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Mcl-1 Degradation During Hepatocyte Lipoapoptosis., Howard C. Masuoka, Justin L. Mott, Steven F. Bronk, Nathan W. Werneburg, Yuko Akazawa, Scott H. Kaufmann, Gregory J. Gores Oct 2009

Mcl-1 Degradation During Hepatocyte Lipoapoptosis., Howard C. Masuoka, Justin L. Mott, Steven F. Bronk, Nathan W. Werneburg, Yuko Akazawa, Scott H. Kaufmann, Gregory J. Gores

Journal Articles: Biochemistry & Molecular Biology

The mechanisms of free fatty acid-induced lipoapoptosis are incompletely understood. Here we demonstrate that Mcl-1, an anti-apoptotic member of the Bcl-2 family, was rapidly degraded in hepatocytes in response to palmitate and stearate by a proteasome-dependent pathway. Overexpression of a ubiquitin-resistant Mcl-1 mutant in Huh-7 cells attenuated palmitate-mediated Mcl-1 loss and lipoapoptosis; conversely, short hairpin RNA-targeted knockdown of Mcl-1 sensitized these cells to lipoapoptosis. Palmitate-induced Mcl-1 degradation was attenuated by the novel protein kinase C (PKC) inhibitor rottlerin. Of the two human novel PKC isozymes, PKCdelta and PKC, only activation of PKC was observed by phospho-immunoblot analysis. As compared with …


The Leishmania Donovani Lipophosphoglycan Excludes The Vesicular Proton-Atpase From Phagosomes By Impairing The Recruitment Of Synaptotagmin V, Adrien F. Vinet, Mitsunori Fukuda, Salvatore J. Turco, Albert Descoteaux Oct 2009

The Leishmania Donovani Lipophosphoglycan Excludes The Vesicular Proton-Atpase From Phagosomes By Impairing The Recruitment Of Synaptotagmin V, Adrien F. Vinet, Mitsunori Fukuda, Salvatore J. Turco, Albert Descoteaux

Molecular and Cellular Biochemistry Faculty Publications

We recently showed that the exocytosis regulator Synaptotagmin (Syt) V is recruited to the nascent phagosome and remains associated throughout the maturation process. In this study, we investigated the possibility that Syt V plays a role in regulating interactions between the phagosome and the endocytic organelles. Silencing of Syt V by RNA interference revealed that Syt V contributes to phagolysosome biogenesis by regulating the acquisition of cathepsin D and the vesicular proton-ATPase. In contrast, recruitment of cathepsin B, the early endosomal marker EEA1 and the lysosomal marker LAMP1 to phagosomes was normal in the absence of Syt V. As Leishmania …


Keap1 E3 Ligase-Mediated Downregulation Of Nf-Kappab Signaling By Targeting Ikkbeta, Dung-Fang Lee, Hsu-Ping Kuo, Mo Liu, Chao-Kai Chou, Weiya Xia, Yi Du, Jia Shen, Chun-Te Chen, Longfei Huo, Ming-Chuan Hsu, Chia-Wei Li, Qingqing Ding, Tsai-Lien Liao, Chien-Chen Lai, Ann-Chi Lin, Ya-Hui Chang, Shih-Feng Tsai, Long-Yuan Li, Mien-Chie Hung Oct 2009

Keap1 E3 Ligase-Mediated Downregulation Of Nf-Kappab Signaling By Targeting Ikkbeta, Dung-Fang Lee, Hsu-Ping Kuo, Mo Liu, Chao-Kai Chou, Weiya Xia, Yi Du, Jia Shen, Chun-Te Chen, Longfei Huo, Ming-Chuan Hsu, Chia-Wei Li, Qingqing Ding, Tsai-Lien Liao, Chien-Chen Lai, Ann-Chi Lin, Ya-Hui Chang, Shih-Feng Tsai, Long-Yuan Li, Mien-Chie Hung

Faculty, Staff and Student Publications

IkappaB kinase beta (IKKbeta) is involved in tumor development and progression through activation of the nuclear factor (NF)-kappaB pathway. However, the molecular mechanism that regulates IKKbeta degradation remains largely unknown. Here, we show that a Cullin 3 (CUL3)-based ubiquitin ligase, Kelch-like ECH-associated protein 1 (KEAP1), is responsible for IKKbeta ubiquitination. Depletion of KEAP1 led to the accumulation and stabilization of IKKbeta and to upregulation of NF-kappaB-derived tumor angiogenic factors. A systematic analysis of the CUL3, KEAP1, and RBX1 genomic loci revealed a high percentage of genome loss and missense mutations in human cancers that failed to facilitate IKKbeta degradation. Our …


Mast Cell–Derived Particles Deliver Peripheral Signals To Remote Lymph Nodes, Christian A. Kunder, Ashley L. St. John, Guojie Li, Kam W. Leong, Brent Berwin, Herman F. Staats, Soman N. Abraham Oct 2009

Mast Cell–Derived Particles Deliver Peripheral Signals To Remote Lymph Nodes, Christian A. Kunder, Ashley L. St. John, Guojie Li, Kam W. Leong, Brent Berwin, Herman F. Staats, Soman N. Abraham

Dartmouth Scholarship

During infection, signals from the periphery are known to reach draining lymph nodes (DLNs), but how these molecules, such as inflammatory cytokines, traverse the significant distances involved without dilution or degradation remains unclear. We show that peripheral mast cells, upon activation, release stable submicrometer heparin-based particles containing tumor necrosis factor and other proteins. These complexes enter lymphatic vessels and rapidly traffic to the DLNs. This physiological drug delivery system facilitates communication between peripheral sites of inflammation and remote secondary lymphoid tissues.


The Production Of Antibody By Invading B Cells Is Required For The Clearance Of Rabies Virus From The Central Nervous System., D Craig Hooper, Timothy W Phares, Marzena J Fabis, Anirban Roy Oct 2009

The Production Of Antibody By Invading B Cells Is Required For The Clearance Of Rabies Virus From The Central Nervous System., D Craig Hooper, Timothy W Phares, Marzena J Fabis, Anirban Roy

Department of Cancer Biology Faculty Papers

BACKGROUND: The pathogenesis of rabies is associated with the inability to deliver immune effectors across the blood-brain barrier and to clear virulent rabies virus from CNS tissues. However, the mechanisms that facilitate immune effector entry into CNS tissues are induced by infection with attenuated rabies virus.

METHODOLOGY/PRINCIPAL FINDINGS: Infection of normal mice with attenuated rabies virus but not immunization with killed virus can promote the clearance of pathogenic rabies virus from the CNS. T cell activity in B cell-deficient mice can control the replication of attenuated virus in the CNS, but viral mRNA persists. Low levels of passively administered rabies …


High Content Screening Identifies Decaprenyl-Phosphoribose 2’ Epimerase As A Target For Intracellular Antimycobacterial Inhibitors, Thierry Christophe, Mary Jackson, Hee Kyoung Jeon, Denis Fenistein, Monica Contreras-Dominguez, Jaeseung Kim, Auguste Genovesio, Jean-Philippe Carralot, Fanny Ewann, Eun Hye Kim, Sae Yeon Lee, Sunhee Kang, Min Jung Seo, Eun Jung Park, Henrieta Skovierová, Ha Pham, Giovanna Riccardi, Ji Youn Nam, Laurent Marsollier, Marie Kempf, Marie-Laure Joly-Guillou, Taegwon Oh, Won Kyung Shin, Zaesung No, Ulf Nehrbass, Roland Brosch, Stewart T. Cole Oct 2009

High Content Screening Identifies Decaprenyl-Phosphoribose 2’ Epimerase As A Target For Intracellular Antimycobacterial Inhibitors, Thierry Christophe, Mary Jackson, Hee Kyoung Jeon, Denis Fenistein, Monica Contreras-Dominguez, Jaeseung Kim, Auguste Genovesio, Jean-Philippe Carralot, Fanny Ewann, Eun Hye Kim, Sae Yeon Lee, Sunhee Kang, Min Jung Seo, Eun Jung Park, Henrieta Skovierová, Ha Pham, Giovanna Riccardi, Ji Youn Nam, Laurent Marsollier, Marie Kempf, Marie-Laure Joly-Guillou, Taegwon Oh, Won Kyung Shin, Zaesung No, Ulf Nehrbass, Roland Brosch, Stewart T. Cole

Faculty and Staff Publications

A critical feature of Mycobacterium tuberculosis, the causative agent of human tuberculosis (TB), is its ability to survive and multiply within macrophages, making these host cells an ideal niche for persisting microbes. Killing the intracellular tubercle bacilli is a key requirement for efficient tuberculosis treatment, yet identifying potent inhibitors has been hampered by labor-intensive techniques and lack of validated targets. Here, we present the development of a phenotypic cell-based assay that uses automated confocal fluorescence microscopy for high throughput screening of chemicals that interfere with the replication of M. tuberculosis within macrophages. Screening a library of 57,000 small molecules led …


Role Of Mammalian Ecdysoneless In Cell Cycle Regulation., Jun Hyun Kim, Channabasavaiah B. Gurumurthy, Mayumi Naramura, Ying Zhang, Andrew T. Dudley, Lynn Doglio, Hamid Band, Vimla Band Sep 2009

Role Of Mammalian Ecdysoneless In Cell Cycle Regulation., Jun Hyun Kim, Channabasavaiah B. Gurumurthy, Mayumi Naramura, Ying Zhang, Andrew T. Dudley, Lynn Doglio, Hamid Band, Vimla Band

Journal Articles: Genetics, Cell Biology & Anatomy

The Ecdysoneless (Ecd) protein is required for cell-autonomous roles in development and oogenesis in Drosophila, but the function of its evolutionarily conserved mammalian orthologs is not clear. To study the cellular function of Ecd in mammalian cells, we generated Ecd(lox/lox) mouse embryonic fibroblast cells from Ecd floxed mouse embryos. Cre-mediated deletion of Ecd in Ecd(lox/lox) mouse embryonic fibroblasts led to a proliferative block due to a delay in G(1)-S cell cycle progression; this defect was reversed by the introduction of human Ecd. Loss of Ecd led to marked down-regulation of E2F target gene expression. Furthermore, Ecd directly bound to Rb …


Jnk1-Dependent Puma Expression Contributes To Hepatocyte Lipoapoptosis., Sophie C. Cazanave, Justin L. Mott, Nafisa A. Elmi, Steven F. Bronk, Nathan W. Werneburg, Yuko Akazawa, Alisan Kahraman, Sean P. Garrison, Gerard P. Zambetti, Michael R. Charlton, Gregory J. Gores Sep 2009

Jnk1-Dependent Puma Expression Contributes To Hepatocyte Lipoapoptosis., Sophie C. Cazanave, Justin L. Mott, Nafisa A. Elmi, Steven F. Bronk, Nathan W. Werneburg, Yuko Akazawa, Alisan Kahraman, Sean P. Garrison, Gerard P. Zambetti, Michael R. Charlton, Gregory J. Gores

Journal Articles: Biochemistry & Molecular Biology

Free fatty acids (FFA) induce hepatocyte lipoapoptosis by a c-Jun N-terminal kinase (JNK)-dependent mechanism. However, the cellular processes by which JNK engages the core apoptotic machinery during lipotoxicity, especially activation of BH3-only proteins, remain incompletely understood. Thus, our aim was to determine whether JNK mediates induction of BH3-only proteins during hepatocyte lipoapoptosis. The saturated FFA palmitate, but not the monounsaturated FFA oleate, induces an increase in PUMA mRNA and protein levels. Palmitate induction of PUMA was JNK1-dependent in primary murine hepatocytes. Palmitate-mediated PUMA expression was inhibited by a dominant negative c-Jun, and direct binding of a phosphorylated c-Jun containing the …


Mtorc1 Hyperactivity Inhibits Serum Deprivation-Induced Apoptosis Via Increased Hexokinase Ii And Glut1 Expression, Sustained Mcl-1 Expression, And Glycogen Synthase Kinase 3Β Inhibition, Prashanth T. Bhaskar, Veronique Nogueira, Krushna C. Patra, Sang-Min Jeon, Youngkyu Park, R. Brooks Robey, Nissim Hay Sep 2009

Mtorc1 Hyperactivity Inhibits Serum Deprivation-Induced Apoptosis Via Increased Hexokinase Ii And Glut1 Expression, Sustained Mcl-1 Expression, And Glycogen Synthase Kinase 3Β Inhibition, Prashanth T. Bhaskar, Veronique Nogueira, Krushna C. Patra, Sang-Min Jeon, Youngkyu Park, R. Brooks Robey, Nissim Hay

Dartmouth Scholarship

The current concept is that Tsc-deficient cells are sensitized to apoptosis due to the inhibition of Akt activity by the negative feedback mechanism induced by the hyperactive mTORC1. Unexpectedly, however, we found that Tsc1/2-deficient cells exhibit increased resistance to serum deprivation-induced apoptosis. mTORC1 hyperactivity contributes to the apoptotic resistance of serum-deprived Tsc1/2-deficient cells in part by increasing the growth factor-independent expression of hexokinase II (HKII) and GLUT1. mTORC1-mediated increase in hypoxia-inducible factor 1α (HIF1α) abundance, which occurs in the absence of serum in normoxic Tsc2-deficient cells, contributes to these changes. Increased HIF1α abundance in these cells is attributed to both …


Characterization Of Two Outer Membrane Proteins, Flgo And Flgp, That Influence Vibrio Cholerae Motility, Raquel M. Martinez, Madushini N. Dharmasena, Thomas J. Kirn, Ronald K. Taylor Sep 2009

Characterization Of Two Outer Membrane Proteins, Flgo And Flgp, That Influence Vibrio Cholerae Motility, Raquel M. Martinez, Madushini N. Dharmasena, Thomas J. Kirn, Ronald K. Taylor

Dartmouth Scholarship

Vibrio cholerae is highly motile by the action of a single polar flagellum. The loss of motility reduces the infectivity of V. cholerae, demonstrating that motility is an important virulence factor. FlrC is the sigma-54-dependent positive regulator of flagellar genes. Recently, the genes VC2206 (flgP) and VC2207 (flgO) were identified as being regulated by FlrC via a microarray analysis of an flrC mutant (D. C. Morris, F. Peng, J. R. Barker, and K. E. Klose, J. Bacteriol. 190:231-239, 2008). FlgP is reported to be an outer membrane lipoprotein required for motility that functions as a colonization factor. The study reported …


Low-Dose Arsenic Compromises The Immune Response To Influenza A Infection In Vivo, Courtney D. Kozul, Kenneth H. Ely, Richard I. Enelow, Joshua W. Hamilton Sep 2009

Low-Dose Arsenic Compromises The Immune Response To Influenza A Infection In Vivo, Courtney D. Kozul, Kenneth H. Ely, Richard I. Enelow, Joshua W. Hamilton

Dartmouth Scholarship

Background:

Arsenic exposure is a significant worldwide environmental health concern. We recently reported that 5-week exposure to environmentally relevant levels (10 and 100 ppb) of As in drinking water significantly altered components of the innate immune response in mouse lung, which we hypothesize is an important contributor to the increased risk of lung disease in exposed human populations.

Objectives:

We investigated the effects of As exposure on respiratory influenza A (H1N1) virus infection, a common and potentially fatal disease.

Methods:

In this study, we exposed C57BL/6J mice to 100 ppb As in drinking water for 5 weeks, followed by intranasal …


Effects Of Genetic Deficiency Of Cyclooxygenase-1 Or Cyclooxygenase-2 On Functional And Histological Outcomes Following Traumatic Brain Injury In Mice, Matthew L. Kelso, Stephen W. Scheff, James R. Pauly, Charles D. Loftin Aug 2009

Effects Of Genetic Deficiency Of Cyclooxygenase-1 Or Cyclooxygenase-2 On Functional And Histological Outcomes Following Traumatic Brain Injury In Mice, Matthew L. Kelso, Stephen W. Scheff, James R. Pauly, Charles D. Loftin

Pharmaceutical Sciences Faculty Publications

BACKGROUND: Neuroinflammation contributes to the pathophysiology of acute CNS injury, including traumatic brain injury (TBI). Although prostaglandin lipid mediators of inflammation contribute to a variety of inflammatory responses, their importance in neuroinflammation is not clear. There are conflicting reports as to the efficacy of inhibiting the enzymes required for prostaglandin formation, cyclooxygenase (COX) -1 and COX-2, for improving outcomes following TBI. The purpose of the current study was to determine the role of the COX isoforms in contributing to pathological processes resulting from TBI by utilizing mice deficient in COX-1 or COX-2.

RESULTS: Following a mild controlled cortical impact injury, …


Inventing New Cars: Analysis Of Chimeric Antigen Receptor Gene-Targeted T Cells Modified To Overcome Regulatory T Cell Suppression In The Tumor Microenvironment, James Lee Aug 2009

Inventing New Cars: Analysis Of Chimeric Antigen Receptor Gene-Targeted T Cells Modified To Overcome Regulatory T Cell Suppression In The Tumor Microenvironment, James Lee

Yale Medicine Thesis Digital Library

Human T cells may be genetically modified to express targeted chimeric antigen receptors (CARs). We have previously demonstrated that T cells modified to express a CAR specific to the B cell tumor antigen CD19, termed 19-28z, successfully eradicate systemic human CD19+ tumors in SCID-Beige mice. While these results are encouraging, this xenogeneic tumor model fails to address potential limitations of this therapeutic approach in the clinical setting wherein these modified T cells encounter a hostile tumor microenvironment. Specifically, these models fail to address potential effector T cell inhibition mediated by endogenous regulatory T cells (Tregs). To investigate the role of …


Distinction Of The Memory B Cell Response To Cognate Antigen Versus Bystander Inflammatory Signals, Micah J. Benson, Raul Elgueta, William Schpero, Michael Molloy, Weijun Zhang, Edward Usherwood, Randolph J. Noelle Aug 2009

Distinction Of The Memory B Cell Response To Cognate Antigen Versus Bystander Inflammatory Signals, Micah J. Benson, Raul Elgueta, William Schpero, Michael Molloy, Weijun Zhang, Edward Usherwood, Randolph J. Noelle

Dartmouth Scholarship

The hypothesis that bystander inflammatory signals promote memory B cell (BMEM) self- renewal and differentiation in an antigen-independent manner is critically evaluated herein. To comprehensively address this hypothesis, a detailed analysis is presented examining the response profiles of B-2 lineage B220 + IgG + BMEM toward cognate protein antigen in comparison to bystander inflammatory signals. After in vivo antigen encounter, quiescent BMEM clonally expand. Surprisingly, proliferating BMEM do not acquire germinal center (GC) B cell markers before generating daughter BMEM and differentiating into plasma cells or form structurally identifiable GCs. In striking contrast to …


Disruption Of Histone Modification And Carm1 Recruitment By Arsenic Represses Transcription At Glucocorticoid Receptor-Regulated Promoters, Fiona D. Barr, Lori J. Krohmer, Joshua W. Hamilton, Lynn A. Sheldon Aug 2009

Disruption Of Histone Modification And Carm1 Recruitment By Arsenic Represses Transcription At Glucocorticoid Receptor-Regulated Promoters, Fiona D. Barr, Lori J. Krohmer, Joshua W. Hamilton, Lynn A. Sheldon

Dartmouth Scholarship

Chronic exposure to inorganic arsenic (iAs) found in the environment is one of the most significant and widespread environmental health risks in the U.S. and throughout the world. It is associated with a broad range of health effects from cancer to diabetes as well as reproductive and developmental anomalies. This diversity of diseases can also result from disruption of metabolic and other cellular processes regulated by steroid hormone receptors via aberrant transcriptional regulation. Significantly, exposure to iAs inhibits steroid hormone-mediated gene activation. iAs exposure is associated with disease, but is also used therapeutically to treat specific cancers complicating an understanding …


Mechanisms Of Primary Axonal Damage In A Viral Model Of Multiple Sclerosis., Jayasri Das Sarma, Lawrence C. Kenyon, Susan T. Hingley, Kenneth S. Shindler Aug 2009

Mechanisms Of Primary Axonal Damage In A Viral Model Of Multiple Sclerosis., Jayasri Das Sarma, Lawrence C. Kenyon, Susan T. Hingley, Kenneth S. Shindler

Department of Neurology Faculty Papers

Multiple sclerosis (MS) is an inflammatory demyelinating disease of the CNS. Recent studies have demonstrated that significant axonal injury also occurs in MS patients and correlates with neurological dysfunction, but it is not known whether this neuronal damage is a primary disease process, or occurs only secondary to demyelination. In the current studies, neurotropic strains of mouse hepatitis virus (MHV) that induce meningitis, encephalitis, and demyelination in the CNS, an animal model of MS, were used to evaluate mechanisms of axonal injury. The pathogenic properties of genetically engineered isogenic spike protein recombinant demyelinating and nondemyelinating strains of MHV were compared. …


Expression Of Cpi-17 In Smooth Muscle During Embryonic Development And In Neointimal Lesion Formation., Jee In Kim, Garbo D Young, Li Jin, Avril V Somlyo, Masumi Eto Aug 2009

Expression Of Cpi-17 In Smooth Muscle During Embryonic Development And In Neointimal Lesion Formation., Jee In Kim, Garbo D Young, Li Jin, Avril V Somlyo, Masumi Eto

Department of Molecular Physiology and Biophysics Faculty Papers

Ca(2+) sensitivity of smooth muscle (SM) contraction is determined by CPI-17, an inhibitor protein for myosin light chain phosphatase (MLCP). CPI-17 is highly expressed in mature SM cells, but the expression level varies under pathological conditions. Here, we determined the expression of CPI-17 in embryonic SM tissues and arterial neointimal lesions using immunohistochemistry. As seen in adult animals, the predominant expression of CPI-17 was detected at SM tissues on mouse embryonic sections, whereas MLCP was ubiquitously expressed. Compared with SM alpha-actin, CPI-17 expression doubled in arterial SM from embryonic day E10 to E14. Like SM alpha-actin and other SM marker …


Insulin Stimulates The Phosphorylation Of The Exocyst Protein Sec8 In Adipocytes, Patrick D. Lyons, Grantley R. Peck, Arminja N. Kettenbach, Scott A. Gerber, Liya Roudaia, Gustav E. Lienhard Aug 2009

Insulin Stimulates The Phosphorylation Of The Exocyst Protein Sec8 In Adipocytes, Patrick D. Lyons, Grantley R. Peck, Arminja N. Kettenbach, Scott A. Gerber, Liya Roudaia, Gustav E. Lienhard

Dartmouth Scholarship

The signal transduction pathway leading from the insulin receptor to stimulate the fusion of vesicles containing the glucose transporter GLUT4 with the plasma membrane in adipocytes and muscle cells is not completely understood. Current evidence suggests that in addition to the Rab GTPase-activating protein AS160, at least one other substrate of Akt (also called protein kinase B), which is as yet unidentified, is required. Sec8 is a component of the exocyst complex that has been previously implicated in GLUT4 trafficking. In the present study, we report that insulin stimulates the phosphorylation of Sec8 on Ser-32 in 3T3-L1 adipocytes. On the …


Cardioprotective Effect Of Adiponectin Is Partially Mediated By Its Ampk-Independent Antinitrative Action., Yajing Wang, Ling Tao, Yuexing Yuan, Wayne Bond Lau, Rong Li, Bernard L. Lopez, Theodore A. Christopher, Rong Tian, Xin-Liang Ma Aug 2009

Cardioprotective Effect Of Adiponectin Is Partially Mediated By Its Ampk-Independent Antinitrative Action., Yajing Wang, Ling Tao, Yuexing Yuan, Wayne Bond Lau, Rong Li, Bernard L. Lopez, Theodore A. Christopher, Rong Tian, Xin-Liang Ma

Department of Emergency Medicine Faculty Papers

Adiponectin (APN) exerts its metabolic regulation largely through AMP-dependent protein kinase (AMPK). However, the role of AMPK in APN's antiapoptotic effect in ischemic-reperfused (I/R) adult cardiomyocytes remains incompletely understood. The present study was designed to determine the involvement of AMPK in the antiapoptotic signaling of APN. Cardiomyocytes from adult male mice overexpressing a dominant-negative alpha(2)-subunit of AMPK (AMPK-DN) or wild-type (WT) littermates were subjected to simulated I/R (SI/R) and pretreated with 2 microg/ml globular domain of APN (gAPN) or vehicle. SI/R-induced cardiomyocyte apoptosis was modestly increased in AMPK-DN cardiomyocytes (P < 0.05). Treatment with gAPN significantly reduced SI/R-induced apoptosis in WT cardiomyocytes as well as in AMPK-DN cardiomyocytes, indicating that the antiapoptotic effect of gAPN is partially AMPK independent. Furthermore, gAPN-induced endothelial nitric oxide synthase (eNOS) phosphorylation was significantly reduced in AMPK-DN cardiomyocytes, suggesting that the APN-eNOS signaling axis is impaired in AMPK-DN cardiomyocytes. Additional experiments demonstrated that treatment of AMPK-DN cardiomyocytes with gAPN reduced SI/R-induced NADPH oxidase overexpression, decreased superoxide generation, and blocked peroxynitrite formation to the same extent as that observed in WT cardiomyocytes. Collectively, our present study demonstrated that although the metabolic and eNOS activation effect of APN is largely mediated by AMPK, the superoxide-suppressing effect of APN is not mediated by AMPK, and this AMPK-independent antioxidant property of APN increased nitric oxide bioavailability and exerted significant antiapoptotic effect.


Suppression Of Rhog Activity Is Mediated By A Syndecan 4–Synectin–Rhogdi1 Complex And Is Reversed By Pkcα In A Rac1 Activation Pathway, Arye Elfenbein, John M. Rhodes, Julia Meller, Martin A. Schwartz, Michiyuki Matsuda, Michael Simons Jul 2009

Suppression Of Rhog Activity Is Mediated By A Syndecan 4–Synectin–Rhogdi1 Complex And Is Reversed By Pkcα In A Rac1 Activation Pathway, Arye Elfenbein, John M. Rhodes, Julia Meller, Martin A. Schwartz, Michiyuki Matsuda, Michael Simons

Dartmouth Scholarship

Fibroblast growth factor 2 (FGF2) is a major regulator of developmental, pathological, and therapeutic angiogenesis. Its activity is partially mediated by binding to syndecan 4 (S4), a proteoglycan receptor. Angiogenesis requires polarized activation of the small guanosine triphosphatase Rac1, which involves localized dissociation from RhoGDI1 and association with the plasma membrane. Previous work has shown that genetic deletion of S4 or its adapter, synectin, leads to depolarized Rac activation, decreased endothelial migration, and other physiological defects. In this study, we show that Rac1 activation downstream of S4 is mediated by the RhoG activation pathway. RhoG is maintained in an inactive …


Dicer Is Required For Female Reproductive Tract Development And Fertility In The Mouse, Gabriel Gonzalez, Richard R Behringer Jul 2009

Dicer Is Required For Female Reproductive Tract Development And Fertility In The Mouse, Gabriel Gonzalez, Richard R Behringer

Faculty, Staff and Student Publications

Dicer encodes a riboendonuclease required for microRNA biosynthesis. Dicer was inactivated in Müllerian duct mesenchyme-derived tissues of the reproductive tract of the mouse, using an Amhr2-Cre allele. Although Amhr2-Cre; Dicer conditional mutant males appeared normal and were fertile, mutant females were infertile. In adult mutant females, there was a reduction in the size of the oviducts and uterine horns. The oviducts were less coiled compared to controls and cysts formed at the isthmus near the uterotubal junction. Unfertilized, degenerate oocytes were commonly found within these cysts, indicating a defect in embryo transit. Beads transferred into the mutant oviduct failed to …


Chronic Exposure To Arsenic In The Drinking Water Alters The Expression Of Immune Response Genes In Mouse Lung, Courtney D. Kozul, Thomas H. Hampton, Jennifer C. Davey, Julie A. Gosse, Athena P. Nomikos, Phillip L. Eisenhauer, Daniel J. Weiss, Jessica E. Thorpe, Michael A. Ihnat, Joshua W. Hamilton Jul 2009

Chronic Exposure To Arsenic In The Drinking Water Alters The Expression Of Immune Response Genes In Mouse Lung, Courtney D. Kozul, Thomas H. Hampton, Jennifer C. Davey, Julie A. Gosse, Athena P. Nomikos, Phillip L. Eisenhauer, Daniel J. Weiss, Jessica E. Thorpe, Michael A. Ihnat, Joshua W. Hamilton

Dartmouth Scholarship

Background:

Chronic exposure to drinking water arsenic is a significant worldwide environmental health concern. Exposure to As is associated with an increased risk of lung disease, which may make it a unique toxicant, because lung toxicity is usually associated with inhalation rather than ingestion.

Objectives:

The goal of this study was to examine mRNA and protein expression changes in the lungs of mice exposed chronically to environmentally relevant concentrations of As in the food or drinking water, specifically examining the hypothesis that As may preferentially affect gene and protein expression related to immune function as part of its mechanism of …


Nerve Injection Of Viral Vectors Efficiently Transfers Transgenes Into Motor Neurons And Delivers Rnai Therapy Against Als., Rui Wu, Hongyan Wang, Xugang Xia, Hongxia Zhou, Chunyan Liu, Maria Castro, Zuoshang Xu Jul 2009

Nerve Injection Of Viral Vectors Efficiently Transfers Transgenes Into Motor Neurons And Delivers Rnai Therapy Against Als., Rui Wu, Hongyan Wang, Xugang Xia, Hongxia Zhou, Chunyan Liu, Maria Castro, Zuoshang Xu

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

RNA interference (RNAi) mediates sequence-specific gene silencing, which can be harnessed to silencing disease-causing genes for therapy. Particularly suitable diseases are those caused by dominant, gain-of-function type of gene mutations. In these diseases, the mutant gene generates a mutant protein or RNA product, which possesses toxic properties that harm cells. By silencing the mutant gene, the toxicity can be lessened because the amount of the toxic product is lowered in cells. In this report, we tested RNAi therapy in a mouse model for amyotrophic lateral sclerosis (ALS), which causes motor neuron degeneration, paralysis, and death. We used a transgenic model …


Reactive Oxygen Species Mediate Tnfr1 Increase After Trpv1 Activation In Mouse Drg Neurons, Fei Ma, Liping Zhang, Karin N. Westlund Jun 2009

Reactive Oxygen Species Mediate Tnfr1 Increase After Trpv1 Activation In Mouse Drg Neurons, Fei Ma, Liping Zhang, Karin N. Westlund

Physiology Faculty Publications

Background: Transient receptor potential vanilloid subtype 1 (TRPV1) is activated by low pH/protons and is well known to be involved in hyperalgesia during inflammation. Tumor necrosis factor α (TNF-α), a proinflammatory cytokine, is involved in nociceptive responses causing hyperalgesia through TNF receptor type 1 (TNFR1) activation. Reactive oxygen species (ROS) production is also prominently increased in inflamed tissue. The present study investigated TNFR1 receptors in primary cultured mouse dorsal root ganglion (DRG) neurons after TRPV1 activation and the involvement of ROS. C57BL/6 mice, both TRPV1 knockout and wild type, were used for immunofluorescent and live cell imaging. The L4 and …


Kinetics And Phenotype Of Vaccine-Induced Cd8+ T-Cell Responses To Toxoplasma Gondii, Kimberly A. Jordan, Emma H. Wilson, Elia D. Tait, Barbara A. Fox, David S. Roos, David J. Bzik Jun 2009

Kinetics And Phenotype Of Vaccine-Induced Cd8+ T-Cell Responses To Toxoplasma Gondii, Kimberly A. Jordan, Emma H. Wilson, Elia D. Tait, Barbara A. Fox, David S. Roos, David J. Bzik

Dartmouth Scholarship

Multiple studies have established that the ability of CD8+ T cells to act as cytolytic effectors and produce gamma interferon is important in mediating resistance to the intracellular parasite Toxoplasma gondii. To better understand the generation of the antigen-specific CD8+ T-cell responses induced by T. gondii, mice were immunized with replication-deficient parasites that express the model antigen ovalbumin (OVA). Class I tetramers specific for SIINFEKL were used to track the OVA-specific endogenous CD8+ T cells. The peak CD8+ T-cell response was found at day 10 postimmunization, after which the frequency and numbers of antigen-specific cells …


Clinical And Translational Implications Of The Caveolin Gene Family: Lessons From Mouse Models And Human Genetic Disorders., Isabelle Mercier, Jean-Francois Jasmin, Stephanos Pavlides, Carlo Minetti, Neal Flomenberg, Richard G Pestell, Philippe G Frank, Federica Sotgia, Michael P Lisanti Jun 2009

Clinical And Translational Implications Of The Caveolin Gene Family: Lessons From Mouse Models And Human Genetic Disorders., Isabelle Mercier, Jean-Francois Jasmin, Stephanos Pavlides, Carlo Minetti, Neal Flomenberg, Richard G Pestell, Philippe G Frank, Federica Sotgia, Michael P Lisanti

Department of Stem Cell Biology and Regenerative Medicine Faculty Papers & Presentations

Here we review the clinical and translational implications of the caveolin gene family for understanding the pathogenesis of human diseases, including breast and prostate cancers, pulmonary hypertension, cardiomyopathy, diabetes, and muscular dystrophy. Detailed phenotypic analysis of caveolin knockout mice has served to highlight the crucial role of a caveolin deficiency in the pathogenesis of many human disease processes. Mutations in the human caveolin genes are associated with a number of established genetic disorders (such as breast cancer, lipodystrophy, muscular dystrophy, and cardiomyopathy), making the caveolins important and novel targets for drug development. The implementation of new strategies for caveolin replacement …


Therapeutic Targeting Of Atp7b In Ovarian Carcinoma, Lingegowda S Mangala, Vesna Zuzel, Rosemarie Schmandt, Erik S Leshane, Jyotsna B Halder, Guillermo N Armaiz-Pena, Whitney A Spannuth, Takemi Tanaka, Mian M K Shahzad, Yvonne G Lin, Alpa M Nick, Christopher G Danes, Jeong-Won Lee, Nicholas B Jennings, Pablo E Vivas-Mejia, Judith K Wolf, Robert L Coleman, Zahid H Siddik, Gabriel Lopez-Berestein, Svetlana Lutsenko, Anil K Sood Jun 2009

Therapeutic Targeting Of Atp7b In Ovarian Carcinoma, Lingegowda S Mangala, Vesna Zuzel, Rosemarie Schmandt, Erik S Leshane, Jyotsna B Halder, Guillermo N Armaiz-Pena, Whitney A Spannuth, Takemi Tanaka, Mian M K Shahzad, Yvonne G Lin, Alpa M Nick, Christopher G Danes, Jeong-Won Lee, Nicholas B Jennings, Pablo E Vivas-Mejia, Judith K Wolf, Robert L Coleman, Zahid H Siddik, Gabriel Lopez-Berestein, Svetlana Lutsenko, Anil K Sood

Faculty, Staff and Student Publications

PURPOSE: Resistance to platinum chemotherapy remains a significant problem in ovarian carcinoma. Here, we examined the biological mechanisms and therapeutic potential of targeting a critical platinum resistance gene, ATP7B, using both in vitro and in vivo models.

EXPERIMENTAL DESIGN: Expression of ATP7A and ATP7B was examined in ovarian cancer cell lines by real-time reverse transcription-PCR and Western blot analysis. ATP7A and ATP7B gene silencing was achieved with targeted small interfering RNA (siRNA) and its effects on cell viability and DNA adduct formation were examined. For in vivo therapy experiments, siRNA was incorporated into the neutral nanoliposome 1,2-dioleoyl-sn-glycero-3-phosphatidylcholine (DOPC).

RESULTS: ATP7A …


Intravenous Inoculation Of A Bat-Associated Rabies Virus Causes Lethal Encephalopathy In Mice Through Invasion Of The Brain Via Neurosecretory Hypothalamic Fibers., Mirjam A R Preuss, Marie-Luise Faber, Gene S Tan, Michael Bette, Bernhard Dietzschold, Eberhard Weihe, Matthias J Schnell Jun 2009

Intravenous Inoculation Of A Bat-Associated Rabies Virus Causes Lethal Encephalopathy In Mice Through Invasion Of The Brain Via Neurosecretory Hypothalamic Fibers., Mirjam A R Preuss, Marie-Luise Faber, Gene S Tan, Michael Bette, Bernhard Dietzschold, Eberhard Weihe, Matthias J Schnell

Department of Microbiology and Immunology Faculty Papers

The majority of rabies virus (RV) infections are caused by bites or scratches from rabid carnivores or bats. Usually, RV utilizes the retrograde transport within the neuronal network to spread from the infection site to the central nervous system (CNS) where it replicates in neuronal somata and infects other neurons via trans-synaptic spread. We speculate that in addition to the neuronal transport of the virus, hematogenous spread from the site of infection directly to the brain after accidental spill over into the vascular system might represent an alternative way for RV to invade the CNS. So far, it is unknown …


Genome Based Cell Population Heterogeneity Promotes Tumorigenicity: The Evolutionary Mechanism Of Cancer., Christine J. Ye, Joshua B. Stevens, Guo Liu, Steven W. Bremer, Aruna S. Jaiswal, Karen J. Ye, Ming-Fong Lin, Lesley Lawrenson, Wayne D. Lancaster, Markku Kurkinen, Joshua D. Liao, C. Gary Gairola, Malathy P. V. Shekhar, Satya Narayan, Fred R. Miller, Henry H. Q. Heng May 2009

Genome Based Cell Population Heterogeneity Promotes Tumorigenicity: The Evolutionary Mechanism Of Cancer., Christine J. Ye, Joshua B. Stevens, Guo Liu, Steven W. Bremer, Aruna S. Jaiswal, Karen J. Ye, Ming-Fong Lin, Lesley Lawrenson, Wayne D. Lancaster, Markku Kurkinen, Joshua D. Liao, C. Gary Gairola, Malathy P. V. Shekhar, Satya Narayan, Fred R. Miller, Henry H. Q. Heng

Journal Articles: Biochemistry & Molecular Biology

Cancer progression represents an evolutionary process where overall genome level changes reflect system instability and serve as a driving force for evolving new systems. To illustrate this principle it must be demonstrated that karyotypic heterogeneity (population diversity) directly contributes to tumorigenicity. Five well characterized in vitro tumor progression models representing various types of cancers were selected for such an analysis. The tumorigenicity of each model has been linked to different molecular pathways, and there is no common molecular mechanism shared among them. According to our hypothesis that genome level heterogeneity is a key to cancer evolution, we expect to reveal …


A Comparison Of The Discriminative Stimulus Properties Of The Atypical Antipsychotic Clozapine And The Glutamate Agonist N-Methyl D-Aspartate In C57bl/6 Mice., Sarah A. Vunck Apr 2009

A Comparison Of The Discriminative Stimulus Properties Of The Atypical Antipsychotic Clozapine And The Glutamate Agonist N-Methyl D-Aspartate In C57bl/6 Mice., Sarah A. Vunck

Theses and Dissertations

The glutamate system dysfunctions present in schizophrenia raise new questions about possible glutamatergic actions of the atypical antipsychotic clozapine. While clozapine has been shown to partially substitute for the discriminative stimulus of the glutamate agonist N-methyl D-aspartate (NMDA) in rats, NMDA discrimination has not previously been established in mice. The present study was designed to explore the possible role of NMDA activity in clozapine’s discriminative stimulus. Two groups of C57BL/6 mice were trained to discriminate either 2.5 mg/kg CLZ from vehicle or 30 mg/kg NMDA from vehicle in a standard two-lever drug discrimination task. NMDA drug discrimination was successfully established …