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Articles 301 - 330 of 533
Full-Text Articles in Diseases
Evaluation Of Allogeneic And Autologous Membrane-Bound Il-21-Expanded Nk Cells For Chronic Lymphocytic Leukemia Therapy, Max Yano, Chia Sharpe, J Rachel Lance, Janani Ravikrishnan, Kevan Zapolnik, Xiaokui Mo, Jennifer A Woyach, Deepa Sampath, Adam S Kittai, Sumithira Vasu, Seema Bhat, Kerry A Rogers, Dean A Lee, Natarajan Muthusamy, John C Byrd
Evaluation Of Allogeneic And Autologous Membrane-Bound Il-21-Expanded Nk Cells For Chronic Lymphocytic Leukemia Therapy, Max Yano, Chia Sharpe, J Rachel Lance, Janani Ravikrishnan, Kevan Zapolnik, Xiaokui Mo, Jennifer A Woyach, Deepa Sampath, Adam S Kittai, Sumithira Vasu, Seema Bhat, Kerry A Rogers, Dean A Lee, Natarajan Muthusamy, John C Byrd
Faculty, Staff and Student Publications
Successes with anti-CD20 antibodies in chronic lymphocytic leukemia (CLL) and enhanced activity of Fc-engineered vs unmodified antibody therapy suggest a potentially impactful role for natural killer (NK) cells and other innate immune cells in controlling this disease. Stimulated NK cells have shown promise as a cellular therapy, but their application has been constrained by limited expansion capacity and low cytotoxic activity against CLL cells. Here, we demonstrate that both healthy donor-derived and CLL patient-derived NK cells expand rapidly when stimulated with feeder cells expressing membrane-bound interleukin-21 (mbIL-21) and have potent cytotoxic activity against allogeneic or autologous CLL cells. Combination with …
Genetic Inhibition Of Nuclear Factor Of Activated T-Cell C2 Prevents Atrial Fibrillation In Crem Transgenic Mice, Li Ni, Satadru K Lahiri, Jiali Nie, Xiaolu Pan, Issam Abu-Taha, Julia O Reynolds, Hannah M Campbell, Haihao Wang, Markus Kamler, Wilhelm Schmitz, Frank Ulrich Müller, Na Li, Xiang Wei, Dao Wen Wang, Dobromir Dobrev, Xander H T Wehrens
Genetic Inhibition Of Nuclear Factor Of Activated T-Cell C2 Prevents Atrial Fibrillation In Crem Transgenic Mice, Li Ni, Satadru K Lahiri, Jiali Nie, Xiaolu Pan, Issam Abu-Taha, Julia O Reynolds, Hannah M Campbell, Haihao Wang, Markus Kamler, Wilhelm Schmitz, Frank Ulrich Müller, Na Li, Xiang Wei, Dao Wen Wang, Dobromir Dobrev, Xander H T Wehrens
Faculty, Staff and Students Publications
AIMS: Abnormal intracellular calcium (Ca2+) handling contributes to the progressive nature of atrial fibrillation (AF), the most common sustained cardiac arrhythmia. Evidence in mouse models suggests that activation of the nuclear factor of activated T-cell (NFAT) signalling pathway contributes to atrial remodelling. Our aim was to determine the role of NFATc2 in AF in humans and mouse models.
METHODS AND RESULTS: Expression levels of NFATc1-c4 isoforms were assessed by quantitative reverse transcription-polymerase chain reaction in right atrial appendages from patients with chronic AF (cAF). NFATc1 and NFATc2 mRNA levels were elevated in cAF patients compared with those in normal sinus …
Mapping The Universe Of Eph Receptor And Ephrin Ligand Transcripts In Epithelial And Fiber Cells Of The Eye Lens, Michael P Vu, Catherine Cheng
Mapping The Universe Of Eph Receptor And Ephrin Ligand Transcripts In Epithelial And Fiber Cells Of The Eye Lens, Michael P Vu, Catherine Cheng
Faculty, Staff and Student Publications
The eye lens is a transparent, ellipsoid organ in the anterior chamber of the eye that is required for fine focusing of light onto the retina to transmit a clear image. Cataracts, defined as any opacity in the lens, remains the leading cause of blindness in the world. Recent studies in humans and mice indicate that Eph-ephrin bidirectional signaling is important for maintaining lens transparency. Specifically, mutations and polymorphisms in the EphA2 receptor and the ephrin-A5 ligand have been linked to congenital and age-related cataracts. It is unclear what other variants of Ephs and ephrins are expressed in the lens …
A Potential Role For Substance P In West Nile Virus Neuropathogenesis, Shannon E Ronca, Sarah M Gunter, Rebecca Berry Kairis, Allison Lino, Jonathan Romero, Robia G Pautler, Alan Nimmo, Kristy O Murray
A Potential Role For Substance P In West Nile Virus Neuropathogenesis, Shannon E Ronca, Sarah M Gunter, Rebecca Berry Kairis, Allison Lino, Jonathan Romero, Robia G Pautler, Alan Nimmo, Kristy O Murray
Faculty, Staff and Students Publications
Of individuals who develop West Nile neuroinvasive disease (WNND), ~10% will die and >40% will develop long-term complications. Current treatment recommendations solely focus on supportive care; therefore, we urgently need to identify novel and effective therapeutic options. We observed a correlation between substance P (SP), a key player in neuroinflammation, and its receptor Neurokinin-1 (NK1R). Our study in a wild-type BL6 mouse model found that SP is upregulated in the brain during infection, which correlated with neuroinvasion and damage to the blood−brain barrier. Blocking the SP/NK1R interaction beginning at disease onset modestly improved survival and prolonged time to death in …
Mir-486 Is Essential For Muscle Function And Suppresses A Dystrophic Transcriptome, Adrienne Samani, Rylie M Hightower, Andrea L Reid, Katherine G English, Michael A Lopez, J Scott Doyle, Michael J Conklin, David A Schneider, Marcas M Bamman, Jeffrey J Widrick, David K Crossman, Min Xie, David Jee, Eric C Lai, Matthew S Alexander
Mir-486 Is Essential For Muscle Function And Suppresses A Dystrophic Transcriptome, Adrienne Samani, Rylie M Hightower, Andrea L Reid, Katherine G English, Michael A Lopez, J Scott Doyle, Michael J Conklin, David A Schneider, Marcas M Bamman, Jeffrey J Widrick, David K Crossman, Min Xie, David Jee, Eric C Lai, Matthew S Alexander
Faculty, Staff and Student Publications
miR-486 is a muscle-enriched microRNA, or “myomiR,” that has reduced expression correlated with Duchenne muscular dystrophy (DMD). To determine the function of miR-486 in normal and dystrophin-deficient muscles and elucidate miR-486 target transcripts in skeletal muscle, we characterized mir-486 knockout mice (mir-486 KO). mir-486 KO mice developed disrupted myofiber architecture, decreased myofiber size, decreased locomotor activity, increased cardiac fibrosis, and metabolic defects were exacerbated in mir-486 KO:mdx5cv (DKO) mice. To identify direct in vivo miR-486 muscle target transcripts, we integrated RNA sequencing and chimeric miRNA eCLIP sequencing to identify key transcripts and pathways that contribute towards mir-486 …
Rna Binding Protein Rbm46 Regulates Mitotic-To-Meiotic Transition In Spermatogenesis, Baomei Qian, Yang Li, Ruoyu Yan, Shenglin Han, Zhiwen Bu, Jie Gong, Bangjin Zheng, Zihan Yuan, Sen Ren, Qing He, Jinwen Zhang, Chen Xu, Ruilin Wang, Zheng Sun, Mingyan Lin, Jian Zhou, Lan Ye
Rna Binding Protein Rbm46 Regulates Mitotic-To-Meiotic Transition In Spermatogenesis, Baomei Qian, Yang Li, Ruoyu Yan, Shenglin Han, Zhiwen Bu, Jie Gong, Bangjin Zheng, Zihan Yuan, Sen Ren, Qing He, Jinwen Zhang, Chen Xu, Ruilin Wang, Zheng Sun, Mingyan Lin, Jian Zhou, Lan Ye
Faculty, Staff and Students Publications
Meiosis entry during spermatogenesis requires reprogramming from mitotic to meiotic gene expression profiles. Transcriptional regulation has been extensively studied in meiosis entry, but gain of function for master transcription factors is insufficient to down-regulate mitotic genes. RNA helicase YTHDC2 and its partner MEIOC emerge as essential posttranscriptional regulators of meiotic entry. However, it is unclear what governs the RNA binding specificity of YTHDC2/MEIOC. Here, we identified RNA binding protein RBM46 as a component of the YTHDC2/MEIOC complex. Testis-specific Rbm46 knockout in mice causes infertility with defective mitotic-to-meiotic transition, phenocopying global Ythdc2 or Meioc knockout. RBM46 binds to 3′ UTR of …
Immunotherapy For Type 1 Diabetes Mellitus By Adjuvant-Free Schistosoma Japonicum-Egg Tip-Loaded Asymmetric Microneedle Patch (Stamp), Haoming Huang, Dian Hu, Zhuo Chen, Jiarong Xu, Rengui Xu, Yusheng Gong, Zhengming Fang, Ting Wang, Wei Chen
Immunotherapy For Type 1 Diabetes Mellitus By Adjuvant-Free Schistosoma Japonicum-Egg Tip-Loaded Asymmetric Microneedle Patch (Stamp), Haoming Huang, Dian Hu, Zhuo Chen, Jiarong Xu, Rengui Xu, Yusheng Gong, Zhengming Fang, Ting Wang, Wei Chen
Faculty, Staff and Student Publications
BACKGROUND: Type 1 diabetes mellitus (T1DM) is an autoimmune disease mediated by autoreactive T cells and dominated by Th1 response polarization. Insulin replacement therapy faces great challenges to this autoimmune disease, requiring highly frequent daily administration. Intriguingly, the progression of T1DM has proven to be prevented or attenuated by helminth infection or worm antigens for a relatively long term. However, the inevitable problems of low safety and poor compliance arise from infection with live worms or direct injection of antigens. Microneedles would be a promising candidate for local delivery of intact antigens, thus providing an opportunity for the clinical immunotherapy …
Immune Phenotype Of The Cd4+ T Cells In The Aged Lymphoid Organs And Lacrimal Glands, Claudia M Trujillo-Vargas, Kelsey E Mauk, Humberto Hernandez, Rodrigo G De Souza, Zhiyuan Yu, Jeremias G Galletti, Jana Dietrich, Friedrich Paulsen, Cintia S De Paiva
Immune Phenotype Of The Cd4+ T Cells In The Aged Lymphoid Organs And Lacrimal Glands, Claudia M Trujillo-Vargas, Kelsey E Mauk, Humberto Hernandez, Rodrigo G De Souza, Zhiyuan Yu, Jeremias G Galletti, Jana Dietrich, Friedrich Paulsen, Cintia S De Paiva
Faculty, Staff and Students Publications
Aging is associated with a massive infiltration of T lymphocytes in the lacrimal gland. Here, we aimed to characterize the immune phenotype of aged CD4+ T cells in this tissue as compared with lymphoid organs. To perform this, we sorted regulatory T cells (Tregs, CD4+CD25+GITR+) and non-Tregs (CD4+CD25negGITRneg) in lymphoid organs from female C57BL/6J mice and subjected these cells to an immunology NanoString® panel. These results were confirmed by flow cytometry, live imaging, and tissue immunostaining in the lacrimal gland. Importantly, effector T helper 1 (Th1) genes were highly upregulated on aged Tregs, including the master regulator Tbx21. Among …
Calcium/Calmodulin-Dependent Protein Kinase Kinase 2 Regulates Hepatic Fuel Metabolism, Brittany A Stork, Adam Dean, Andrea R Ortiz, Pradip Saha, Nagireddy Putluri, Maricarmen D Planas-Silva, Iqbal Mahmud, Kimal Rajapakshe, Cristian Coarfa, Stefan Knapp, Philip L Lorenzi, Bruce E Kemp, Benjamin E Turk, John W Scott, Anthony R Means, Brian York
Calcium/Calmodulin-Dependent Protein Kinase Kinase 2 Regulates Hepatic Fuel Metabolism, Brittany A Stork, Adam Dean, Andrea R Ortiz, Pradip Saha, Nagireddy Putluri, Maricarmen D Planas-Silva, Iqbal Mahmud, Kimal Rajapakshe, Cristian Coarfa, Stefan Knapp, Philip L Lorenzi, Bruce E Kemp, Benjamin E Turk, John W Scott, Anthony R Means, Brian York
Faculty, Staff and Students Publications
OBJECTIVE: The liver is the primary internal metabolic organ that coordinates whole body energy homeostasis in response to feeding and fasting. Genetic ablation or pharmacological inhibition of calcium/calmodulin-dependent protein kinase kinase 2 (CaMKK2) has been shown to significantly improve hepatic health and peripheral insulin sensitivity upon overnutrition with high fat diet. However, the precise molecular underpinnings that explain this metabolic protection have remained largely undefined.
METHODS: To characterize the role of CaMKK2 in hepatic metabolism, we developed and challenged liver-specific CaMKK2 knockout (CaMKK2
RESULTS: Consistent with previous findings, we show that hepatic CaMKK2 ablation significantly improves indices of peripheral insulin …
Glutathione Peroxidase 2 Is A Metabolic Driver Of The Tumor Immune Microenvironment And Immune Checkpoint Inhibitor Response, Kazi Mokim Ahmed, Ratna Veeramachaneni, Defeng Deng, Nagireddy Putluri, Vasanta Putluri, Maria F Cardenas, David A Wheeler, William K Decker, Andy I Frederick, Sawad Kazi, Andrew G Sikora, Vlad C Sandulache, Mitchell J Frederick
Glutathione Peroxidase 2 Is A Metabolic Driver Of The Tumor Immune Microenvironment And Immune Checkpoint Inhibitor Response, Kazi Mokim Ahmed, Ratna Veeramachaneni, Defeng Deng, Nagireddy Putluri, Vasanta Putluri, Maria F Cardenas, David A Wheeler, William K Decker, Andy I Frederick, Sawad Kazi, Andrew G Sikora, Vlad C Sandulache, Mitchell J Frederick
Faculty, Staff and Students Publications
BACKGROUND: The existence of immunologically 'cold tumors' frequently found across a wide spectrum of tumor types represents a significant challenge for cancer immunotherapy. Cold tumors have poor baseline pan-leukocyte infiltration, including a low prevalence of cytotoxic lymphocytes, and not surprisingly respond unfavorably to immune checkpoint (IC) inhibitors. We hypothesized that cold tumors harbor a mechanism of immune escape upstream and independent of ICs that may be driven by tumor biology rather than differences in mutational neoantigen burden.
METHODS: Using a bioinformatic approach to analyze TCGA (The Cancer Genome Atlas) RNA sequencing data we identified genes upregulated in cold versus hot …
3’Utr Shortening Of Has2 Promotes Hyaluronan Hyper-Synthesis And Bioenergetic Dysfunction In Pulmonary Hypertension, Victor Tseng, Scott D Collum, Ayed Allawzi, Kathryn Crotty, Samantha Yeligar, Aaron Trammell, M Ryan Smith, Bum-Yong Kang, Roy L Sutliff, Jennifer L Ingram, Soma S S K Jyothula, Rajarajan A Thandavarayan, Howard J Huang, Eva S Nozik, Eric J Wagner, C Michael Hart, Harry Karmouty-Quintana
3’Utr Shortening Of Has2 Promotes Hyaluronan Hyper-Synthesis And Bioenergetic Dysfunction In Pulmonary Hypertension, Victor Tseng, Scott D Collum, Ayed Allawzi, Kathryn Crotty, Samantha Yeligar, Aaron Trammell, M Ryan Smith, Bum-Yong Kang, Roy L Sutliff, Jennifer L Ingram, Soma S S K Jyothula, Rajarajan A Thandavarayan, Howard J Huang, Eva S Nozik, Eric J Wagner, C Michael Hart, Harry Karmouty-Quintana
Faculty, Staff and Student Publications
Pulmonary hypertension (PH) comprises a diverse group of disorders that share a common pathway of pulmonary vascular remodeling leading to right ventricular failure. Development of anti-remodeling strategies is an emerging frontier in PH therapeutics that requires a greater understanding of the interactions between vascular wall cells and their extracellular matrices. The ubiquitous matrix glycan, hyaluronan (HA), is markedly elevated in lungs from patients and experimental models with PH. Herein, we identified HA synthase-2 (HAS2) in the pulmonary artery smooth muscle cell (PASMC) layer as a predominant locus of HA dysregulation. HA upregulation involves depletion of NUDT21, a master regulator of …
Advances In Head And Neck Cancer Pain, Y Ye, D D Jensen, C T Viet, H L Pan, W M Campana, M Amit, M D Boada
Advances In Head And Neck Cancer Pain, Y Ye, D D Jensen, C T Viet, H L Pan, W M Campana, M Amit, M D Boada
Faculty, Staff and Student Publications
Head and neck cancer (HNC) affects over 890,000 people annually worldwide and has a mortality rate of 50%. Aside from poor survival, HNC pain impairs eating, drinking, and talking in patients, severely reducing quality of life. Different pain phenotype in patients (allodynia, hyperalgesia, and spontaneous pain) results from a combination of anatomical, histopathological, and molecular differences between cancers. Poor pathologic features (e.g., perineural invasion, lymph node metastasis) are associated with increased pain. The use of syngeneic/immunocompetent animal models, as well as a new mouse model of perineural invasion, provides novel insights into the pathobiology of HNC pain. Glial and immune …
Sirpα Mediates Igf1 Receptor In Cardiomyopathy-Induced By Chronic Kidney Disease, Sandhya S Thomas, Jiao Wu, Giovanni Davogustto, Michael W Holliday, Kristin Eckel-Mahan, Daniela Verzola, Giacomo Garibotto, Zhaoyong Hu, William E Mitch, Heinrich Taegtmeyer
Sirpα Mediates Igf1 Receptor In Cardiomyopathy-Induced By Chronic Kidney Disease, Sandhya S Thomas, Jiao Wu, Giovanni Davogustto, Michael W Holliday, Kristin Eckel-Mahan, Daniela Verzola, Giacomo Garibotto, Zhaoyong Hu, William E Mitch, Heinrich Taegtmeyer
Faculty, Staff and Student Publications
BACKGROUND: Chronic kidney disease (CKD) is characterized by increased myocardial mass despite near-normal blood pressure, suggesting the presence of a separate trigger. A potential driver is SIRPα (signal regulatory protein alpha)-a mediator impairing insulin signaling. The objective of this study is to assess the role of circulating SIRPα in CKD-induced adverse cardiac remodeling.
METHODS: SIRPα expression was evaluated in mouse models and patients with CKD. Specifically, mutant, muscle-specific, or cardiac muscle-specific SIRPα KO (knockout) mice were examined after subtotal nephrectomy. Cardiac function was assessed by echocardiography. Metabolic responses were confirmed in cultured muscle cells or cardiomyocytes.
RESULTS: We demonstrate that …
A Phospholipid Mimetic Targeting Lrh-1 Ameliorates Colitis, Suzanne G Mays, Emma H D'Agostino, Autumn R Flynn, Xiangsheng Huang, Guohui Wang, Xu Liu, Elizabeth J Millings, C Denise Okafor, Anamika Patel, Michael L Cato, Jeffery L Cornelison, Diana Melchers, René Houtman, David D Moore, John W Calvert, Nathan T Jui, Eric A Ortlund
A Phospholipid Mimetic Targeting Lrh-1 Ameliorates Colitis, Suzanne G Mays, Emma H D'Agostino, Autumn R Flynn, Xiangsheng Huang, Guohui Wang, Xu Liu, Elizabeth J Millings, C Denise Okafor, Anamika Patel, Michael L Cato, Jeffery L Cornelison, Diana Melchers, René Houtman, David D Moore, John W Calvert, Nathan T Jui, Eric A Ortlund
Faculty, Staff and Students Publications
Phospholipids are ligands for nuclear hormone receptors (NRs) that regulate transcriptional programs relevant to normal physiology and disease. Here, we demonstrate that mimicking phospholipid-NR interactions is a robust strategy to improve agonists of liver receptor homolog-1 (LRH-1), a therapeutic target for colitis. Conventional LRH-1 modulators only partially occupy the binding pocket, leaving vacant a region important for phospholipid binding and allostery. Therefore, we constructed a set of molecules with elements of natural phospholipids appended to a synthetic LRH-1 agonist. We show that the phospholipid-mimicking groups interact with the targeted residues in crystal structures and improve binding affinity, LRH-1 transcriptional activity, …
Small Rna Signatures Of Acute Ischemic Stroke In L1cam Positive Extracellular Vesicles, Michael A Lopez, Ying Si, Xianzhen Hu, Valentyna Williams, Fuad Qushair, Jackson Carlyle, Lyndsy Alesce, Michael Conklin, Shawn Gilbert, Marcas M Bamman, Matthew S Alexander, Peter H King
Small Rna Signatures Of Acute Ischemic Stroke In L1cam Positive Extracellular Vesicles, Michael A Lopez, Ying Si, Xianzhen Hu, Valentyna Williams, Fuad Qushair, Jackson Carlyle, Lyndsy Alesce, Michael Conklin, Shawn Gilbert, Marcas M Bamman, Matthew S Alexander, Peter H King
Faculty, Staff and Student Publications
Duchenne muscular dystrophy (DMD) is an X-linked recessive disease characterized by skeletal muscle instability, progressive muscle wasting, and fibrosis. A major driver of DMD pathology stems from aberrant upregulation of transforming growth factor β (TGFβ) signaling. In this report, we investigated the major transducers of TGFβ signaling, i.e., receptor Smads (R-Smads), in DMD patient skeletal muscle and observed a 48-fold increase in Smad8 mRNA. Smad1, Smad2, Smad3, and Smad5 mRNA were only minimally increased. A similar pattern was observed in the muscle from the mdx5cv mouse. Western blot analysis showed upregulation of phosphorylated Smad1, Smad5, and Smad8 …
Mice Lacking Wnt9a Or Wnt4 Are Prone To Develop Spontaneous Osteoarthritis With Age And Display Alteration In Either The Trabecular Or Cortical Bone Compartment, Stefan Teufel, Lena Wolff, Ulrich König, Akio Kobayashi, Richard Behringer, Christine Hartmann
Mice Lacking Wnt9a Or Wnt4 Are Prone To Develop Spontaneous Osteoarthritis With Age And Display Alteration In Either The Trabecular Or Cortical Bone Compartment, Stefan Teufel, Lena Wolff, Ulrich König, Akio Kobayashi, Richard Behringer, Christine Hartmann
Faculty, Staff and Student Publications
Osteoarthritis (OA) is a common degenerative disease of the joint, with a complex multifactorial not yet fully understood etiology. Over the past years, the Wnt signaling pathway has been implicated in osteoarthritis. In a recent genomewide association study (GWAS), the chromosomal location on chromosome 1, linked to the Wnt3a-Wnt9a gene locus, was identified as the most significant locus associated with a thumb osteoarthritis endophenotype. Previously, it was shown that WNT9a is involved in maintaining synovial cell identity in the elbow joint during embryogenesis. Here, we report that the conditional loss of Wnt9a in the Prx1-Cre expressing limb mesenchyme or Prg4-CreER …
Prolonged Cardiac Nr4a2 Aactivation Causes Dilated Cardiomyopathy In Mice, Sadia Ashraf, Heinrich Taegtmeyer, Romain Harmancey
Prolonged Cardiac Nr4a2 Aactivation Causes Dilated Cardiomyopathy In Mice, Sadia Ashraf, Heinrich Taegtmeyer, Romain Harmancey
Faculty, Staff and Student Publications
Transcription factors play a fundamental role in cardiovascular adaptation to stress. Nuclear receptor subfamily 4 group A member 2 (NR4A2; NURR1) is an immediate-early gene and transcription factor with a versatile role throughout many organs. In the adult mammalian heart, and particularly in cardiac myocytes, NR4A2 is strongly up-regulated in response to beta-adrenergic stimulation. The physiologic implications of this increase remain unknown. In this study, we aimed to interrogate the consequences of cardiac NR4A2 up-regulation under normal conditions and in response to pressure overload. In mice, tamoxifen-dependent, cardiomyocyte-restricted overexpression of NR4A2 led to cardiomyocyte hypertrophy, left ventricular dilation, heart failure, …
Regulation Of Pgc1Α Downstream Of The Insulin Signaling Pathway Plays A Role In The Hepatic Proteotoxicity Of Mutant Α1-Antitrypsin Deficiency Variant Z, David A Rudnick, Jiansheng Huang, Tunda Hidvegi, Andrew S Chu, Pamela Hale, Admire Munanairi, Dennis J Dietzen, Paul F Cliften, Eric Tycksen, Andrew J Lutkewitte, Brian N Finck, Stephen C Pak, Gary A Silverman, David H Perlmutter
Regulation Of Pgc1Α Downstream Of The Insulin Signaling Pathway Plays A Role In The Hepatic Proteotoxicity Of Mutant Α1-Antitrypsin Deficiency Variant Z, David A Rudnick, Jiansheng Huang, Tunda Hidvegi, Andrew S Chu, Pamela Hale, Admire Munanairi, Dennis J Dietzen, Paul F Cliften, Eric Tycksen, Andrew J Lutkewitte, Brian N Finck, Stephen C Pak, Gary A Silverman, David H Perlmutter
Faculty, Staff and Students Publications
BACKGROUND & AIMS: Insulin signaling is known to regulate essential proteostasis mechanisms.
METHODS: The analyses here examined effects of insulin signaling in the PiZ mouse model of α1-antitrypsin deficiency in which hepatocellular accumulation and proteotoxicity of the misfolded α1-antitrypsin Z variant (ATZ) causes liver fibrosis and cancer.
RESULTS: We first studied the effects of breeding PiZ mice to liver-insulin-receptor knockout (LIRKO) mice (with hepatocyte-specific insulin-receptor gene disruption). The results showed decreased hepatic ATZ accumulation and liver fibrosis in PiZ x LIRKO vs PiZ mice, with reversal of those effects when we bred PiZ x LIRKO mice onto a FOXO1-deficient background. …
Gene-Mapping Study Of Extremes Of Cerebral Small Vessel Disease Reveals Trim47 As A Strong Candidate, Aniket Mishra, Cécile Duplaà, Dina Vojinovic, Hideaki Suzuki, Muralidharan Sargurupremraj, Nuno R Zilhão, Shuo Li, Traci M Bartz, Xueqiu Jian, Wei Zhao, Edith Hofer, Katharina Wittfeld, Sarah E Harris, Sandra Van Der Auwera-Palitschka, Michelle Luciano, Joshua C Bis, Hieab H H Adams, Claudia L Satizabal, Rebecca F Gottesman, Piyush G Gampawar, Robin Bülow, Stefan Weiss, Miao Yu, Mark E Bastin, Oscar L Lopez, Meike W Vernooij, Alexa S Beiser, Uwe Völker, Tim Kacprowski, Aicha Soumare, Jennifer A Smith, David S Knopman, Zoe Morris, Yicheng Zhu, Jerome I Rotter, Carole Dufouil, Maria Valdés Hernández, Susana Muñoz Maniega, Mark Lathrop, Erik Boerwinkle, Reinhold Schmidt, Masafumi Ihara, Bernard Mazoyer, Qiong Yang, Anne Joutel, Elizabeth Tournier-Lasserve, Lenore J Launer, Ian J Deary, Thomas H Mosley, Philippe Amouyel, Charles S Decarli, Bruce M Psaty, Christophe Tzourio, Sharon L R Kardia, Hans J Grabe, Alexander Teumer, Cornelia M Van Duijn, Helena Schmidt, Joanna M Wardlaw, M Arfan Ikram, Myriam Fornage, Vilmundur Gudnason, Sudha Seshadri, Paul M Matthews, William T Longstreth, Thierry Couffinhal, Stephanie Debette
Gene-Mapping Study Of Extremes Of Cerebral Small Vessel Disease Reveals Trim47 As A Strong Candidate, Aniket Mishra, Cécile Duplaà, Dina Vojinovic, Hideaki Suzuki, Muralidharan Sargurupremraj, Nuno R Zilhão, Shuo Li, Traci M Bartz, Xueqiu Jian, Wei Zhao, Edith Hofer, Katharina Wittfeld, Sarah E Harris, Sandra Van Der Auwera-Palitschka, Michelle Luciano, Joshua C Bis, Hieab H H Adams, Claudia L Satizabal, Rebecca F Gottesman, Piyush G Gampawar, Robin Bülow, Stefan Weiss, Miao Yu, Mark E Bastin, Oscar L Lopez, Meike W Vernooij, Alexa S Beiser, Uwe Völker, Tim Kacprowski, Aicha Soumare, Jennifer A Smith, David S Knopman, Zoe Morris, Yicheng Zhu, Jerome I Rotter, Carole Dufouil, Maria Valdés Hernández, Susana Muñoz Maniega, Mark Lathrop, Erik Boerwinkle, Reinhold Schmidt, Masafumi Ihara, Bernard Mazoyer, Qiong Yang, Anne Joutel, Elizabeth Tournier-Lasserve, Lenore J Launer, Ian J Deary, Thomas H Mosley, Philippe Amouyel, Charles S Decarli, Bruce M Psaty, Christophe Tzourio, Sharon L R Kardia, Hans J Grabe, Alexander Teumer, Cornelia M Van Duijn, Helena Schmidt, Joanna M Wardlaw, M Arfan Ikram, Myriam Fornage, Vilmundur Gudnason, Sudha Seshadri, Paul M Matthews, William T Longstreth, Thierry Couffinhal, Stephanie Debette
Faculty, Staff and Student Publications
Cerebral small vessel disease is a leading cause of stroke and a major contributor to cognitive decline and dementia, but our understanding of specific genes underlying the cause of sporadic cerebral small vessel disease is limited. We report a genome-wide association study and a whole-exome association study on a composite extreme phenotype of cerebral small vessel disease derived from its most common MRI features: white matter hyperintensities and lacunes. Seventeen population-based cohorts of older persons with MRI measurements and genome-wide genotyping (n = 41 326), whole-exome sequencing (n = 15 965), or exome chip (n = 5249) data contributed 13 …
Regulation Of Age-Associated Insulin Resistance By Mt1-Mmp-Mediated Cleavage Of Insulin Receptor, Xuanming Guo, Pallavi Asthana, Susma Gurung, Shuo Zhang, Sheung Kin Ken Wong, Samane Fallah, Chi Fung Willis Chow, Sijia Che, Lixiang Zhai, Zening Wang, Xin Ge, Zhixin Jiang, Jiayan Wu, Yijing Zhang, Xiaoyu Wu, Keyang Xu, Cheng Yuan Lin, Hiu Yee Kwan, Aiping Lyu, Zhongjun Zhou, Zhao-Xiang Bian, Hoi Leong Xavier Wong
Regulation Of Age-Associated Insulin Resistance By Mt1-Mmp-Mediated Cleavage Of Insulin Receptor, Xuanming Guo, Pallavi Asthana, Susma Gurung, Shuo Zhang, Sheung Kin Ken Wong, Samane Fallah, Chi Fung Willis Chow, Sijia Che, Lixiang Zhai, Zening Wang, Xin Ge, Zhixin Jiang, Jiayan Wu, Yijing Zhang, Xiaoyu Wu, Keyang Xu, Cheng Yuan Lin, Hiu Yee Kwan, Aiping Lyu, Zhongjun Zhou, Zhao-Xiang Bian, Hoi Leong Xavier Wong
Faculty, Staff and Student Publications
Insulin sensitivity progressively declines with age. Currently, the mechanism underlying age-associated insulin resistance remains unknown. Here, we identify membrane-bound matrix metalloproteinase 14 (MT1-MMP/MMP14) as a central regulator of insulin sensitivity during ageing. Ageing promotes MMP14 activation in insulin-sensitive tissues, which cleaves Insulin Receptor to suppress insulin signaling. MT1-MMP inhibition restores Insulin Receptor expression, improving insulin sensitivity in aged mice. The cleavage of Insulin Receptor by MT1-MMP also contributes to obesity-induced insulin resistance and inhibition of MT1-MMP activities normalizes metabolic dysfunctions in diabetic mouse models. Conversely, overexpression of MT1-MMP in the liver reduces the level of Insulin Receptor, impairing hepatic insulin …
Expanding Anti-Cd38 Immunotherapy For Lymphoid Malignancies, Xu Wang, Xinfang Yu, Wei Li, Praveen Neeli, Ming Liu, Ling Li, Mingzhi Zhang, Xiaosheng Fang, Ken H Young, Yong Li
Expanding Anti-Cd38 Immunotherapy For Lymphoid Malignancies, Xu Wang, Xinfang Yu, Wei Li, Praveen Neeli, Ming Liu, Ling Li, Mingzhi Zhang, Xiaosheng Fang, Ken H Young, Yong Li
Faculty, Staff and Students Publications
BACKGROUND: Lymphoid neoplasms, including multiple myeloma (MM), non-Hodgkin lymphoma (NHL), and NK/T cell neoplasms, are a major cause of blood cancer morbidity and mortality. CD38 (cyclic ADP ribose hydrolase) is a transmembrane glycoprotein expressed on the surface of plasma cells and MM cells. The high expression of CD38 across MM and other lymphoid malignancies and its restricted expression in normal tissues make CD38 an attractive target for immunotherapy. CD38-targeting antibodies, like daratumumab, have been approved for the treatment of MM and tested against lymphoma and leukemia in multiple clinical trials.
METHODS: We generated chimeric antigen receptor (CAR) T cells targeting …
Evaluation Of Long-Chain Fatty Acid Respiration In Neonatal Mouse Cardiomyocytes Using Seahorse Instrument, Aude Angelini, Xinchun Pi, Liang Xie
Evaluation Of Long-Chain Fatty Acid Respiration In Neonatal Mouse Cardiomyocytes Using Seahorse Instrument, Aude Angelini, Xinchun Pi, Liang Xie
Faculty, Staff and Students Publications
Metabolic switches play a critical role in the pathophysiology of cardiac diseases, including heart failure. Here, we describe an assay for long-chain fatty acid oxidation in neonatal mouse cardiomyocytes by using a SeaHorse Flux Analyzer (Agilent). This protocol is a simplified but robust adaptation of the standard protocol that enables metabolic measurements in cells isolated from transgenic mouse models, which can be timesaving and informative. Cell isolation and culture represent a critical point that may require bench optimization.
For complete details on the use and execution of this protocol, please refer to Angelini et al. (2021).
Lmod2-Related Dilated Cardiomyopathy Presenting In Late Infancy, Erica Lay, Mahshid S Azamian, Susan W Denfield, William Dreyer, Joseph A Spinner, Debra Kearney, Lilei Zhang, Kim C Worley, Weimin Bi, Seema R Lalani
Lmod2-Related Dilated Cardiomyopathy Presenting In Late Infancy, Erica Lay, Mahshid S Azamian, Susan W Denfield, William Dreyer, Joseph A Spinner, Debra Kearney, Lilei Zhang, Kim C Worley, Weimin Bi, Seema R Lalani
Faculty, Staff and Students Publications
Leiomodin-2 (LMOD2) is an important regulator of the thin filament length, known to promote elongation of actin through polymerization at pointed ends. Mice with Lmod2 deficiency die around 3 weeks of age due to severe dilated cardiomyopathy (DCM), resulting from decreased heart contractility due to shorter thin filaments. To date, there have been three infants from two families reported with biallelic variants in LMOD2, presenting with perinatal onset DCM. Here, we describe a third family with a child harboring a previously described homozygous frameshift variant, c.1243_1244delCT (p.L415Vfs*108) with DCM, presenting later in infancy at 9 months of age. Family history …
Circadian Disruption Of Hippocampus In An Early Senescence Male Mouse Model, Jennifer A Davis, Jodi R Paul, Mugdha V Mokashi, Stefani A Yates, Daniel J Mount, Hira A Munir, Lacy K Goode, Martin E Young, David B Allison, Karen L Gamble
Circadian Disruption Of Hippocampus In An Early Senescence Male Mouse Model, Jennifer A Davis, Jodi R Paul, Mugdha V Mokashi, Stefani A Yates, Daniel J Mount, Hira A Munir, Lacy K Goode, Martin E Young, David B Allison, Karen L Gamble
Children’s Nutrition Research Center Staff Publications
Age-related cognitive decline and disruptions in circadian rhythms are growing problems as the average human life span increases. Multiple strains of the senescence-accelerated mouse (SAM) show reduced life span, and the SAMP8 strain in particular has been well documented to show cognitive deficits in behavior as well as a bimodal pattern of circadian locomotor activity. However, little is known about circadian regulation within the hippocampus of these strains of mice. Here we test the hypothesis that in this early senescence model, disruption of the molecular circadian clock in SAMP8 animals drives disrupted behavior and physiology. We found normal rhythms in …
An Exercise-Inducible Metabolite That Suppresses Feeding And Obesity, Veronica L Li, Yang He, Kévin Contrepois, Hailan Liu, Joon T Kim, Amanda L Wiggenhorn, Julia T Tanzo, Alan Sheng-Hwa Tung, Xuchao Lyu, Peter-James H Zushin, Robert S Jansen, Basil Michael, Kang Yong Loh, Andrew C Yang, Christian S Carl, Christian T Voldstedlund, Wei Wei, Stephanie M Terrell, Benjamin C Moeller, Rick M Arthur, Gareth A Wallis, Koen Van De Wetering, Andreas Stahl, Bente Kiens, Erik A Richter, Steven M Banik, Michael P Snyder, Yong Xu, Jonathan Z Long
An Exercise-Inducible Metabolite That Suppresses Feeding And Obesity, Veronica L Li, Yang He, Kévin Contrepois, Hailan Liu, Joon T Kim, Amanda L Wiggenhorn, Julia T Tanzo, Alan Sheng-Hwa Tung, Xuchao Lyu, Peter-James H Zushin, Robert S Jansen, Basil Michael, Kang Yong Loh, Andrew C Yang, Christian S Carl, Christian T Voldstedlund, Wei Wei, Stephanie M Terrell, Benjamin C Moeller, Rick M Arthur, Gareth A Wallis, Koen Van De Wetering, Andreas Stahl, Bente Kiens, Erik A Richter, Steven M Banik, Michael P Snyder, Yong Xu, Jonathan Z Long
Children’s Nutrition Research Center Staff Publications
Exercise confers robust protection against obesity, type 2 diabetes, and other cardiometabolic diseases.1–5 However, the molecular and cellular mechanisms that mediate the metabolic benefits of physical activity remain unclear.6 Here we show that exercise stimulates production of Lac-Phe, a blood-borne signaling metabolite that suppresses feeding and obesity. Lac-Phe biosynthesis from lactate occurs in CNDP2+ cells including immune cells, epithelial cells, and mesenchymal stem cells localized to diverse organs. In diet-induced obese mice, pharmacological elevation of circulating Lac-Phe reduces food intake without affecting movement or energy expenditure. Chronic administration of Lac-Phe decreases adiposity and body weight and …
Axl/Mertk Inhibitor Ono-7475 Potently Synergizes With Venetoclax And Overcomes Venetoclax Resistance To Kill F Lt 3-Itd Acute Myeloid Leukemia, Sean M Post, Huaxian Ma, Prerna Malaney, Xiaorui Zhang, Marisa J L Aitken, Po Yee Mak, Vivian R Ruvolo, Tomoko Yasuhiro, Ryohei Kozaki, Lauren E Chan, Lauren B Ostermann, Marina Konopleva, Bing Z Carter, Courtney Dinardo, Michael D Andreeff, Joseph D Khoury, Peter P Ruvolo
Axl/Mertk Inhibitor Ono-7475 Potently Synergizes With Venetoclax And Overcomes Venetoclax Resistance To Kill F Lt 3-Itd Acute Myeloid Leukemia, Sean M Post, Huaxian Ma, Prerna Malaney, Xiaorui Zhang, Marisa J L Aitken, Po Yee Mak, Vivian R Ruvolo, Tomoko Yasuhiro, Ryohei Kozaki, Lauren E Chan, Lauren B Ostermann, Marina Konopleva, Bing Z Carter, Courtney Dinardo, Michael D Andreeff, Joseph D Khoury, Peter P Ruvolo
Faculty, Staff and Student Publications
FMS-like Tyrosine Kinase 3 (FLT3) mutation is associated with poor survival in acute myeloid leukemia (AML). The specific Anexelekto/MER Tyrosine Kinase (AXL) inhibitor, ONO-7475, kills FLT3-mutant AML cells with targets including Extracellular- signal Regulated Kinase (ERK) and Myeloid Cell Leukemia 1 (MCL1). ERK and MCL1 are known resistance factors for Venetoclax (ABT-199), a popular drug for AML therapy, prompting the investigation of the efficacy of ONO-7475 in combination with ABT-199 in vitro and in vivo. ONO-7475 synergizes with ABT-199 to potently kill FLT3-mutant acute myeloid leukemia cell lines and primary cells. ONO-7475 is effective against ABT-199-resistant cells including cells that …
Poloxamer 407 Induces Hypertriglyceridemia But Decreases Atherosclerosis In Ldlr -/- Mice, Xueying Peng, Zeqin Lian, Xiao-Yuan Dai Perrard, Yunjie Xiao, Jing Ni, Veronica O'Brien, Henry Dong, Henry J Pownall, Christie M Ballantyne, Huaizhu Wu
Poloxamer 407 Induces Hypertriglyceridemia But Decreases Atherosclerosis In Ldlr -/- Mice, Xueying Peng, Zeqin Lian, Xiao-Yuan Dai Perrard, Yunjie Xiao, Jing Ni, Veronica O'Brien, Henry Dong, Henry J Pownall, Christie M Ballantyne, Huaizhu Wu
Faculty, Staff and Students Publications
Background: Hypertriglyceridemia (HTG) increases the risk for atherosclerotic cardiovascular disease, but underlying mechanisms are incompletely understood. Circulating monocytes play an important role in atherogenesis by infiltrating arterial walls, where they differentiate into macrophages. We tested the hypothesis that HTG is mechanistically linked to atherogenesis by altering the monocyte phenotype and infiltration into atherosclerotic lesions in a model of diet-induced atherogenesis in Ldlr−/− mice. Methods: HTG was induced in male Ldlr−/− mice, fed a Western, high-fat high-cholesterol diet, by daily injection of poloxamer 407 (P407), a lipoprotein lipase inhibitor, for seven weeks. Atherosclerosis, monocyte phenotypes, and monocyte migration into atherosclerotic lesions …
Constitutive Loss Of Dnmt3a Causes Morbid Obesity Through Misregulation Of Adipogenesis, Ayala Tovy, Jaime M Reyes, Linda Zhang, Yung-Hsin Huang, Carina Rosas, Alexes C Daquinag, Anna Guzman, Raghav Ramabadran, Chun-Wei Chen, Tianpeng Gu, Sinjini Gupta, Laura Ortinau, Dongsu Park, Aaron R Cox, Rachel E Rau, Sean M Hartig, Mikhail G Kolonin, Margaret A Goodell
Constitutive Loss Of Dnmt3a Causes Morbid Obesity Through Misregulation Of Adipogenesis, Ayala Tovy, Jaime M Reyes, Linda Zhang, Yung-Hsin Huang, Carina Rosas, Alexes C Daquinag, Anna Guzman, Raghav Ramabadran, Chun-Wei Chen, Tianpeng Gu, Sinjini Gupta, Laura Ortinau, Dongsu Park, Aaron R Cox, Rachel E Rau, Sean M Hartig, Mikhail G Kolonin, Margaret A Goodell
Faculty, Staff and Students Publications
DNA Methyltransferase 3 A (DNMT3A) is an important facilitator of differentiation of both embryonic and hematopoietic stem cells. Heterozygous germline mutations in DNMT3A lead to Tatton-Brown-Rahman Syndrome (TBRS), characterized by obesity and excessive height. While DNMT3A is known to impact feeding behavior via the hypothalamus, here we investigated a role in adipocyte progenitors utilizing heterozygous knockout mice that recapitulate cardinal TBRS phenotypes. These mice become morbidly obese due to adipocyte enlargement and tissue expansion. Adipose tissue in these mice exhibited defects in preadipocyte maturation and precocious activation of inflammatory gene networks, including interleukin-6 signaling. Adipocyte progenitor cell lines lacking DNMT3A …
Expression Of 4e-Bp1 In Juvenile Mice Alleviates Mtor-Induced Neuronal Dysfunction And Epilepsy, Lena H Nguyen, Youfen Xu, Travorn Mahadeo, Longbo Zhang, Tiffany V Lin, Heather A Born, Anne E Anderson, Angélique Bordey
Expression Of 4e-Bp1 In Juvenile Mice Alleviates Mtor-Induced Neuronal Dysfunction And Epilepsy, Lena H Nguyen, Youfen Xu, Travorn Mahadeo, Longbo Zhang, Tiffany V Lin, Heather A Born, Anne E Anderson, Angélique Bordey
Faculty, Staff and Students Publications
Hyperactivation of the mTOR pathway during foetal neurodevelopment alters neuron structure and function, leading to focal malformation of cortical development and intractable epilepsy. Recent evidence suggests a role for dysregulated cap-dependent translation downstream of mTOR signalling in the formation of focal malformation of cortical development and seizures. However, it is unknown whether modifying translation once the developmental pathologies are established can reverse neuronal abnormalities and seizures. Addressing these issues is crucial with regards to therapeutics because these neurodevelopmental disorders are predominantly diagnosed during childhood, when patients present with symptoms. Here, we report increased phosphorylation of the mTOR effector and translational …
Pirtobrutinib Inhibits Wild-Type And Mutant Bruton’S Tyrosine Kinase-Mediated Signaling In Chronic Lymphocytic Leukemia, Burcu Aslan, Gorkem Kismali, Lakesla R Iles, Ganiraju C Manyam, Mary L Ayres, Lisa S Chen, Mihai Gagea, Maria Teresa Sabrina Bertilaccio, William G Wierda, Varsha Gandhi
Pirtobrutinib Inhibits Wild-Type And Mutant Bruton’S Tyrosine Kinase-Mediated Signaling In Chronic Lymphocytic Leukemia, Burcu Aslan, Gorkem Kismali, Lakesla R Iles, Ganiraju C Manyam, Mary L Ayres, Lisa S Chen, Mihai Gagea, Maria Teresa Sabrina Bertilaccio, William G Wierda, Varsha Gandhi
Faculty, Staff and Student Publications
Pirtobrutinib (LOXO-305), a reversible inhibitor of Bruton's tyrosine kinase (BTK), was designed as an alternative strategy to treat ibrutinib-resistant disease that develops due to C481 kinase domain mutations. The clinical activity of pirtobrutinib has been demonstrated in CLL, but the mechanism of action has not been investigated. We evaluated pirtobrutinib in 4 model systems: first, MEC-1, a CLL cell line overexpressing BTKWT, BTKC481S, or BTKC481R; second, murine models driven by MEC-1 overexpressing BTKWT or BTKC481S; third, in vitro incubations of primary CLL cells; and finally, CLL patients during pirtobrutinib therapy (NCT03740529, ClinicalTrials.gov). Pirtobrutinib inhibited BTK activation as well …