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Articles 1981 - 2010 of 2945
Full-Text Articles in Medical Specialties
The Rheumatoid Arthritis Drug Auranofin Lowers Leptin Levels And Exerts Antidiabetic Effects In Obese Mice, Aaron R Cox, Peter M Masschelin, Pradip K Saha, Jessica B Felix, Robert Sharp, Zeqin Lian, Yan Xia, Natasha Chernis, David A Bader, Kang Ho Kim, Xin Li, Jun Yoshino, Xin Li, Gang Li, Zheng Sun, Huaizhu Wu, Cristian Coarfa, David D Moore, Samuel Klein, Kai Sun, Sean M Hartig
The Rheumatoid Arthritis Drug Auranofin Lowers Leptin Levels And Exerts Antidiabetic Effects In Obese Mice, Aaron R Cox, Peter M Masschelin, Pradip K Saha, Jessica B Felix, Robert Sharp, Zeqin Lian, Yan Xia, Natasha Chernis, David A Bader, Kang Ho Kim, Xin Li, Jun Yoshino, Xin Li, Gang Li, Zheng Sun, Huaizhu Wu, Cristian Coarfa, David D Moore, Samuel Klein, Kai Sun, Sean M Hartig
Faculty, Staff and Student Publications
Low-grade, sustained inflammation in white adipose tissue (WAT) characterizes obesity and coincides with type 2 diabetes mellitus (T2DM). However, pharmacological targeting of inflammation lacks durable therapeutic effects in insulin-resistant conditions. Through a computational screen, we discovered that the FDA-approved rheumatoid arthritis drug auranofin improved insulin sensitivity and normalized obesity-associated abnormalities, including hepatic steatosis and hyperinsulinemia in mouse models of T2DM. We also discovered that auranofin accumulation in WAT depleted inflammatory responses to a high-fat diet without altering body composition in obese wild-type mice. Surprisingly, elevated leptin levels and blunted beta-adrenergic receptor activity achieved by leptin receptor deletion abolished the antidiabetic …
Activity Disruption Causes Degeneration Of Entorhinal Neurons In A Mouse Model Of Alzheimer’S Circuit Dysfunction, Rong Zhao, Stacy D Grunke, Caleb A Wood, Gabriella A Perez, Melissa Comstock, Ming-Hua Li, Anand K Singh, Kyung-Won Park, Joanna L Jankowsky
Activity Disruption Causes Degeneration Of Entorhinal Neurons In A Mouse Model Of Alzheimer’S Circuit Dysfunction, Rong Zhao, Stacy D Grunke, Caleb A Wood, Gabriella A Perez, Melissa Comstock, Ming-Hua Li, Anand K Singh, Kyung-Won Park, Joanna L Jankowsky
Faculty, Staff and Students Publications
Neurodegenerative diseases are characterized by selective vulnerability of distinct cell populations; however, the cause for this specificity remains elusive. Here, we show that entorhinal cortex layer 2 (EC2) neurons are unusually vulnerable to prolonged neuronal inactivity compared with neighboring regions of the temporal lobe, and that reelin + stellate cells connecting EC with the hippocampus are preferentially susceptible within the EC2 population. We demonstrate that neuronal death after silencing can be elicited through multiple independent means of activity inhibition, and that preventing synaptic release, either alone or in combination with electrical shunting, is sufficient to elicit silencing-induced degeneration. Finally, we …
A Time And Place For Inhibiting Autophagy, Boyi Gan
A Time And Place For Inhibiting Autophagy, Boyi Gan
Faculty, Staff and Student Publications
Autophagy is an attractive therapeutic target in cancer. Successful autophagy-focused clinical intervention will require a detailed understanding of when and where autophagy is important during tumorigenesis. In this issue of Cancer Research, Khayati and colleagues use state-of-the-art genetically engineered mouse models to demonstrate that transient systemic inhibition of autophagy can irreversibly impair the growth of established lung tumors with a good tolerability in normal tissues, suggesting a therapeutic strategy for cancer treatment.
Treatment Of Epilepsy Using A Targeted P38Γ Kinase Gene Therapy, Nicolle Morey, Magdalena Przybyla, Julia Van Der Hoven, Yazi D Ke, Fabien Delerue, Janet Van Eersel, Lars M Ittner
Treatment Of Epilepsy Using A Targeted P38Γ Kinase Gene Therapy, Nicolle Morey, Magdalena Przybyla, Julia Van Der Hoven, Yazi D Ke, Fabien Delerue, Janet Van Eersel, Lars M Ittner
Faculty, Staff and Student Publications
Hyperphosphorylated microtubule-associated protein tau has been implicated in dementia, epilepsy, and other neurological disorders. In contrast, site-specific phosphorylation of tau at threonine 205 (T205) by the kinase p38γ was shown to disengage tau from toxic pathways, serving a neuroprotective function in Alzheimer's disease. Using a viral-mediated gene delivery approach in different mouse models of epilepsy, we show that p38γ activity-enhancing treatment reduces seizure susceptibility, restores neuronal firing patterns, reduces behavioral deficits, and ameliorates epilepsy-induced deaths. Furthermore, we show that p38γ-mediated phosphorylation of tau at T205 is essential for this protection in epilepsy, as a lack of this critical interaction reinstates …
Expression And Localization Of Nrf2/Keap1 Signalling Pathway Genes In Mouse Preimplantation Embryos Exposed To Free Fatty Acids., Grace Dionne, Michele D. Calder, Dean H Betts, Basim Abu Rafea, Andrew J Watson
Expression And Localization Of Nrf2/Keap1 Signalling Pathway Genes In Mouse Preimplantation Embryos Exposed To Free Fatty Acids., Grace Dionne, Michele D. Calder, Dean H Betts, Basim Abu Rafea, Andrew J Watson
Obstetrics & Gynaecology Publications
Obese women experience greater incidence of infertility, with reproductive tracts exposing preimplantation embryos to elevated free fatty acids (FFA) such as palmitic acid (PA) and oleic acid (OA). PA treatment impairs mouse preimplantation development in vitro, while OA co-treatment rescues blastocyst development of PA treated embryos. In the present study, we investigated the effects of PA and OA treatment on NRF2/Keap1 localization, and relative antioxidant enzyme (Glutathione peroxidase; Gpx1, Catalase; Cat, Superoxide dismutase; Sod1 and γ-Glutamylcysteine ligase catalytic unit; Gclc) mRNA levels, during in vitro mouse preimplantation embryo development. Female mice were superovulated, mated, and embryos cultured in the presence …
Targeting The Mtor Pathway For The Prevention Of Er-Negative Breast Cancer, Abhijit Mazumdar, William M Tahaney, Jamal L Hill, Yun Zhang, Sumankalai Ramachandran, Jitesh Kawedia, Jing Qian, Alejandro Contreras, Michelle I Savage, Lana A Vornik, Shizuko Sei, Altaf Mohammed, Powel H Brown
Targeting The Mtor Pathway For The Prevention Of Er-Negative Breast Cancer, Abhijit Mazumdar, William M Tahaney, Jamal L Hill, Yun Zhang, Sumankalai Ramachandran, Jitesh Kawedia, Jing Qian, Alejandro Contreras, Michelle I Savage, Lana A Vornik, Shizuko Sei, Altaf Mohammed, Powel H Brown
Faculty, Staff and Student Publications
Our results show that everolimus delays mammary tumor formation in multiple mouse models, suggesting that mTOR inhibitors will be useful for the prevention of ER-negative and triple-negative breast cancer in humans. See related Spotlight, p. 787.
Targeted Ablation Of Fn14 Receptor Improves Exercise Capacity And Inhibits Neurogenic Muscle Atrophy, Meiricris Tomaz Da Silva, Aniket S Joshi, Tatiana E Koike, Anirban Roy, Kavya Mathukumalli, Danesh H Sopariwala, Vihang A Narkar, Ashok Kumar
Targeted Ablation Of Fn14 Receptor Improves Exercise Capacity And Inhibits Neurogenic Muscle Atrophy, Meiricris Tomaz Da Silva, Aniket S Joshi, Tatiana E Koike, Anirban Roy, Kavya Mathukumalli, Danesh H Sopariwala, Vihang A Narkar, Ashok Kumar
Faculty, Staff and Student Publications
Skeletal muscle atrophy is a prevalent complication in multiple chronic diseases and disuse conditions. Fibroblast growth factor-inducible 14 (Fn14) is a member of the TNF receptor superfamily and a bona fide receptor of the TWEAK cytokine. Accumulating evidence suggests that Fn14 levels are increased in catabolic conditions as well as during exercise. However, the role of Fn14 in the regulation of skeletal muscle mass and function remains poorly understood. In this study, through the generation of novel skeletal muscle-specific Fn14-knockout mice, we have investigated the muscle role of Fn14 in the regulation of exercise capacity and denervation-induced muscle atrophy. Our …
Uncloaking Cell-Impermeant Gold Nanorods Via Tumor Microenvironmental Cathepsin B Facilitates Cancer Cell Penetration And Potent Radiosensitization, Subhiksha Raghuram, Yuri Mackeyev, Jessica Symons, Yasmin Zahra, Valeria Gonzalez, Krishnan K Mahadevan, Katherinne I Requejo, Anton Liopo, Paul Derry, Eugene Zubarev, Onur Sahin, Joseph Byung-Kyu Kim, Pankaj K Singh, Sang Hyun Cho, Sunil Krishnan
Uncloaking Cell-Impermeant Gold Nanorods Via Tumor Microenvironmental Cathepsin B Facilitates Cancer Cell Penetration And Potent Radiosensitization, Subhiksha Raghuram, Yuri Mackeyev, Jessica Symons, Yasmin Zahra, Valeria Gonzalez, Krishnan K Mahadevan, Katherinne I Requejo, Anton Liopo, Paul Derry, Eugene Zubarev, Onur Sahin, Joseph Byung-Kyu Kim, Pankaj K Singh, Sang Hyun Cho, Sunil Krishnan
Faculty, Staff and Student Publications
Major impediments to conveyance of intravenously administered drugs to tumors are biofouling, opsonization, and rapid clearance from the circulation by macrophages and reticuloendothelial phagocytes. Cloaking nanoparticles with stealth epilayers partly overcomes these hurdles but it also foils interactions with tumor cells. Here, we describe the synthesis, characterization, and validation of smart gold nanorods (GNRs) that spontaneously transform from inert passengers in the blood stream to active cell-penetrating nanoparticles within tumors to potently sensitize tumors to radiation therapy. Intrinsically cationic and cell-penetrating GNRs were shielded from phagocytosis with a cloaking polyethylene glycol epilayer containing an intervening cleavable peptide. In the absence …
Loss Of Wnt4 In The Gubernaculum Causes Unilateral Cryptorchidism And Fertility Defects, Abhishek Seth, Juan C Bournat, Olga Medina-Martinez, Armando Rivera, Joshua Moore, Hunter Flores, Jill A Rosenfeld, Liya Hu, Carolina J Jorgez
Loss Of Wnt4 In The Gubernaculum Causes Unilateral Cryptorchidism And Fertility Defects, Abhishek Seth, Juan C Bournat, Olga Medina-Martinez, Armando Rivera, Joshua Moore, Hunter Flores, Jill A Rosenfeld, Liya Hu, Carolina J Jorgez
Faculty, Staff and Students Publications
Undescended testis (UDT) affects 6% of male births. Despite surgical correction, some men with unilateral UDT may experience infertility with the contralateral descended testis (CDT) showing no A-dark spermatogonia. To improve our understanding of the etiology of infertility in UDT, we generated a novel murine model of left unilateral UDT. Gubernaculum-specific Wnt4 knockout (KO) mice (Wnt4-cKO) were generated using retinoic acid receptor β2-cre mice and were found to have a smaller left-unilateral UDT. Wnt4-cKO mice with abdominal UDT had an increase in serum follicle-stimulating hormone and luteinizing hormone and an absence of germ cells in the undescended testicle. Wnt4-cKO mice …
Human Islet Amyloid Polypeptide (Hiapp) Protofibril-Specific Antibodies For Detection And Treatment Of Type 2 Diabetes, Angelina S Bortoletto, W Vallen Graham, Gabriella Trout, Alessandra Bonito-Oliva, Manija A Kazmi, Jing Gong, Emily Weyburne, Brandy L Houser, Thomas P Sakmar, Ronald J Parchem
Human Islet Amyloid Polypeptide (Hiapp) Protofibril-Specific Antibodies For Detection And Treatment Of Type 2 Diabetes, Angelina S Bortoletto, W Vallen Graham, Gabriella Trout, Alessandra Bonito-Oliva, Manija A Kazmi, Jing Gong, Emily Weyburne, Brandy L Houser, Thomas P Sakmar, Ronald J Parchem
Faculty, Staff and Students Publications
Type 2 diabetes mellitus (T2D) is a major public health concern and is characterized by sustained hyperglycemia due to insulin resistance and destruction of insulin-producing β cells. One pathological hallmark of T2D is the toxic accumulation of human islet amyloid polypeptide (hIAPP) aggregates. Monomeric hIAPP is a hormone normally co-secreted with insulin. However, increased levels of hIAPP in prediabetic and diabetic patients can lead to the formation of hIAPP protofibrils, which are toxic to β cells. Current therapies fail to address hIAPP aggregation and current screening modalities do not detect it. Using a stabilizing capping protein, monoclonal antibodies (mAbs) can …
Randomization, Design And Analysis For Interdependency In Aging Research: No Person Or Mouse Is An Island, Daniella E Chusyd, Steven N Austad, Stephanie L Dickinson, Keisuke Ejima, Gary L Gadbury, Lilian Golzarri-Arroyo, Richard J Holden, Yasaman Jamshidi-Naeini, Doug Landsittel, Tapan Mehta, J Michael Oakes, Arthur H Owora, Greg Pavela, Javier Rojo, Michael W Sandel, Daniel L Smith, Colby J Vorland, Pengcheng Xun, Roger Zoh, David B Allison
Randomization, Design And Analysis For Interdependency In Aging Research: No Person Or Mouse Is An Island, Daniella E Chusyd, Steven N Austad, Stephanie L Dickinson, Keisuke Ejima, Gary L Gadbury, Lilian Golzarri-Arroyo, Richard J Holden, Yasaman Jamshidi-Naeini, Doug Landsittel, Tapan Mehta, J Michael Oakes, Arthur H Owora, Greg Pavela, Javier Rojo, Michael W Sandel, Daniel L Smith, Colby J Vorland, Pengcheng Xun, Roger Zoh, David B Allison
Children’s Nutrition Research Center Staff Publications
Investigators traditionally use randomized designs and corresponding analysis procedures to make causal inferences about the effects of interventions, assuming independence between an individual's outcome and treatment assignment and the outcomes of other individuals in the study. Often, such independence may not hold. We provide examples of interdependency in model organism studies and human trials and group effects in aging research and then discuss methodologic issues and solutions. We group methodologic issues as they pertain to (1) single-stage individually randomized trials; (2) cluster-randomized controlled trials; (3) pseudo-cluster-randomized trials; (4) individually randomized group treatment; and (5) two-stage randomized designs. Although we present …
Human Loss-Of-Function Variants In The Serotonin 2c Receptor Associated With Obesity And Maladaptive Behavior, Yang He, Bas Brouwers, Hesong Liu, Hailan Liu, Katherine Lawler, Edson Mendes De Oliveira, Dong-Kee Lee, Yongjie Yang, Aaron R Cox, Julia M Keogh, Elana Henning, Rebecca Bounds, Aliki Perdikari, Vikram Ayinampudi, Chunmei Wang, Meng Yu, Longlong Tu, Nan Zhang, Na Yin, Junying Han, Nikolas A Scarcelli, Zili Yan, Kristine M Conde, Camille Potts, Jonathan C Bean, Mengjie Wang, Sean M Hartig, Lan Liao, Jianming Xu, Inês Barroso, Jacek Mokrosinski, Yong Xu, I Sadaf Farooqi
Human Loss-Of-Function Variants In The Serotonin 2c Receptor Associated With Obesity And Maladaptive Behavior, Yang He, Bas Brouwers, Hesong Liu, Hailan Liu, Katherine Lawler, Edson Mendes De Oliveira, Dong-Kee Lee, Yongjie Yang, Aaron R Cox, Julia M Keogh, Elana Henning, Rebecca Bounds, Aliki Perdikari, Vikram Ayinampudi, Chunmei Wang, Meng Yu, Longlong Tu, Nan Zhang, Na Yin, Junying Han, Nikolas A Scarcelli, Zili Yan, Kristine M Conde, Camille Potts, Jonathan C Bean, Mengjie Wang, Sean M Hartig, Lan Liao, Jianming Xu, Inês Barroso, Jacek Mokrosinski, Yong Xu, I Sadaf Farooqi
Children’s Nutrition Research Center Staff Publications
Serotonin reuptake inhibitors and receptor agonists are used to treat obesity, anxiety and depression. Here we studied the role of the serotonin 2C receptor (5-HT2CR) in weight regulation and behavior. Using exome sequencing of 2,548 people with severe obesity and 1,117 control individuals without obesity, we identified 13 rare variants in the gene encoding 5-HT2CR (HTR2C) in 19 unrelated people (3 males and 16 females). Eleven variants caused a loss of function in HEK293 cells. All people who carried variants had hyperphagia and some degree of maladaptive behavior. Knock-in male mice harboring a human loss-of-function HTR2C variant developed …
Propranolol Modulates Cerebellar Circuit Activity And Reduces Tremor., Joy Zhou, Meike E Van Der Heijden, Luis E Salazar Leon, Tao Lin, Lauren N Miterko, Dominic J Kizek, Ross M Perez, Matea Pavešković, Amanda M Brown, Roy V Sillitoe
Propranolol Modulates Cerebellar Circuit Activity And Reduces Tremor., Joy Zhou, Meike E Van Der Heijden, Luis E Salazar Leon, Tao Lin, Lauren N Miterko, Dominic J Kizek, Ross M Perez, Matea Pavešković, Amanda M Brown, Roy V Sillitoe
Duncan NRI Faculty and Staff Publications
Tremor is the most common movement disorder. Several drugs reduce tremor severity, but no cures are available. Propranolol, a β-adrenergic receptor blocker, is the leading treatment for tremor. However, the in vivo circuit mechanisms by which propranolol decreases tremor remain unclear. Here, we test whether propranolol modulates activity in the cerebellum, a key node in the tremor network. We investigated the effects of propranolol in healthy control mice and Car8wdl/wdl mice, which exhibit pathophysiological tremor and ataxia due to cerebellar dysfunction. Propranolol reduced physiological tremor in control mice and reduced pathophysiological tremor in Car8wdl/wdl mice to control levels. …
Small Molecule Targeting Nav17 Via Inhibition Of The Crmp2-Ubc9 Interaction Reduces Pain In Chronic Constriction Injury (Cci) Rats, Jiahe Li, Harrison J Stratton, Sabina A Lorca, Peter M Grace, Rajesh Khanna
Small Molecule Targeting Nav17 Via Inhibition Of The Crmp2-Ubc9 Interaction Reduces Pain In Chronic Constriction Injury (Cci) Rats, Jiahe Li, Harrison J Stratton, Sabina A Lorca, Peter M Grace, Rajesh Khanna
Faculty, Staff and Student Publications
The voltage-gated sodium channel isoform NaV1.7 is a critical player in the transmission of nociceptive information. This channel has been heavily implicated in human genetic pain disorders and is a validated pain target. However, targeting this channel directly has failed, and an indirect approach - disruption of interactions with accessory protein partners - has emerged as a viable alternative strategy. We recently reported that a small-molecule inhibitor of CRMP2 SUMOylation, compound
Evaluation Of Murine Host Sex As A Biological Variable In Transplanted Human Intestinal Organoid Development, Eoin P Mcneill, Vikas S Gupta, David J Sequeira, Noah F Shroyer, Allison L Speer
Evaluation Of Murine Host Sex As A Biological Variable In Transplanted Human Intestinal Organoid Development, Eoin P Mcneill, Vikas S Gupta, David J Sequeira, Noah F Shroyer, Allison L Speer
Faculty, Staff and Student Publications
Background: Human intestinal organoids (HIOs), when transplanted into immunocompromised mice (tHIOs), demonstrate significant growth and maturation. While both male and female mice are reported to be viable hosts for these experiments, a direct comparison of sex-related differences in tHIO structure and development has not been performed.
Aims: We sought to identify host sex-related differences in tHIO engraftment, morphology, and epithelial and mesenchymal development.
Methods: HIOs were generated in vitro and transplanted beneath the kidney capsule of NSG male and female mice. tHIOs were harvested at 8-9 weeks. Anthropometric measurements were captured. tHIOs were divided in half and histology or RT-qPCR …
Metabolome And Microbiome Multi-Omics Integration From A Murine Lung Inflammation Model Of Bronchopulmonary Dysplasia, Ahmed El Saie, Chenlian Fu, Sandra L Grimm, Matthew J Robertson, Kristi Hoffman, Vasanta Putluri, Chandra Shekar R Ambati, Nagireddy Putluri, Binoy Shivanna, Cristian Coarfa, Mohan Pammi
Metabolome And Microbiome Multi-Omics Integration From A Murine Lung Inflammation Model Of Bronchopulmonary Dysplasia, Ahmed El Saie, Chenlian Fu, Sandra L Grimm, Matthew J Robertson, Kristi Hoffman, Vasanta Putluri, Chandra Shekar R Ambati, Nagireddy Putluri, Binoy Shivanna, Cristian Coarfa, Mohan Pammi
Faculty, Staff and Students Publications
BACKGROUND: Respiratory tract microbial dysbiosis can exacerbate inflammation and conversely inflammation may cause dysbiosis. Dysbiotic microbiome metabolites may lead to bronchopulmonary dysplasia (BPD). Hyperoxia and lipopolysaccharide (LPS) interaction alters lung microbiome and metabolome, mediating BPD lung injury sequence.
METHODS: C57BL6/J mice were exposed to 21% (normoxia) or 70% (hyperoxia) oxygen during postnatal days (PND) 1-14. Pups were injected with LPS (6 mg/kg) or equal PBS volume, intraperitoneally on PND 3, 5, and 7. At PND14, the lungs were collected for microbiome and metabolomic analyses (n = 5/group).
RESULTS: Microbiome alpha and beta diversity were similar between groups. Metabolic changes included …
Cic Missense Variants Contribute To Susceptibility For Spina Bifida, Xiao Han, Xuanye Cao, Vanessa Aguiar-Pulido, Wei Yang, Menuka Karki, Paula Andrea Pimienta Ramirez, Robert M Cabrera, Ying Linda Lin, Bogdan J Wlodarczyk, Gary M Shaw, M Elizabeth Ross, Cuilian Zhang, Richard H Finnell, Yunping Lei
Cic Missense Variants Contribute To Susceptibility For Spina Bifida, Xiao Han, Xuanye Cao, Vanessa Aguiar-Pulido, Wei Yang, Menuka Karki, Paula Andrea Pimienta Ramirez, Robert M Cabrera, Ying Linda Lin, Bogdan J Wlodarczyk, Gary M Shaw, M Elizabeth Ross, Cuilian Zhang, Richard H Finnell, Yunping Lei
Faculty, Staff and Students Publications
Neural tube defects (NTDs) are congenital malformations resulting from abnormal embryonic development of the brain, spine, or spinal column. The genetic etiology of human NTDs remains poorly understood despite intensive investigation. CIC, homolog of the Capicua transcription repressor, has been reported to interact with ataxin-1 (ATXN1) and participate in the pathogenesis of spinocerebellar ataxia type 1. Our previous study demonstrated that CIC loss of function (LoF) variants contributed to the cerebral folate deficiency syndrome by downregulating folate receptor 1 (FOLR1) expression. Given the importance of folate transport in neural tube formation, we hypothesized that CIC variants could contribute to increased …
Pet/Mr Imaging Of A Lung Metastasis Model Of Clear Cell Renal Cell Carcinoma With (2s,4r)-4-[18f]Fluoroglutamine, Alyssa C Pollard, Vincenzo Paolillo, Bhasker Radaram, Sarah Qureshy, Li Li, Tapati Maity, Lei Wang, Md Nasir Uddin, Christopher G Wood, Jose A Karam, Mark D Pagel, David Piwnica-Worms, Steven W Millward, Natalie Wall Fowlkes, William Norton, Brian J Engel, Federica Pisaneschi, Niki M Zacharias
Pet/Mr Imaging Of A Lung Metastasis Model Of Clear Cell Renal Cell Carcinoma With (2s,4r)-4-[18f]Fluoroglutamine, Alyssa C Pollard, Vincenzo Paolillo, Bhasker Radaram, Sarah Qureshy, Li Li, Tapati Maity, Lei Wang, Md Nasir Uddin, Christopher G Wood, Jose A Karam, Mark D Pagel, David Piwnica-Worms, Steven W Millward, Natalie Wall Fowlkes, William Norton, Brian J Engel, Federica Pisaneschi, Niki M Zacharias
Faculty, Staff and Student Publications
Purpose: Metabolic reprogramming plays an important role in the tumorigenesis of clear cell renal cell carcinoma (ccRCC). Currently, positron emission tomography (PET) reporters are not used clinically to visualize altered glutamine metabolism in ccRCC, which greatly hinders detection, staging, and real-time therapeutic assessment. We sought to determine if (2S,4R)-4-[18F]fluoroglutamine ([18F]FGln) could be used to interrogate altered glutamine metabolism in ccRCC lesions in the lung.
Procedures: We generated a novel ccRCC lung lesion model using the ccRCC cell line UMRC3 stably transfected with GFP and luciferase constructs. This cell line was used for characterization of [18F]FGln uptake and retention by transport …
The Circadian Nobiletin-Ror Axis Suppresses Adipogenic Differentiation And Iκbα/Nf-Κb Signaling In Adipocytes, Ji Ye Lim, Eunju Kim, Collin M Douglas, Marvin Wirianto, Chorong Han, Kaori Ono, Sun Young Kim, Justin H Ji, Celia K Tran, Zheng Chen, Karyn A Esser, Seung-Hee Yoo
The Circadian Nobiletin-Ror Axis Suppresses Adipogenic Differentiation And Iκbα/Nf-Κb Signaling In Adipocytes, Ji Ye Lim, Eunju Kim, Collin M Douglas, Marvin Wirianto, Chorong Han, Kaori Ono, Sun Young Kim, Justin H Ji, Celia K Tran, Zheng Chen, Karyn A Esser, Seung-Hee Yoo
Faculty, Staff and Student Publications
Numerous molecular and physiological processes in the skeletal muscle undergo circadian time-dependent oscillations in accordance with daily activity/rest cycles. The circadian regulatory mechanisms underlying these cyclic processes, especially at the post-transcriptional level, are not well defined. Previously, we reported that the circadian E3 ligase FBXL21 mediates rhythmic degradation of the sarcomere protein TCAP in conjunction with GSK-3β, and Psttm mice harboring an Fbxl21 hypomorph allele show reduced muscle fiber diameter and impaired muscle function. To further elucidate the regulatory function of FBXL21 in skeletal muscle, we investigated another sarcomere protein, Myozenin1 (MYOZ1), that we identified as an FBXL21-binding protein from …
Mdm2 Antagonist Improves Therapeutic Activity Of Azacitidine In Myelodysplastic Syndromes And Chronic Myelomonocytic Leukemia, Yue Wei, Hong Zheng, Pamela Pennington Lockyer, Faezeh Darbaniyan, Ziyi Li, Rashmi Kanagal-Shamanna, Kelly A Soltysiak, Hui Yang, Irene Ganan-Gomez, Guillermo Montalban-Bravo, Kelly S Chien, Kim-Anh Do, Naval Daver, Guillermo Garcia-Manero
Mdm2 Antagonist Improves Therapeutic Activity Of Azacitidine In Myelodysplastic Syndromes And Chronic Myelomonocytic Leukemia, Yue Wei, Hong Zheng, Pamela Pennington Lockyer, Faezeh Darbaniyan, Ziyi Li, Rashmi Kanagal-Shamanna, Kelly A Soltysiak, Hui Yang, Irene Ganan-Gomez, Guillermo Montalban-Bravo, Kelly S Chien, Kim-Anh Do, Naval Daver, Guillermo Garcia-Manero
Faculty, Staff and Student Publications
Failure of hypomethylation agent (HMA) treatments is an important issue in myelodysplastic syndromes (MDS) and chronic myelomonocytic leukemia (CMML). Recent studies indicated that function of wildtype TP53 positively impacts outcome of HMA treatments. We investigated the combination of the HMA azacitidine (AZA) with DS-3032b and DS-5272, novel antagonists of the TP53 negative regulator MDM2, in cellular and animal models of MDS and CMML. In TP53 wildtype myeloid cell line, combinational effects of DS-3032b or DS-5272 with AZA were observed. In Tet2-knockout mouse model of MDS and CMML, DS-5272 and AZA combination ameliorated disease-like phenotype. RNA-Seq analysis in mouse bone …
Direct Cd32 T-Cell Cytotoxicity: Implications For Breast Cancer Prognosis And Treatment, Giuseppe Sconocchia, Giulia Lanzilli, Valeriana Cesarini, Domenico A Silvestris, Katayoun Rezvani, Roberto Arriga, Sara Caratelli, Ken Chen, Jinzhuang Dou, Carlo Cenciarelli, Gabriele Toietta, Silvia Baldari, Tommaso Sconocchia, Francesca De Paolis, Anna Aureli, Giandomenica Iezzi, Maria Irno Consalvo, Francesco Buccisano, Maria I Del Principe, Luca Maurillo, Adriano Venditti, Alessio Ottaviani, Giulio C Spagnoli
Direct Cd32 T-Cell Cytotoxicity: Implications For Breast Cancer Prognosis And Treatment, Giuseppe Sconocchia, Giulia Lanzilli, Valeriana Cesarini, Domenico A Silvestris, Katayoun Rezvani, Roberto Arriga, Sara Caratelli, Ken Chen, Jinzhuang Dou, Carlo Cenciarelli, Gabriele Toietta, Silvia Baldari, Tommaso Sconocchia, Francesca De Paolis, Anna Aureli, Giandomenica Iezzi, Maria Irno Consalvo, Francesco Buccisano, Maria I Del Principe, Luca Maurillo, Adriano Venditti, Alessio Ottaviani, Giulio C Spagnoli
Faculty, Staff and Student Publications
The FcγRII (CD32) ligands are IgFc fragments and pentraxins. The existence of additional ligands is unknown. We engineered T cells with human chimeric receptors resulting from the fusion between CD32 extracellular portion and transmembrane CD8α linked to CD28/ζ chain intracellular moiety (CD32-CR). Transduced T cells recognized three breast cancer (BC) and one colon cancer cell line among 15 tested in the absence of targeting antibodies. Sensitive BC cell conjugation with CD32-CR T cells induced CD32 polarization and down-regulation, CD107a release, mutual elimination, and proinflammatory cytokine production unaffected by human IgGs but enhanced by cetuximab. CD32-CR T cells protected immunodeficient mice …
Analysis Of Genome-Wide Knockout Mouse Database Identifies Candidate Ciliopathy Genes, Kendall Higgins, Bret A Moore, Zorana Berberovic, Hibret A Adissu, Mohammad Eskandarian, Ann M Flenniken, Andy Shao, Denise M Imai, Dave Clary, Louise Lanoue, Susan Newbigging, Lauryl M J Nutter, David J Adams, Fatima Bosch, Robert E Braun, Steve D M Brown, Mary E Dickinson, Michael Dobbie, Paul Flicek, Xiang Gao, Sanjeev Galande, Anne Grobler, Jason D Heaney, Yann Herault, Martin Hrabe De Angelis, Hsian-Jean Genie Chin, Fabio Mammano, Chuan Qin, Toshihiko Shiroishi, Radislav Sedlacek, J-K Seong, Ying Xu, Impc Consortium, K C Kent Lloyd, Colin Mckerlie, Ala Moshiri
Analysis Of Genome-Wide Knockout Mouse Database Identifies Candidate Ciliopathy Genes, Kendall Higgins, Bret A Moore, Zorana Berberovic, Hibret A Adissu, Mohammad Eskandarian, Ann M Flenniken, Andy Shao, Denise M Imai, Dave Clary, Louise Lanoue, Susan Newbigging, Lauryl M J Nutter, David J Adams, Fatima Bosch, Robert E Braun, Steve D M Brown, Mary E Dickinson, Michael Dobbie, Paul Flicek, Xiang Gao, Sanjeev Galande, Anne Grobler, Jason D Heaney, Yann Herault, Martin Hrabe De Angelis, Hsian-Jean Genie Chin, Fabio Mammano, Chuan Qin, Toshihiko Shiroishi, Radislav Sedlacek, J-K Seong, Ying Xu, Impc Consortium, K C Kent Lloyd, Colin Mckerlie, Ala Moshiri
Faculty, Staff and Students Publications
We searched a database of single-gene knockout (KO) mice produced by the International Mouse Phenotyping Consortium (IMPC) to identify candidate ciliopathy genes. We first screened for phenotypes in mouse lines with both ocular and renal or reproductive trait abnormalities. The STRING protein interaction tool was used to identify interactions between known cilia gene products and those encoded by the genes in individual knockout mouse strains in order to generate a list of "candidate ciliopathy genes." From this list, 32 genes encoded proteins predicted to interact with known ciliopathy proteins. Of these, 25 had no previously described roles in ciliary pathobiology. …
Histopathologic And Transcriptomic Phenotypes Of A Conditional Rankl Transgenic Mouse Thymus, Maria M Szwarc, Lan Hai, Vineet K Maurya, Kimal Rajapakshe, Dimuthu Perera, Michael M Ittmann, Qianxing Mo, Yong Lin, Matthew L Bettini, Cristian Coarfa, John P Lydon
Histopathologic And Transcriptomic Phenotypes Of A Conditional Rankl Transgenic Mouse Thymus, Maria M Szwarc, Lan Hai, Vineet K Maurya, Kimal Rajapakshe, Dimuthu Perera, Michael M Ittmann, Qianxing Mo, Yong Lin, Matthew L Bettini, Cristian Coarfa, John P Lydon
Faculty, Staff and Students Publications
Although conventional knockout and transgenic mouse models have significantly advanced our understanding of Receptor Activator of NF-κB Ligand (RANKL) signaling in intra-thymic crosstalk that establishes self-tolerance and later stages of lymphopoiesis, the unique advantages of conditional mouse transgenesis have yet to be explored. A main advantage of conditional transgenesis is the ability to express a transgene in a spatiotemporal restricted manner, enabling the induction (or de-induction) of transgene expression during predetermined stages of embryogenesis or during defined postnatal developmental or physiological states, such as puberty, adulthood, and pregnancy. Here, we describe the K5: RANKL bigenic mouse, in which transgene derived …
Hdac2 In Primary Sensory Neurons Constitutively Restrains Chronic Pain By Repressing Α2Δ-1 Expression And Associated Nmda Receptor Activity, Jixiang Zhang, Shao-Rui Chen, Meng-Hua Zhou, Daozhong Jin, Hong Chen, Li Wang, Ronald A Depinho, Hui-Lin Pan
Hdac2 In Primary Sensory Neurons Constitutively Restrains Chronic Pain By Repressing Α2Δ-1 Expression And Associated Nmda Receptor Activity, Jixiang Zhang, Shao-Rui Chen, Meng-Hua Zhou, Daozhong Jin, Hong Chen, Li Wang, Ronald A Depinho, Hui-Lin Pan
Faculty, Staff and Student Publications
α2δ-1 (encoded by the Cacna2d1 gene) is a newly discovered NMDA receptor-interacting protein and is the therapeutic target of gabapentinoids (e.g., gabapentin and pregabalin) frequently used for treating patients with neuropathic pain. Nerve injury causes sustained α2δ-1 upregulation in the dorsal root ganglion (DRG), which promotes NMDA receptor synaptic trafficking and activation in the spinal dorsal horn, a hallmark of chronic neuropathic pain. However, little is known about how nerve injury initiates and maintains the high expression level of α2δ-1 to sustain chronic pain. Here, we show that nerve injury caused histone hyperacetylation and diminished enrichment of histone deacetylase-2 (HDAC2), …
Hippo-Yap Signaling Maintains Sinoatrial Node Homeostasis, Mingjie Zheng, Rich G Li, Jia Song, Xiaolei Zhao, Li Tang, Shannon Erhardt, Wen Chen, Bao H Nguyen, Xiao Li, Min Li, Jianxin Wang, Sylvia M Evans, Vincent M Christoffels, Na Li, Jun Wang
Hippo-Yap Signaling Maintains Sinoatrial Node Homeostasis, Mingjie Zheng, Rich G Li, Jia Song, Xiaolei Zhao, Li Tang, Shannon Erhardt, Wen Chen, Bao H Nguyen, Xiao Li, Min Li, Jianxin Wang, Sylvia M Evans, Vincent M Christoffels, Na Li, Jun Wang
Faculty, Staff and Student Publications
BACKGROUND: The sinoatrial node (SAN) functions as the pacemaker of the heart, initiating rhythmic heartbeats. Despite its importance, the SAN is one of the most poorly understood cardiac entities because of its small size and complex composition and function. The Hippo signaling pathway is a molecular signaling pathway fundamental to heart development and regeneration. Although abnormalities of the Hippo pathway are associated with cardiac arrhythmias in human patients, the role of this pathway in the SAN is unknown.
METHODS: We investigated key regulators of the Hippo pathway in SAN pacemaker cells by conditionally inactivating the Hippo signaling kinases
RESULTS: We …
Inactivation Of Lats1/2 Drives Luminal-Basal Plasticity To Initiate Basal-Like Mammary Carcinomas, Joseph G Kern, Andrew M Tilston-Lunel, Anthony Federico, Boting Ning, Amy Mueller, Grace B Peppler, Eleni Stampouloglou, Nan Cheng, Randy L Johnson, Marc E Lenburg, Jennifer E Beane, Stefano Monti, Xaralabos Varelas
Inactivation Of Lats1/2 Drives Luminal-Basal Plasticity To Initiate Basal-Like Mammary Carcinomas, Joseph G Kern, Andrew M Tilston-Lunel, Anthony Federico, Boting Ning, Amy Mueller, Grace B Peppler, Eleni Stampouloglou, Nan Cheng, Randy L Johnson, Marc E Lenburg, Jennifer E Beane, Stefano Monti, Xaralabos Varelas
Faculty, Staff and Student Publications
Basal-like breast cancers, an aggressive breast cancer subtype that has poor treatment options, are thought to arise from luminal mammary epithelial cells that undergo basal plasticity through poorly understood mechanisms. Using genetic mouse models and ex vivo primary organoid cultures, we show that conditional co-deletion of the LATS1 and LATS2 kinases, key effectors of Hippo pathway signaling, in mature mammary luminal epithelial cells promotes the development of Krt14 and Sox9-expressing basal-like carcinomas that metastasize over time. Genetic co-deletion experiments revealed that phenotypes resulting from the loss of LATS1/2 activity are dependent on the transcriptional regulators YAP/TAZ. Gene expression analyses of …
Oxphos Promotes Apoptotic Resistance And Cellular Persistence In Th17 Cells In The Periphery And Tumor Microenvironment, Hanna S Hong, Nneka E Mbah, Mengrou Shan, Kristen Loesel, Lin Lin, Peter Sajjakulnukit, Luis O Correa, Anthony Andren, Jason Lin, Atsushi Hayashi, Brian Magnuson, Judy Chen, Zhaoheng Li, Yuying Xie, Li Zhang, Daniel R Goldstein, Shannon A Carty, Yu Leo Lei, Anthony W Opipari, Rafael J Argüello, Ilona Kryczek, Nobuhiko Kamada, Weiping Zou, Luigi Franchi, Costas A Lyssiotis
Oxphos Promotes Apoptotic Resistance And Cellular Persistence In Th17 Cells In The Periphery And Tumor Microenvironment, Hanna S Hong, Nneka E Mbah, Mengrou Shan, Kristen Loesel, Lin Lin, Peter Sajjakulnukit, Luis O Correa, Anthony Andren, Jason Lin, Atsushi Hayashi, Brian Magnuson, Judy Chen, Zhaoheng Li, Yuying Xie, Li Zhang, Daniel R Goldstein, Shannon A Carty, Yu Leo Lei, Anthony W Opipari, Rafael J Argüello, Ilona Kryczek, Nobuhiko Kamada, Weiping Zou, Luigi Franchi, Costas A Lyssiotis
Faculty, Staff and Student Publications
T cell proliferation and cytokine production are bioenergetically and biosynthetically costly. The inability to meet these metabolic demands results in altered differentiation, accompanied by impaired effector function, and attrition of the immune response. Interleukin-17-producing CD4 T cells (TH17s) are mediators of host defense, autoimmunity, and antitumor immunity in the setting of adoptive T cell therapy. TH17s are long-lived cells that require mitochondrial oxidative phosphorylation (OXPHOS) for effector function in vivo. Considering that TH17s polarized under standardized culture conditions are predominately glycolytic, little is known about how OXPHOS regulates TH17 processes, such as their ability to persist and thus contribute to …
Temporal Regulation Of Notch Activation Improves Arteriovenous Fistula Maturation, Qunying Guo, Guang Chen, Hunter Cheng, Ying Qing, Luan Truong, Quan Ma, Yun Wang, Jizhong Cheng
Temporal Regulation Of Notch Activation Improves Arteriovenous Fistula Maturation, Qunying Guo, Guang Chen, Hunter Cheng, Ying Qing, Luan Truong, Quan Ma, Yun Wang, Jizhong Cheng
Faculty, Staff and Students Publications
Background: Arteriovenous fistula (AVF) maturation is a process involving remodeling of venous arm of the AVFs. It is a challenge to balance adaptive AVF remodeling and neointima formation. In this study we temporally controlled Notch activation to promote AVF maturation while avoiding neointima formation.
Methods: Temporal Notch activation was controlled by regulating the expression of Notch transcription factor, RBP-Jκ, or dnMAML1 (dominant negative MAML2) in vascular smooth muscle cells (VSMCs). AVF mouse model was created and VSMC phenotype dynamic changes during AVF remodeling were determined.
Results: Activated Notch was found in the nuclei of neointimal VSMCs in AVFs from uremic …
Oleuropein Suppresses Endometriosis Progression And Improves The Fertility Of Mice With Endometriosis, Yuri Park, Yeon Jean Cho, Nuri Sung, Mi Jin Park, Xiaoming Guan, William E Gibbons, Bert W O'Malley, Sang Jun Han
Oleuropein Suppresses Endometriosis Progression And Improves The Fertility Of Mice With Endometriosis, Yuri Park, Yeon Jean Cho, Nuri Sung, Mi Jin Park, Xiaoming Guan, William E Gibbons, Bert W O'Malley, Sang Jun Han
Faculty, Staff and Students Publications
BACKGROUND: Endometriosis is an estrogen-dependent inflammatory reproductive disease. Therefore, systematic estrogen depletion and anti-inflammatory drugs are the current treatment for endometriosis. However, current endometriosis treatments have low efficacy and cause adverse effects in endometriosis patients. Consequently, alternative endometriosis treatments targeting endometriosis-specific factors are in demand. In this context, ERβ was selected as a druggable target for endometriosis due to its critical role in progression. Therefore, selective targeting of ERβ without inhibiting ERα activity would be a new paradigm for endometriosis treatment to overcome the low efficacy and adverse effects of hormonal endometriosis therapy.
METHODS: Cell-based ERβ and ERα activity assay …
Depletion Of Cd206+ M2-Like Macrophages Induces Fibro-Adipogenic Progenitors Activation And Muscle Regeneration, Allah Nawaz, Muhammad Bilal, Shiho Fujisaka, Tomonobu Kado, Muhammad Rahil Aslam, Saeed Ahmed, Keisuke Okabe, Yoshiko Igarashi, Yoshiyuki Watanabe, Takahide Kuwano, Koichi Tsuneyama, Ayumi Nishimura, Yasuhiro Nishida, Seiji Yamamoto, Masakiyo Sasahara, Johji Imura, Hisashi Mori, Martin M Matzuk, Fujimi Kudo, Ichiro Manabe, Akiyoshi Uezumi, Takashi Nakagawa, Yumiko Oishi, Kazuyuki Tobe
Depletion Of Cd206+ M2-Like Macrophages Induces Fibro-Adipogenic Progenitors Activation And Muscle Regeneration, Allah Nawaz, Muhammad Bilal, Shiho Fujisaka, Tomonobu Kado, Muhammad Rahil Aslam, Saeed Ahmed, Keisuke Okabe, Yoshiko Igarashi, Yoshiyuki Watanabe, Takahide Kuwano, Koichi Tsuneyama, Ayumi Nishimura, Yasuhiro Nishida, Seiji Yamamoto, Masakiyo Sasahara, Johji Imura, Hisashi Mori, Martin M Matzuk, Fujimi Kudo, Ichiro Manabe, Akiyoshi Uezumi, Takashi Nakagawa, Yumiko Oishi, Kazuyuki Tobe
Faculty, Staff and Students Publications
Muscle regeneration requires the coordination of muscle stem cells, mesenchymal fibro-adipogenic progenitors (FAPs), and macrophages. How macrophages regulate the paracrine secretion of FAPs during the recovery process remains elusive. Herein, we systemically investigated the communication between CD206+ M2-like macrophages and FAPs during the recovery process using a transgenic mouse model. Depletion of CD206+ M2-like macrophages or deletion of CD206+ M2-like macrophages-specific TGF-β1 gene induces myogenesis and muscle regeneration. We show that depletion of CD206+ M2-like macrophages activates FAPs and activated FAPs secrete follistatin, a promyogenic factor, thereby boosting the recovery process. Conversely, deletion of the FAP-specific follistatin gene results in …