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Articles 4141 - 4170 of 7774
Full-Text Articles in Medicine and Health Sciences
Trem2 Inhibition Triggers Antitumor Cell Activity Of Myeloid Cells In Glioblastoma, Rui Sun, Rowland Han, Colin Mccornack, Saad Khan, G Travis Tabor, Yun Chen, Jinchao Hou, Haowu Jiang, Kathleen M Schoch, Diane D Mao, Ryan Cleary, Alicia Yang, Qin Liu, Jingqin Luo, Allegra Petti, Timothy M Miller, Jason D Ulrich, David M Holtzman, Albert H Kim
Trem2 Inhibition Triggers Antitumor Cell Activity Of Myeloid Cells In Glioblastoma, Rui Sun, Rowland Han, Colin Mccornack, Saad Khan, G Travis Tabor, Yun Chen, Jinchao Hou, Haowu Jiang, Kathleen M Schoch, Diane D Mao, Ryan Cleary, Alicia Yang, Qin Liu, Jingqin Luo, Allegra Petti, Timothy M Miller, Jason D Ulrich, David M Holtzman, Albert H Kim
2020-Current year OA Pubs
Triggering receptor expressed on myeloid cells 2 (TREM2) plays important roles in brain microglial function in neurodegenerative diseases, but the role of TREM2 in the GBM TME has not been examined. Here, we found that TREM2 is highly expressed in myeloid subsets, including macrophages and microglia in human and mouse GBM tumors and that high TREM2 expression correlates with poor prognosis in patients with GBM. TREM2 loss of function in human macrophages and mouse myeloid cells increased interferon-γ-induced immunoactivation, proinflammatory polarization, and tumoricidal capacity. In orthotopic mouse GBM models, mice with chronic and acute Trem2 loss of function exhibited decreased …
Efficient Cancer Modeling Through Crispr-Cas9/Hdr-Based Somatic Precision Gene Editing In Mice, Wen Bu, Chad J Creighton, Kelsey S Heavener, Carolina Gutierrez, Yongchao Dou, Amy T Ku, Yiqun Zhang, Weiyu Jiang, Jazmin Urrutia, Wen Jiang, Fei Yue, Luyu Jia, Ahmed Atef Ibrahim, Bing Zhang, Shixia Huang, Yi Li
Efficient Cancer Modeling Through Crispr-Cas9/Hdr-Based Somatic Precision Gene Editing In Mice, Wen Bu, Chad J Creighton, Kelsey S Heavener, Carolina Gutierrez, Yongchao Dou, Amy T Ku, Yiqun Zhang, Weiyu Jiang, Jazmin Urrutia, Wen Jiang, Fei Yue, Luyu Jia, Ahmed Atef Ibrahim, Bing Zhang, Shixia Huang, Yi Li
Faculty, Staff and Student Publications
CRISPR-Cas9 has been used successfully to introduce indels in somatic cells of rodents; however, precise editing of single nucleotides has been hampered by limitations of flexibility and efficiency. Here, we report technological modifications to the CRISPR-Cas9 vector system that now allows homology-directed repair-mediated precise editing of any proto-oncogene in murine somatic tissues to generate tumor models with high flexibility and efficiency. Somatic editing of either
Co-Clinical Imaging Metadata Information (Cimi) For Cancer Research To Promote Open Science, Standardization, And Reproducibility In Preclinical Imaging, Stephen M Moore, James D Quirk, Andrew W Lassiter, Richard Laforest, Kooresh I Shoghi, Et Al.
Co-Clinical Imaging Metadata Information (Cimi) For Cancer Research To Promote Open Science, Standardization, And Reproducibility In Preclinical Imaging, Stephen M Moore, James D Quirk, Andrew W Lassiter, Richard Laforest, Kooresh I Shoghi, Et Al.
2020-Current year OA Pubs
Preclinical imaging is a critical component in translational research with significant complexities in workflow and site differences in deployment. Importantly, the National Cancer Institute's (NCI) precision medicine initiative emphasizes the use of translational co-clinical oncology models to address the biological and molecular bases of cancer prevention and treatment. The use of oncology models, such as patient-derived tumor xenografts (PDX) and genetically engineered mouse models (GEMMs), has ushered in an era of co-clinical trials by which preclinical studies can inform clinical trials and protocols, thus bridging the translational divide in cancer research. Similarly, preclinical imaging fills a translational gap as an …
Two Forms Of Asynchronous Release With Distinctive Spatiotemporal Dynamics In Central Synapses, Gerardo Malagon, Jongyun Myeong, Vitaly A Klyachko
Two Forms Of Asynchronous Release With Distinctive Spatiotemporal Dynamics In Central Synapses, Gerardo Malagon, Jongyun Myeong, Vitaly A Klyachko
2020-Current year OA Pubs
Asynchronous release is a ubiquitous form of neurotransmitter release that persists for tens to hundreds of milliseconds after an action potential. How asynchronous release is organized and regulated at the synaptic active zone (AZ) remains debatable. Using nanoscale-precision imaging of individual release events in rat hippocampal synapses, we observed two spatially distinct subpopulations of asynchronous events, ~75% of which occurred inside the AZ and with a bias towards the AZ center, while ~25% occurred outside of the functionally defined AZ, that is, ectopically. The two asynchronous event subpopulations also differed from each other in temporal properties, with ectopic events occurring …
3-Phosphoinositide-Dependent Kinase 1 Drives Acquired Resistance To Osimertinib, Ismail M Meraz, Mourad Majidi, Bingliang Fang, Feng Meng, Lihui Gao, Ruping Shao, Renduo Song, Feng Li, Yonathan Lissanu, Huiqin Chen, Min Jin Ha, Qi Wang, Jing Wang, Elizabeth Shpall, Sung Yun Jung, Franziska Haderk, Philippe Gui, Jonathan Wesley Riess, Victor Olivas, Trever G Bivona, Jack A Roth
3-Phosphoinositide-Dependent Kinase 1 Drives Acquired Resistance To Osimertinib, Ismail M Meraz, Mourad Majidi, Bingliang Fang, Feng Meng, Lihui Gao, Ruping Shao, Renduo Song, Feng Li, Yonathan Lissanu, Huiqin Chen, Min Jin Ha, Qi Wang, Jing Wang, Elizabeth Shpall, Sung Yun Jung, Franziska Haderk, Philippe Gui, Jonathan Wesley Riess, Victor Olivas, Trever G Bivona, Jack A Roth
Faculty, Staff and Students Publications
Osimertinib sensitive and resistant NSCLC NCI-H1975 clones are used to model osimertinib acquired resistance in humanized and non-humanized mice and delineate potential resistance mechanisms. No new EGFR mutations or loss of the EGFR T790M mutation are found in resistant clones. Resistant tumors grown under continuous osimertinib pressure both in humanized and non-humanized mice show aggressive tumor regrowth which is significantly less sensitive to osimertinib as compared with parental tumors. 3-phosphoinositide-dependent kinase 1 (PDK1) is identified as a potential driver of osimertinib acquired resistance, and its selective inhibition by BX795 and CRISPR gene knock out, sensitizes resistant clones. In-vivo inhibition of …
Co-Clinical Imaging Metadata Information (Cimi) For Cancer Research To Promote Open Science, Standardization, And Reproducibility In Preclinical Imaging, Stephen M Moore, James D Quirk, Andrew W Lassiter, Richard Laforest, Gregory D Ayers, Cristian T Badea, Andriy Y Fedorov, Paul E Kinahan, Matthew Holbrook, Peder E Z Larson, Renuka Sriram, Thomas L Chenevert, Dariya Malyarenko, John Kurhanewicz, A Mcgarry Houghton, Brian D Ross, Stephen Pickup, James C Gee, Rong Zhou, Seth T Gammon, Henry Charles Manning, Raheleh Roudi, Heike E Daldrup-Link, Michael T Lewis, Daniel L Rubin, Thomas E Yankeelov, Kooresh I Shoghi
Co-Clinical Imaging Metadata Information (Cimi) For Cancer Research To Promote Open Science, Standardization, And Reproducibility In Preclinical Imaging, Stephen M Moore, James D Quirk, Andrew W Lassiter, Richard Laforest, Gregory D Ayers, Cristian T Badea, Andriy Y Fedorov, Paul E Kinahan, Matthew Holbrook, Peder E Z Larson, Renuka Sriram, Thomas L Chenevert, Dariya Malyarenko, John Kurhanewicz, A Mcgarry Houghton, Brian D Ross, Stephen Pickup, James C Gee, Rong Zhou, Seth T Gammon, Henry Charles Manning, Raheleh Roudi, Heike E Daldrup-Link, Michael T Lewis, Daniel L Rubin, Thomas E Yankeelov, Kooresh I Shoghi
Faculty, Staff and Students Publications
Preclinical imaging is a critical component in translational research with significant complexities in workflow and site differences in deployment. Importantly, the National Cancer Institute's (NCI) precision medicine initiative emphasizes the use of translational co-clinical oncology models to address the biological and molecular bases of cancer prevention and treatment. The use of oncology models, such as patient-derived tumor xenografts (PDX) and genetically engineered mouse models (GEMMs), has ushered in an era of co-clinical trials by which preclinical studies can inform clinical trials and protocols, thus bridging the translational divide in cancer research. Similarly, preclinical imaging fills a translational gap as an …
Functional Neuronal Circuits Promote Disease Progression In Cancer, Anthony C Restaino, Austin Walz, Samuel J Vermeer, Jeffrey Barr, Attila Kovács, Robin R Fettig, Daniel W Vermeer, Hunter Reavis, Caitlin S Williamson, Christopher T Lucido, Tuany Eichwald, Dalia K Omran, Euihye Jung, Lauren E Schwartz, Maria Bell, Desirae M Muirhead, Jody E Hooper, William C Spanos, Ronny Drapkin, Sebastien Talbot, Paola D Vermeer
Functional Neuronal Circuits Promote Disease Progression In Cancer, Anthony C Restaino, Austin Walz, Samuel J Vermeer, Jeffrey Barr, Attila Kovács, Robin R Fettig, Daniel W Vermeer, Hunter Reavis, Caitlin S Williamson, Christopher T Lucido, Tuany Eichwald, Dalia K Omran, Euihye Jung, Lauren E Schwartz, Maria Bell, Desirae M Muirhead, Jody E Hooper, William C Spanos, Ronny Drapkin, Sebastien Talbot, Paola D Vermeer
Faculty, Staff and Student Publications
The molecular and functional contributions of intratumoral nerves to disease remain largely unknown. We localized synaptic markers within tumors suggesting that these nerves form functional connections. Consistent with this, electrophysiological analysis shows that malignancies harbor significantly higher electrical activity than benign disease or normal tissues. We also demonstrate pharmacologic silencing of tumoral electrical activity. Tumors implanted in transgenic animals lacking nociceptor neurons show reduced electrical activity. These data suggest that intratumoral nerves remain functional at the tumor bed. Immunohistochemical staining demonstrates the presence of the neuropeptide, Substance P (SP), within the tumor space. We show that tumor cells express the …
A Stability Indicating Lc-Ms/Ms Method For Quantification Of A Nox Inhibitor R14 In Its Bisulfite Adduct Form For Pharmacokinetic Studies, Yang Wang, Jing Ma, Shiaw-Yih Lin, Huan Xie, Dong Liang
A Stability Indicating Lc-Ms/Ms Method For Quantification Of A Nox Inhibitor R14 In Its Bisulfite Adduct Form For Pharmacokinetic Studies, Yang Wang, Jing Ma, Shiaw-Yih Lin, Huan Xie, Dong Liang
Faculty, Staff and Student Publications
R14, also known as NOX Inhibitor VII, is a potent inhibitor of NADPH oxidases (NOX) which has recently been identified as a novel agent targeting to triple-negative breast cancer. It is also rapidly degraded in collected pharmacokinetic plasma and blood samples even stored under - 70 °C. The purpose of this study was to develop a stability indicating LC-MS/MS assay that would be suitable for quantification of R14 in plasma and blood. In the presence of sodium sulfite under acidic pH, R14, an aryl lactam compound which is not a typically reactive compound for bisulfite addition, readily and completely converted …
Immune Checkpoint B7-H3 Is A Therapeutic Vulnerability In Prostate Cancer Harboring Pten And Tp53 Deficiencies, Wei Shi, Yin Wang, Yuehui Zhao, Justin Jimin Kim, Haoyan Li, Chenling Meng, Feiyu Chen, Jie Zhang, Duncan H Mak, Vivien Van, Javier Leo, Brad St Croix, Ana Aparicio, Di Zhao
Immune Checkpoint B7-H3 Is A Therapeutic Vulnerability In Prostate Cancer Harboring Pten And Tp53 Deficiencies, Wei Shi, Yin Wang, Yuehui Zhao, Justin Jimin Kim, Haoyan Li, Chenling Meng, Feiyu Chen, Jie Zhang, Duncan H Mak, Vivien Van, Javier Leo, Brad St Croix, Ana Aparicio, Di Zhao
Faculty, Staff and Student Publications
Checkpoint immunotherapy has yielded meaningful responses across many cancers but has shown modest efficacy in advanced prostate cancer. B7 homolog 3 protein (B7-H3/CD276) is an immune checkpoint molecule and has emerged as a promising therapeutic target. However, much remains to be understood regarding B7-H3's role in cancer progression, predictive biomarkers for B7-H3-targeted therapy, and combinatorial strategies. Our multi-omics analyses identified B7-H3 as one of the most abundant immune checkpoints in prostate tumors containing PTEN and TP53 genetic inactivation. Here, we sought in vivo genetic evidence for, and mechanistic understanding of, the role of B7-H3 in PTEN/TP53-deficient prostate …
Mechanisms Underlying The Antiarrhythmic Effect Of Arumenamide-787 In Experimental Models Of The J Wave Syndromes And Hypothermia, José M. Di Diego, Hector Barajas-Martinez, Robert Cox, Victoria M Robinson, Joseph Jung, Mohamed Fouda, Mena Abdelsayed, Peter C Ruben, Charles Antzelevitch
Mechanisms Underlying The Antiarrhythmic Effect Of Arumenamide-787 In Experimental Models Of The J Wave Syndromes And Hypothermia, José M. Di Diego, Hector Barajas-Martinez, Robert Cox, Victoria M Robinson, Joseph Jung, Mohamed Fouda, Mena Abdelsayed, Peter C Ruben, Charles Antzelevitch
Department of Medicine Faculty Papers
BACKGROUND: Brugada (BrS) and early repolarization syndromes (ERS), the so-called J wave syndromes (JWS), are associated with life-threatening ventricular arrhythmias. Pharmacologic approaches to therapy are currently limited. In this study, we examine the effects of ARumenamide-787 (AR-787) to suppress the electrocardiographic and arrhythmic manifestations of JWS and hypothermia.
METHODS: We studied the effects of AR-787 on INa and IKr in HEK-293 cells stably expressing the α- and β1-subunits of the cardiac (NaV1.5) sodium channel and hERG channel, respectively. In addition, we studied its effect on Ito, INa and ICa in dissociated canine ventricular myocytes along with action potentials and ECG …
Rapid Neuroplasticity Changes And Response To Intravenous Ketamine: A Randomized Controlled Trial In Treatment-Resistant Depression, Jared Kopelman, Timothy A Keller, Benjamin Panny, Angela Griffo, Michelle Degutis, Crystal Spotts, Nicolas Cruz, Elizabeth Bell, Kevin Do-Nguyen, Meredith L Wallace, Sanjay J Mathew, Robert H Howland, Rebecca B Price
Rapid Neuroplasticity Changes And Response To Intravenous Ketamine: A Randomized Controlled Trial In Treatment-Resistant Depression, Jared Kopelman, Timothy A Keller, Benjamin Panny, Angela Griffo, Michelle Degutis, Crystal Spotts, Nicolas Cruz, Elizabeth Bell, Kevin Do-Nguyen, Meredith L Wallace, Sanjay J Mathew, Robert H Howland, Rebecca B Price
Staff and Researcher Publications
Intravenous ketamine is posited to rapidly reverse depression by rapidly enhancing neuroplasticity. In human patients, we quantified gray matter microstructural changes on a rapid (24-h) timescale within key regions where neuroplasticity enhancements post-ketamine have been implicated in animal models. In this study, 98 unipolar depressed adults who failed at least one antidepressant medication were randomized 2:1 to a single infusion of intravenous ketamine (0.5 mg/kg) or vehicle (saline) and completed diffusion tensor imaging (DTI) assessments at pre-infusion baseline and 24-h post-infusion. DTI mean diffusivity (DTI-MD), a putative marker of microstructural neuroplasticity in gray matter, was calculated for 7 regions of …
Single-Cell Transcriptome Analysis Of Xenotransplanted Human Retinal Organoids Defines Two Migratory Cell Populations Of Nonretinal Origin, Ying V Liu, Clayton P Santiago, Akin Sogunro, Gregory J Konar, Ming-Wen Hu, Minda M Mcnally, Yu-Chen Lu, Miguel Flores-Bellver, Silvia Aparicio-Domingo, Kang V Li, Zhuo-Lin Li, Dzhalal Agakishiev, Sarah E Hadyniak, Katarzyna A Hussey, Tyler J Creamer, Linda D Orzolek, Derek Teng, M Valeria Canto-Soler, Jiang Qian, Zheng Jiang, Robert J Johnston, Seth Blackshaw, Mandeep S Singh
Single-Cell Transcriptome Analysis Of Xenotransplanted Human Retinal Organoids Defines Two Migratory Cell Populations Of Nonretinal Origin, Ying V Liu, Clayton P Santiago, Akin Sogunro, Gregory J Konar, Ming-Wen Hu, Minda M Mcnally, Yu-Chen Lu, Miguel Flores-Bellver, Silvia Aparicio-Domingo, Kang V Li, Zhuo-Lin Li, Dzhalal Agakishiev, Sarah E Hadyniak, Katarzyna A Hussey, Tyler J Creamer, Linda D Orzolek, Derek Teng, M Valeria Canto-Soler, Jiang Qian, Zheng Jiang, Robert J Johnston, Seth Blackshaw, Mandeep S Singh
Faculty, Staff and Students Publications
Human retinal organoid transplantation could potentially be a treatment for degenerative retinal diseases. How the recipient retina regulates the survival, maturation, and proliferation of transplanted organoid cells is unknown. We transplanted human retinal organoid-derived cells into photoreceptor-deficient mice and conducted histology and single-cell RNA sequencing alongside time-matched cultured retinal organoids. Unexpectedly, we observed human cells that migrated into all recipient retinal layers and traveled long distances. Using an unbiased approach, we identified these cells as astrocytes and brain/spinal cord-like neural precursors that were absent or rare in stage-matched cultured organoids. In contrast, retinal progenitor-derived rods and cones remained in the …
Multiple And Consecutive Genome Editing Using I-Gonad And Breeding Enrichment Facilitates The Production Of Genetically Modified Mice, Carolina R Melo-Silva, Cory J Knudson, Lingjuan Tang, Samita Kafle, Lauren E. Springer, Jihae Choi, Christopher M. Snyder, Yajing Wang, Sangwon V. Kim, Luis J. Sigal
Multiple And Consecutive Genome Editing Using I-Gonad And Breeding Enrichment Facilitates The Production Of Genetically Modified Mice, Carolina R Melo-Silva, Cory J Knudson, Lingjuan Tang, Samita Kafle, Lauren E. Springer, Jihae Choi, Christopher M. Snyder, Yajing Wang, Sangwon V. Kim, Luis J. Sigal
Department of Microbiology and Immunology Faculty Papers
Genetically modified (GM) mice are essential tools in biomedical research. Traditional methods for generating GM mice are expensive and require specialized personnel and equipment. The use of clustered regularly interspaced short palindromic repeats (CRISPR) coupled with improved-Genome editing via Oviductal Nucleic Acids Delivery (i-GONAD) has highly increased the feasibility of producing GM mice in research laboratories. However, genetic modification in inbred mouse strains of interest such as C57BL/6 (B6) is still challenging because of their low fertility and embryo fragility. We have successfully generated multiple novel GM mouse strains in the B6 background while attempting to optimize i-GONAD. We found …
Tfeb And Tfe3 Drive Kidney Cystogenesis And Tumorigenesis, Chiara Di Malta, Angela Zampelli, Letizia Granieri, Claudia Vilardo, Rossella De Cegli, Laura Cinque, Edoardo Nusco, Salvatore Pece, Daniela Tosoni, Francesca Sanguedolce, Nicolina Cristina Sorrentino, Maria J Merino, Deborah Nielsen, Ramaprasad Srinivasan, Mark W Ball, Christopher J Ricketts, Cathy D Vocke, Martin Lang, Baktiar Karim, Luisa Lanfrancone, Laura S Schmidt, W Marston Linehan, Andrea Ballabio
Tfeb And Tfe3 Drive Kidney Cystogenesis And Tumorigenesis, Chiara Di Malta, Angela Zampelli, Letizia Granieri, Claudia Vilardo, Rossella De Cegli, Laura Cinque, Edoardo Nusco, Salvatore Pece, Daniela Tosoni, Francesca Sanguedolce, Nicolina Cristina Sorrentino, Maria J Merino, Deborah Nielsen, Ramaprasad Srinivasan, Mark W Ball, Christopher J Ricketts, Cathy D Vocke, Martin Lang, Baktiar Karim, Luisa Lanfrancone, Laura S Schmidt, W Marston Linehan, Andrea Ballabio
Duncan NRI Faculty and Staff Publications
Birt-Hogg-Dubé (BHD) syndrome is an inherited familial cancer syndrome characterized by the development of cutaneous lesions, pulmonary cysts, renal tumors and cysts and caused by loss-of-function pathogenic variants in the gene encoding the tumor-suppressor protein folliculin (FLCN). FLCN acts as a negative regulator of TFEB and TFE3 transcription factors, master controllers of lysosomal biogenesis and autophagy, by enabling their phosphorylation by the mechanistic Target Of Rapamycin Complex 1 (mTORC1). We have previously shown that deletion of Tfeb rescued the renal cystic phenotype of kidney-specific Flcn KO mice. Using Flcn/Tfeb/Tfe3 double and triple KO mice, we now show that both Tfeb …
Rbm47 Regulates Intestinal Injury And Tumorigenesis By Modifying Proliferation, Oxidative Response, And Inflammatory Pathways, Saeed Soleymanjahi, Valerie Blanc, Elizabeth A. Molitor, David M. Alvarado, Yan Xie, Vered Gazit, Jeffrey W. Brown, Kathleen Byrnes, Ta-Chiang Liu, Jason C. Mills, Matthew A. Ciorba, Deborah C. Rubin, Nicholas O. Davidson
Rbm47 Regulates Intestinal Injury And Tumorigenesis By Modifying Proliferation, Oxidative Response, And Inflammatory Pathways, Saeed Soleymanjahi, Valerie Blanc, Elizabeth A. Molitor, David M. Alvarado, Yan Xie, Vered Gazit, Jeffrey W. Brown, Kathleen Byrnes, Ta-Chiang Liu, Jason C. Mills, Matthew A. Ciorba, Deborah C. Rubin, Nicholas O. Davidson
2020-Current year OA Pubs
RNA-binding protein 47 (RBM47) is required for embryonic endoderm development, but a role in adult intestine is unknown. We studied intestine-specific Rbm47-knockout mice (Rbm47-IKO) following intestinal injury and made crosses into ApcMin/+ mice to examine alterations in intestinal proliferation, response to injury, and tumorigenesis. We also interrogated human colorectal polyps and colon carcinoma tissue. Rbm47-IKO mice exhibited increased proliferation and abnormal villus morphology and cellularity, with corresponding changes in Rbm47-IKO organoids. Rbm47-IKO mice adapted to radiation injury and were protected against chemical-induced colitis, with Rbm47-IKO intestine showing upregulation of antioxidant and Wnt signaling pathways as well as stem cell and …
Species Differences In Platelet Protease-Activated Receptors, Stephanie A Renna, Steven E. Mckenzie, James V. Michael
Species Differences In Platelet Protease-Activated Receptors, Stephanie A Renna, Steven E. Mckenzie, James V. Michael
Cardeza Foundation for Hematologic Research
Protease-activated receptors (PARs) are a class of integral membrane proteins that are cleaved by a variety of proteases, most notably thrombin, to reveal a tethered ligand and promote activation. PARs are critical mediators of platelet function in hemostasis and thrombosis, and therefore are attractive targets for anti-platelet therapies. Animal models studying platelet PAR physiology have relied heavily on genetically modified mouse strains, which have provided ample insight but have some inherent limitations. The current review aims to summarize the notable PAR expression and functional differences between the mouse and human, in addition to highlighting some recently developed tools to further …
Tmem106b Regulates Microglial Proliferation And Survival In Response To Demyelination, Tingting Zhang, Weilun Pang, Tuancheng Feng, Jennifer Guo, Kenton Wu, Mariela Nunez Santos, Akshayakeerthi Arthanarisami, Alissa L Nana, Quynh Nguyen, Peter J Kim, Joanna L Jankowsky, William W Seeley, Fenghua Hu
Tmem106b Regulates Microglial Proliferation And Survival In Response To Demyelination, Tingting Zhang, Weilun Pang, Tuancheng Feng, Jennifer Guo, Kenton Wu, Mariela Nunez Santos, Akshayakeerthi Arthanarisami, Alissa L Nana, Quynh Nguyen, Peter J Kim, Joanna L Jankowsky, William W Seeley, Fenghua Hu
Faculty, Staff and Students Publications
TMEM106B, a lysosomal transmembrane protein, has been closely associated with brain health. Recently, an intriguing link between TMEM106B and brain inflammation has been discovered, but how TMEM106B regulates inflammation is unknown. Here, we report that TMEM106B deficiency in mice leads to reduced microglia proliferation and activation and increased microglial apoptosis in response to demyelination. We also found an increase in lysosomal pH and a decrease in lysosomal enzyme activities in TMEM106B-deficient microglia. Furthermore, TMEM106B loss results in a significant decrease in the protein levels of TREM2, an innate immune receptor essential for microglia survival and activation. Specific ablation of TMEM106B …
Insights Into The Formation And Diversification Of A Novel Chiropteran Wing Membrane From Embryonic Development, Neal Anthwal, Daniel J Urban, Alexa Sadier, Risa Takenaka, Simon Spiro, Nancy Simmons, Richard R Behringer, Chris J Cretekos, John J Rasweiler, Karen E Sears
Insights Into The Formation And Diversification Of A Novel Chiropteran Wing Membrane From Embryonic Development, Neal Anthwal, Daniel J Urban, Alexa Sadier, Risa Takenaka, Simon Spiro, Nancy Simmons, Richard R Behringer, Chris J Cretekos, John J Rasweiler, Karen E Sears
Faculty, Staff and Student Publications
BACKGROUND: Through the evolution of novel wing structures, bats (Order Chiroptera) became the only mammalian group to achieve powered flight. This achievement preceded the massive adaptive radiation of bats into diverse ecological niches. We investigate some of the developmental processes that underlie the origin and subsequent diversification of one of the novel membranes of the bat wing: the plagiopatagium, which connects the fore- and hind limb in all bat species.
RESULTS: Our results suggest that the plagiopatagium initially arises through novel outgrowths from the body flank that subsequently merge with the limbs to generate the wing airfoil. Our findings further …
Bi-Allelic Variants In Ints11 Are Associated With A Complex Neurological Disorder, Burak Tepe, Erica L Macke, Marcello Niceta, Monika Weisz Hubshman, Oguz Kanca, Laura Schultz-Rogers, Yuri A Zarate, G Bradley Schaefer, Jorge Luis Granadillo De Luque, Daniel J Wegner, Benjamin Cogne, Brigitte Gilbert-Dussardier, Xavier Le Guillou, Eric J Wagner, Lynn S Pais, Jennifer E Neil, Ganeshwaran H Mochida, Christopher A Walsh, Nurit Magal, Valerie Drasinover, Mordechai Shohat, Tanya Schwab, Chris Schmitz, Karl Clark, Anthony Fine, Brendan Lanpher, Ralitza Gavrilova, Pierre Blanc, Lydie Burglen, Alexandra Afenjar, Dora Steel, Manju A Kurian, Prab Prabhakar, Sophie Gößwein, Nataliya Di Donato, Enrico S Bertini, Undiagnosed Diseases Network, Michael F Wangler, Shinya Yamamoto, Marco Tartaglia, Eric W Klee, Hugo J Bellen
Bi-Allelic Variants In Ints11 Are Associated With A Complex Neurological Disorder, Burak Tepe, Erica L Macke, Marcello Niceta, Monika Weisz Hubshman, Oguz Kanca, Laura Schultz-Rogers, Yuri A Zarate, G Bradley Schaefer, Jorge Luis Granadillo De Luque, Daniel J Wegner, Benjamin Cogne, Brigitte Gilbert-Dussardier, Xavier Le Guillou, Eric J Wagner, Lynn S Pais, Jennifer E Neil, Ganeshwaran H Mochida, Christopher A Walsh, Nurit Magal, Valerie Drasinover, Mordechai Shohat, Tanya Schwab, Chris Schmitz, Karl Clark, Anthony Fine, Brendan Lanpher, Ralitza Gavrilova, Pierre Blanc, Lydie Burglen, Alexandra Afenjar, Dora Steel, Manju A Kurian, Prab Prabhakar, Sophie Gößwein, Nataliya Di Donato, Enrico S Bertini, Undiagnosed Diseases Network, Michael F Wangler, Shinya Yamamoto, Marco Tartaglia, Eric W Klee, Hugo J Bellen
Faculty, Staff and Students Publications
The Integrator complex is a multi-subunit protein complex that regulates the processing of nascent RNAs transcribed by RNA polymerase II (RNAPII), including small nuclear RNAs, enhancer RNAs, telomeric RNAs, viral RNAs, and protein-coding mRNAs. Integrator subunit 11 (INTS11) is the catalytic subunit that cleaves nascent RNAs, but, to date, mutations in this subunit have not been linked to human disease. Here, we describe 15 individuals from 10 unrelated families with bi-allelic variants in INTS11 who present with global developmental and language delay, intellectual disability, impaired motor development, and brain atrophy. Consistent with human observations, we find that the fly ortholog …
Exercise Reprograms The Inflammatory Landscape Of Multiple Stem Cell Compartments During Mammalian Aging, Ling Liu, Soochi Kim, Matthew T Buckley, Jaime M Reyes, Jengmin Kang, Lei Tian, Mingqiang Wang, Alexander Lieu, Michelle Mao, Cristina Rodriguez-Mateo, Heather D Ishak, Mira Jeong, Joseph C Wu, Margaret A Goodell, Anne Brunet, Thomas A Rando
Exercise Reprograms The Inflammatory Landscape Of Multiple Stem Cell Compartments During Mammalian Aging, Ling Liu, Soochi Kim, Matthew T Buckley, Jaime M Reyes, Jengmin Kang, Lei Tian, Mingqiang Wang, Alexander Lieu, Michelle Mao, Cristina Rodriguez-Mateo, Heather D Ishak, Mira Jeong, Joseph C Wu, Margaret A Goodell, Anne Brunet, Thomas A Rando
Faculty, Staff and Students Publications
Exercise has the ability to rejuvenate stem cells and improve tissue regeneration in aging animals. However, the cellular and molecular changes elicited by exercise have not been systematically studied across a broad range of cell types in stem cell compartments. We subjected young and old mice to aerobic exercise and generated a single-cell transcriptomic atlas of muscle, neural, and hematopoietic stem cells with their niche cells and progeny, complemented by whole transcriptome analysis of single myofibers. We found that exercise ameliorated the upregulation of a number of inflammatory pathways associated with old age and restored aspects of intercellular communication mediated …
Functional Characterization Of Age-Dependent P16 Epimutation Reveals Biological Drivers And Therapeutic Targets For Colorectal Cancer, Li Yang, Xiaomin Chen, Christy Lee, Jiejun Shi, Emily B Lawrence, Lanjing Zhang, Yumei Li, Nan Gao, Sung Yun Jung, Chad J Creighton, Jingyi Jessica Li, Ya Cui, Sumimasa Arimura, Yunping Lei, Wei Li, Lanlan Shen
Functional Characterization Of Age-Dependent P16 Epimutation Reveals Biological Drivers And Therapeutic Targets For Colorectal Cancer, Li Yang, Xiaomin Chen, Christy Lee, Jiejun Shi, Emily B Lawrence, Lanjing Zhang, Yumei Li, Nan Gao, Sung Yun Jung, Chad J Creighton, Jingyi Jessica Li, Ya Cui, Sumimasa Arimura, Yunping Lei, Wei Li, Lanlan Shen
Faculty, Staff and Students Publications
BACKGROUND: Methylation of the p16 promoter resulting in epigenetic gene silencing-known as p16 epimutation-is frequently found in human colorectal cancer and is also common in normal-appearing colonic mucosa of aging individuals. Thus, to improve clinical care of colorectal cancer (CRC) patients, we explored the role of age-related p16 epimutation in intestinal tumorigenesis.
METHODS: We established a mouse model that replicates two common genetic and epigenetic events observed in human CRCs: Apc mutation and p16 epimutation. We conducted long-term survival and histological analysis of tumor development and progression. Colonic epithelial cells and tumors were collected from mice and analyzed by RNA …
Using Cancer Proteomics Data To Identify Gene Candidates For Therapeutic Targeting, Diana Monsivais, Sydney E Parks, Darshan S Chandrashekar, Sooryanarayana Varambally, Chad J Creighton
Using Cancer Proteomics Data To Identify Gene Candidates For Therapeutic Targeting, Diana Monsivais, Sydney E Parks, Darshan S Chandrashekar, Sooryanarayana Varambally, Chad J Creighton
Faculty, Staff and Students Publications
Gene-level associations obtained from mass-spectrometry-based cancer proteomics datasets represent a resource for identifying gene candidates for functional studies. When recently surveying proteomic correlates of tumor grade across multiple cancer types, we identified specific protein kinases having a functional impact on uterine endometrial cancer cells. This previously published study provides just one template for utilizing public molecular datasets to discover potential novel therapeutic targets and approaches for cancer patients. Proteomic profiling data combined with corresponding multi-omics data on human tumors and cell lines can be analyzed in various ways to prioritize genes of interest for interrogating biology. Across hundreds of cancer …
Dimeric P53 Mutant Elicits Unique Tumor-Suppressive Activities Through An Altered Metabolic Program, Jovanka Gencel-Augusto, Xiaoping Su, Yuan Qi, Elizabeth M Whitley, Vinod Pant, Shunbin Xiong, Vrutant Shah, Jerome Lin, Encarnacion Perez, Marta L Fiorotto, Iqbal Mahmud, Abhinav K Jain, Philip L Lorenzi, Nicholas E Navin, Ellen R Richie, Guillermina Lozano
Dimeric P53 Mutant Elicits Unique Tumor-Suppressive Activities Through An Altered Metabolic Program, Jovanka Gencel-Augusto, Xiaoping Su, Yuan Qi, Elizabeth M Whitley, Vinod Pant, Shunbin Xiong, Vrutant Shah, Jerome Lin, Encarnacion Perez, Marta L Fiorotto, Iqbal Mahmud, Abhinav K Jain, Philip L Lorenzi, Nicholas E Navin, Ellen R Richie, Guillermina Lozano
Faculty, Staff and Student Publications
Cancer-related alterations of the p53 tetramerization domain (TD) abrogate wild-type (WT) p53 function. They result in a protein that preferentially forms monomers or dimers, which are also normal p53 states under basal cellular conditions. However, their physiologic relevance is not well understood. We have established in vivo models for monomeric and dimeric p53, which model Li-Fraumeni syndrome patients with germline p53 TD alterations. p53 monomers are inactive forms of the protein. Unexpectedly, p53 dimers conferred some tumor suppression that is not mediated by canonical WT p53 activities. p53 dimers upregulate the PPAR pathway. These activities are associated with lower prevalence …
Infection Of Neonatal Mice With The Murine Norovirus Strain Wu23 Is A Robust Model To Study Norovirus Pathogenesis, Amy M Peiper, Emily W Helm, Quyen Nguyen, Matthew Phillips, Caroline G Williams, Dhairya Shah, Sarah Tatum, Neha Iyer, Marco Grodzki, Laura B Eurell, Aqsa Nasir, Megan T Baldridge, Stephanie M Karst
Infection Of Neonatal Mice With The Murine Norovirus Strain Wu23 Is A Robust Model To Study Norovirus Pathogenesis, Amy M Peiper, Emily W Helm, Quyen Nguyen, Matthew Phillips, Caroline G Williams, Dhairya Shah, Sarah Tatum, Neha Iyer, Marco Grodzki, Laura B Eurell, Aqsa Nasir, Megan T Baldridge, Stephanie M Karst
2020-Current year OA Pubs
Noroviruses are the leading cause of severe childhood diarrhea and foodborne disease worldwide. While they are a major cause of disease in all age groups, infections in the very young can be quite severe, with annual estimates of 50,000-200,000 fatalities in children under 5 years old. In spite of the remarkable disease burden associated with norovirus infections, very little is known about the pathogenic mechanisms underlying norovirus diarrhea, principally because of the lack of tractable small animal models. The development of the murine norovirus (MNV) model nearly two decades ago has facilitated progress in understanding host-norovirus interactions and norovirus strain …
Microparticle-Delivered Cxcl9 Prolongs Braf Inhibitor Efficacy In Melanoma, Gabriele Romano, Francesca Paradiso, Peng Li, Pooja Shukla, Lindsay N Barger, Olivia El Naggar, John P Miller, Roger J Liang, Timothy L Helms, Alexander J Lazar, Jennifer A Wargo, Francesca Taraballi, James C Costello, Lawrence N Kwong
Microparticle-Delivered Cxcl9 Prolongs Braf Inhibitor Efficacy In Melanoma, Gabriele Romano, Francesca Paradiso, Peng Li, Pooja Shukla, Lindsay N Barger, Olivia El Naggar, John P Miller, Roger J Liang, Timothy L Helms, Alexander J Lazar, Jennifer A Wargo, Francesca Taraballi, James C Costello, Lawrence N Kwong
Faculty, Staff and Student Publications
Patients with BRAF-mutant melanoma show substantial responses to combined BRAF and MEK inhibition, but most relapse within 2 years. A major reservoir for drug resistance is minimal residual disease (MRD), comprised of drug-tolerant tumor cells laying in a dormant state. Towards exploiting potential therapeutic vulnerabilities of MRD, we established a genetically engineered mouse model of BrafV600E-driven melanoma MRD wherein genetic BrafV600E extinction leads to strong but incomplete tumor regression. Transcriptional time-course analysis after BrafV600E extinction revealed that after an initial surge of immune activation, tumors later became immunologically "cold" after MRD establishment. Computational analysis identified candidate T-cell recruiting chemokines as …
Sexual Dimorphism In Bidirectional Sr-Mitochondria Crosstalk In Ventricular Cardiomyocytes, Richard T Clements, Radmila Terentyeva, Shanna Hamilton, Paul M L Janssen, Karim Roder, Benjamin Y Martin, Fruzsina Perger, Timothy G Schneider, Zuzana Nichtova, Anindhya S Das, Roland Veress, Beth S Lee, Do-Gyoon Kim, Gideon Koren, Matthew S Stratton, György Csordás, Federica Accornero, Andriy E Belevych, Sandor Gyorke, Dmitry Terentyev
Sexual Dimorphism In Bidirectional Sr-Mitochondria Crosstalk In Ventricular Cardiomyocytes, Richard T Clements, Radmila Terentyeva, Shanna Hamilton, Paul M L Janssen, Karim Roder, Benjamin Y Martin, Fruzsina Perger, Timothy G Schneider, Zuzana Nichtova, Anindhya S Das, Roland Veress, Beth S Lee, Do-Gyoon Kim, Gideon Koren, Matthew S Stratton, György Csordás, Federica Accornero, Andriy E Belevych, Sandor Gyorke, Dmitry Terentyev
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Calcium transfer into the mitochondrial matrix during sarcoplasmic reticulum (SR) Ca2+ release is essential to boost energy production in ventricular cardiomyocytes (VCMs) and match increased metabolic demand. Mitochondria from female hearts exhibit lower mito-[Ca2+] and produce less reactive oxygen species (ROS) compared to males, without change in respiration capacity. We hypothesized that in female VCMs, more efficient electron transport chain (ETC) organization into supercomplexes offsets the deficit in mito-Ca2+ accumulation, thereby reducing ROS production and stress-induced intracellular Ca2+ mishandling. Experiments using mitochondria-targeted biosensors confirmed lower mito-ROS and mito-[Ca2+] in female rat VCMs challenged …
Whole-Exome Sequencing Prioritizes Candidate Genes For Hereditary Cataract In The Emory Mouse Mutant, Thomas M Bennett, Yuefang Zhou, Kacie J Meyer, Michael G Anderson, Alan Shiels
Whole-Exome Sequencing Prioritizes Candidate Genes For Hereditary Cataract In The Emory Mouse Mutant, Thomas M Bennett, Yuefang Zhou, Kacie J Meyer, Michael G Anderson, Alan Shiels
2020-Current year OA Pubs
The Emory cataract (Em) mouse mutant has long been proposed as an animal model for age-related or senile cataract in humans-a leading cause of visual impairment. However, the genetic defect(s) underlying the autosomal dominant Em phenotype remains elusive. Here, we confirmed development of the cataract phenotype in commercially available Em/J mice [but not ancestral Carworth Farms White (CFW) mice] at 6-8 months of age and undertook whole-exome sequencing of candidate genes for Em. Analysis of coding and splice-site variants did not identify any disease-causing/associated mutations in over 450 genes known to underlie inherited and age-related forms of cataract and other …
Katp Channels Are Necessary For Glucose-Dependent Increases In Amyloid-Β And Alzheimer's Disease-Related Pathology, John Grizzanti, William R. Moritz, Molly Stanley, Emily E. Caesar, Maria S. Remedi, Celeste M. Karch, Colin G. Nichols, David M. Holtzman, Et Al.
Katp Channels Are Necessary For Glucose-Dependent Increases In Amyloid-Β And Alzheimer's Disease-Related Pathology, John Grizzanti, William R. Moritz, Molly Stanley, Emily E. Caesar, Maria S. Remedi, Celeste M. Karch, Colin G. Nichols, David M. Holtzman, Et Al.
2020-Current year OA Pubs
Elevated blood glucose levels, or hyperglycemia, can increase brain excitability and amyloid-β (Aβ) release, offering a mechanistic link between type 2 diabetes and Alzheimer's disease (AD). Since the cellular mechanisms governing this relationship are poorly understood, we explored whether ATP-sensitive potassium (KATP) channels, which couple changes in energy availability with cellular excitability, play a role in AD pathogenesis. First, we demonstrate that KATP channel subunits Kir6.2/KCNJ11 and SUR1/ABCC8 were expressed on excitatory and inhibitory neurons in the human brain, and cortical expression of KCNJ11 and ABCC8 changed with AD pathology in humans and mice. Next, we explored whether eliminating neuronal …
Very-Long-Chain Fatty Acids Induce Glial-Derived Sphingosine-1-Phosphate Synthesis, Secretion, And Neuroinflammation, Hyung-Lok Chung, Qi Ye, Ye-Jin Park, Zhongyuan Zuo, Jung-Wan Mok, Oguz Kanca, Sudhir Gopal Tattikota, Shenzhao Lu, Nobert Perrimon, Hyun Kyoung Lee, Hugo J Bellen
Very-Long-Chain Fatty Acids Induce Glial-Derived Sphingosine-1-Phosphate Synthesis, Secretion, And Neuroinflammation, Hyung-Lok Chung, Qi Ye, Ye-Jin Park, Zhongyuan Zuo, Jung-Wan Mok, Oguz Kanca, Sudhir Gopal Tattikota, Shenzhao Lu, Nobert Perrimon, Hyun Kyoung Lee, Hugo J Bellen
Faculty, Staff and Students Publications
VLCFAs (very-long-chain fatty acids) are the most abundant fatty acids in myelin. Hence, during demyelination or aging, glia are exposed to higher levels of VLCFA than normal. We report that glia convert these VLCFA into sphingosine-1-phosphate (S1P) via a glial-specific S1P pathway. Excess S1P causes neuroinflammation, NF-κB activation, and macrophage infiltration into the CNS. Suppressing the function of S1P in fly glia or neurons, or administration of Fingolimod, an S1P receptor antagonist, strongly attenuates the phenotypes caused by excess VLCFAs. In contrast, elevating the VLCFA levels in glia and immune cells exacerbates these phenotypes. Elevated VLCFA and S1P are also …
A Review Of The Neural Basis Underlying The Acoustic Startle Response With A Focus On Recent Developments In Mammals, Alice Zheng, Susanne Schmid
A Review Of The Neural Basis Underlying The Acoustic Startle Response With A Focus On Recent Developments In Mammals, Alice Zheng, Susanne Schmid
Anatomy and Cell Biology Publications
The startle response consists of whole-body muscle contractions, eye-blink, accelerated heart rate, and freezing in response to a strong, sudden stimulus. It is evolutionarily preserved and can be observed in any animal that can perceive sensory signals, indicating the important protective function of startle. Startle response measurements and its alterations have become a valuable tool for exploring sensorimotor processes and sensory gating, especially in the context of pathologies of psychiatric disorders. The last reviews on the neural substrates underlying acoustic startle were published around 20 years ago. Advancements in methods and techniques have since allowed new insights into acoustic startle …