanisms that downregulate adaptive responses and contribute to escape from immune surveillance. Given the variety of mechanisms involved in shielding tumors from immune recognition, it is not surprising that single-agent immunomodulatory approaches have been largely unsuccessful in generating durable antitumor responses. Here we report a unique combination of immunomodulatory and cytostatic agents that recondition the tumor microenvironment and eliminate complex and/or poor-prognosis tumor types including the non-immunogenic 4T-1 model of TNBC, the aggressive MOC-2 model of HNSCC, and the high-risk MYCN-amplified model of …
The Janus Kinase 1 Is Critical For Pancreatic Cancer Initiation And Progression, Hridaya Shrestha, Patrick Rädler, Rayane Dennaoui, Madison Wicker, Nirakar Rajbhandari, Yunguang Sun, Amy Peck, Kerry Vistisen, Aleata Triplett, Rafic Beydoun, Esta Sterneck, Dieter Saur, Hallgeir Rui, Kay-Uwe Wagner
The Janus Kinase 1 Is Critical For Pancreatic Cancer Initiation And Progression, Hridaya Shrestha, Patrick Rädler, Rayane Dennaoui, Madison Wicker, Nirakar Rajbhandari, Yunguang Sun, Amy Peck, Kerry Vistisen, Aleata Triplett, Rafic Beydoun, Esta Sterneck, Dieter Saur, Hallgeir Rui, Kay-Uwe Wagner
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
Interleukin-6 (IL-6)-class inflammatory cytokines signal through the Janus tyrosine kinase (JAK)/signal transducer and activator of transcription (STAT) pathway and promote the development of pancreatic ductal adenocarcinoma (PDAC); however, the functions of specific intracellular signaling mediators in this process are less well defined. Using a ligand-controlled and pancreas-specific knockout in adult mice, we demonstrate in this study that JAK1 deficiency prevents the formation of KRASG12D-induced pancreatic tumors, and we establish that JAK1 is essential for the constitutive activation of STAT3, whose activation is a prominent characteristic of PDAC. We identify CCAAT/enhancer binding protein δ (C/EBPδ) as a biologically relevant …
Loss Of Lpar6 And Cab39l Dysregulates The Basal-To-Luminal Urothelial Differentiation Program, Contributing To Bladder Carcinogenesis, Sangkyou Lee, Jolanta Bondaruk, Yishan Wang, Huiqin Chen, June Goo Lee, Tadeusz Majewski, Rachel D Mullen, David Cogdell, Jiansong Chen, Ziqiao Wang, Hui Yao, Pawel Kus, Joon Jeong, Ilkyun Lee, Woonyoung Choi, Neema Navai, Charles Guo, Colin Dinney, Keith Baggerly, Cathy Mendelsohn, David Mcconkey, Richard R Behringer, Marek Kimmel, Peng Wei, Bogdan Czerniak
Loss Of Lpar6 And Cab39l Dysregulates The Basal-To-Luminal Urothelial Differentiation Program, Contributing To Bladder Carcinogenesis, Sangkyou Lee, Jolanta Bondaruk, Yishan Wang, Huiqin Chen, June Goo Lee, Tadeusz Majewski, Rachel D Mullen, David Cogdell, Jiansong Chen, Ziqiao Wang, Hui Yao, Pawel Kus, Joon Jeong, Ilkyun Lee, Woonyoung Choi, Neema Navai, Charles Guo, Colin Dinney, Keith Baggerly, Cathy Mendelsohn, David Mcconkey, Richard R Behringer, Marek Kimmel, Peng Wei, Bogdan Czerniak
Faculty, Staff and Student Publications
We describe a strategy that combines histologic and molecular mapping that permits interrogation of the chronology of changes associated with cancer development on a whole-organ scale. Using this approach, we present the sequence of alterations around RB1 in the development of bladder cancer. We show that RB1 is not involved in initial expansion of the preneoplastic clone. Instead, we found a set of contiguous genes that we term "forerunner" genes whose silencing is associated with the development of plaque-like field effects initiating carcinogenesis. Specifically, we identified five candidate forerunner genes (ITM2B, LPAR6, MLNR, CAB39L, and ARL11) mapping near RB1. Two …
Lxr/Cd38 Activation Drives Cholesterol-Induced Macrophage Senescence And Neurodegeneration Via Nad+ Depletion, Ryo Terao, Tae Jun Lee, Jason Colasanti, Charles W Pfeifer, Joseph B Lin, Andrea Santeford, Keitaro Hase, Shinobu Yamaguchi, Daniel Du, Brian S Sohn, Yo Sasaki, Mitsukuni Yoshida, Rajendra S Apte
Lxr/Cd38 Activation Drives Cholesterol-Induced Macrophage Senescence And Neurodegeneration Via Nad+ Depletion, Ryo Terao, Tae Jun Lee, Jason Colasanti, Charles W Pfeifer, Joseph B Lin, Andrea Santeford, Keitaro Hase, Shinobu Yamaguchi, Daniel Du, Brian S Sohn, Yo Sasaki, Mitsukuni Yoshida, Rajendra S Apte
2020-Current year OA Pubs
Although dysregulated cholesterol metabolism predisposes aging tissues to inflammation and a plethora of diseases, the underlying molecular mechanism remains poorly defined. Here, we show that metabolic and genotoxic stresses, convergently acting through liver X nuclear receptor, upregulate CD38 to promote lysosomal cholesterol efflux, leading to nicotinamide adenine dinucleotide (NAD
Compensation Between Foxp Transcription Factors Maintains Proper Striatal Function, Newaz I Ahmed, Nitin Khandelwal, Ashley G Anderson, Emily Oh, Rachael M Vollmer, Ashwinikumar Kulkarni, Jay R Gibson, Genevieve Konopka
Compensation Between Foxp Transcription Factors Maintains Proper Striatal Function, Newaz I Ahmed, Nitin Khandelwal, Ashley G Anderson, Emily Oh, Rachael M Vollmer, Ashwinikumar Kulkarni, Jay R Gibson, Genevieve Konopka
Faculty, Staff and Students Publications
Spiny projection neurons (SPNs) of the striatum are critical in integrating neurochemical information to coordinate motor and reward-based behavior. Mutations in the regulatory transcription factors expressed in SPNs can result in neurodevelopmental disorders (NDDs). Paralogous transcription factors Foxp1 and Foxp2, which are both expressed in the dopamine receptor 1 (D1) expressing SPNs, are known to have variants implicated in NDDs. Utilizing mice with a D1-SPN-specific loss of Foxp1, Foxp2, or both and a combination of behavior, electrophysiology, and cell-type-specific genomic analysis, loss of both genes results in impaired motor and social behavior as well as increased firing of the D1-SPNs. …
Astrocytic Slc4a4 Regulates Blood-Brain Barrier Integrity In Healthy And Stroke Brains Via A Ccl2-Ccr2 Pathway And No Dysregulation, Qi Ye, Juyeon Jo, Chih-Yen Wang, Heavin Oh, Jiangshan Zhan, Tiffany J Choy, Kyoung In Kim, Angelo D'Alessandro, Yana K Reshetnyak, Sung Yun Jung, Zheng Chen, Sean P Marrelli, Hyun Kyoung Lee
Astrocytic Slc4a4 Regulates Blood-Brain Barrier Integrity In Healthy And Stroke Brains Via A Ccl2-Ccr2 Pathway And No Dysregulation, Qi Ye, Juyeon Jo, Chih-Yen Wang, Heavin Oh, Jiangshan Zhan, Tiffany J Choy, Kyoung In Kim, Angelo D'Alessandro, Yana K Reshetnyak, Sung Yun Jung, Zheng Chen, Sean P Marrelli, Hyun Kyoung Lee
Faculty, Staff and Student Publications
Astrocytes play vital roles in blood-brain barrier (BBB) maintenance, yet how they support BBB integrity under normal or pathological conditions remains poorly defined. Recent evidence suggests that ion homeostasis is a cellular mechanism important for BBB integrity. In the current study, we investigated the function of an astrocyte-specific pH regulator, Slc4a4, in BBB maintenance and repair. We show that astrocytic Slc4a4 is required for normal astrocyte morphological complexity and BBB function. Multi-omics analyses identified increased astrocytic secretion of CCL2 coupled with dysregulated arginine-NO metabolism after Slc4a4 deletion. Using a model of ischemic stroke, we found that loss of Slc4a4 exacerbates …
Human Neutralizing Antibodies Target A Conserved Lateral Patch On H7n9 Hemagglutinin Head, Manxue Jia, Hanjun Zhao, Nicholas C Morano, Hong Lu, Yin-Ming Lui, Haijuan Du, Jordan E Becker, Kwok-Yung Yuen, David D Ho, Peter D Kwong, Lawrence Shapiro, Kelvin Kai-Wang To, Xueling Wu
Human Neutralizing Antibodies Target A Conserved Lateral Patch On H7n9 Hemagglutinin Head, Manxue Jia, Hanjun Zhao, Nicholas C Morano, Hong Lu, Yin-Ming Lui, Haijuan Du, Jordan E Becker, Kwok-Yung Yuen, David D Ho, Peter D Kwong, Lawrence Shapiro, Kelvin Kai-Wang To, Xueling Wu
Faculty, Staff and Student Publications
Avian influenza A virus H7N9 causes severe human infections with >30% fatality. Currently, there is no H7N9-specific prevention or treatment for humans. Here, from a 2013 H7N9 convalescent case in Hong Kong, we isolate four hemagglutinin (HA)-reactive monoclonal antibodies (mAbs), with three directed to the globular head domain (HA1) and one to the stalk domain (HA2). Two clonally related HA1-directed mAbs, H7.HK1 and H7.HK2, potently neutralize H7N9 and protect female mice from lethal H7N9/AH1 challenge. Cryo-EM structures reveal that H7.HK1 and H7.HK2 bind to a β14-centered surface and disrupt the 220-loop that makes hydrophobic contacts with sialic acid on an …
Generation Of Oviductal Glycoprotein 1 Cre Mouse Model For The Study Of Secretory Epithelial Cells Of The Oviduct, Emily A Mcglade, Jiude Mao, Kalli K Stephens, Andrew M Kelleher, Lisette A Maddison, Miranda L Bernhardt, Francesco J Demayo, John P Lydon, Wipawee Winuthayanon
Generation Of Oviductal Glycoprotein 1 Cre Mouse Model For The Study Of Secretory Epithelial Cells Of The Oviduct, Emily A Mcglade, Jiude Mao, Kalli K Stephens, Andrew M Kelleher, Lisette A Maddison, Miranda L Bernhardt, Francesco J Demayo, John P Lydon, Wipawee Winuthayanon
Faculty, Staff and Students Publications
The epithelial cell lining of the oviduct plays an important role in oocyte pickup, sperm migration, preimplantation embryo development, and embryo transport. The oviduct epithelial cell layer comprises ciliated and nonciliated secretory cells. The ciliary function has been shown to support gamete and embryo movement in the oviduct, yet secretory cell function has not been well characterized. Therefore, our goal was to generate a secretory cell-specific Cre recombinase mouse model to study the role of the oviductal secretory cells. A knock-in mouse model, Ovgp1Cre:eGFP, was created by expressing Cre from the endogenous Ovgp1 (oviductal glycoprotein 1) locus, with enhanced green …
Glioblastoma Disrupts Cortical Network Activity At Multiple Spatial And Temporal Scales, Jochen Meyer, Kwanha Yu, Estefania Luna-Figueroa, Benjamin Deneen, Jeffrey Noebels
Glioblastoma Disrupts Cortical Network Activity At Multiple Spatial And Temporal Scales, Jochen Meyer, Kwanha Yu, Estefania Luna-Figueroa, Benjamin Deneen, Jeffrey Noebels
Faculty, Staff and Students Publications
The emergence of glioblastoma in cortical tissue initiates early and persistent neural hyperexcitability with signs ranging from mild cognitive impairment to convulsive seizures. The influence of peritumoral synaptic density, expansion dynamics, and spatial contours of excess glutamate upon higher order neuronal network modularity is unknown. We combined cellular and widefield imaging of calcium and glutamate fluorescent reporters in two glioblastoma mouse models with distinct synaptic microenvironments and infiltration profiles. Functional metrics of neural ensembles are dysregulated during tumor invasion depending on the stage of malignant progression and tumor cell proximity. Neural activity is differentially modulated during periods of accelerated and …
Therapeutic Strategies Against Metabolic Imbalance In A Male Mouse Model With 5-Ht2cr Loss-Of-Function, Hailan Liu, Zhaoxun Liu, Hueyxian Kelly Wong, Nathan Xu, Qingzhuo Liu, Yongxiang Li, Yao Liu, Hueyzhong Wong, Megan E Burt, Sanika V Jossy, Junying Han, Yang He
Therapeutic Strategies Against Metabolic Imbalance In A Male Mouse Model With 5-Ht2cr Loss-Of-Function, Hailan Liu, Zhaoxun Liu, Hueyxian Kelly Wong, Nathan Xu, Qingzhuo Liu, Yongxiang Li, Yao Liu, Hueyzhong Wong, Megan E Burt, Sanika V Jossy, Junying Han, Yang He
Faculty, Staff and Students Publications
The serotonin 2C receptor (5-HT2CR)-melanocortin pathway plays well-established roles in the regulation of feeding behavior and body weight homeostasis. Dysfunctions in this system, such as loss-of-function mutations in the Htr2c gene, can lead to hyperphagia and obesity. In this study, we aimed to investigate the potential therapeutic strategies for ameliorating hyperphagia, hyperglycemia, and obesity associated with a loss-of-function mutation in the Htr2c gene (Htr2cF327L/Y). We demonstrated that reexpressing functional 5-HT2CR solely in hypothalamic pro-opiomelanocortin (POMC) neurons is sufficient to reduce food intake and body weight in Htr2cF327L/Y mice subjected to a high-fat diet (HFD). In addition, 5-HT2CR expression restores the …
Dynamic Hydrogel-Metal-Organic Framework System Promotes Bone Regeneration In Periodontitis Through Controlled Drug Delivery, Qipei Luo, Yuxin Yang, Chingchun Ho, Zongtai Li, Weicheng Chiu, Anqi Li, Yulin Dai, Weichang Li, Xinchun Zhang
Dynamic Hydrogel-Metal-Organic Framework System Promotes Bone Regeneration In Periodontitis Through Controlled Drug Delivery, Qipei Luo, Yuxin Yang, Chingchun Ho, Zongtai Li, Weicheng Chiu, Anqi Li, Yulin Dai, Weichang Li, Xinchun Zhang
Faculty, Staff and Student Publications
Periodontitis is a prevalent chronic inflammatory disease, which leads to gradual degradation of alveolar bone. The challenges persist in achieving effective alveolar bone repair due to the unique bacterial microenvironment's impact on immune responses. This study explores a novel approach utilizing Metal-Organic Frameworks (MOFs) (comprising magnesium and gallic acid) for promoting bone regeneration in periodontitis, which focuses on the physiological roles of magnesium ions in bone repair and gallic acid's antioxidant and immunomodulatory properties. However, the dynamic oral environment and irregular periodontal pockets pose challenges for sustained drug delivery. A smart responsive hydrogel system, integrating Carboxymethyl Chitosan (CMCS), Dextran (DEX) …