Cardiac sarcoplasmic reticulum function and regulation of contractility

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Veröffentlicht: New York, NY New York Acad. of Sciences 1998
Schriftenreihe:New York Academy of Sciences: Annals of the New York Academy of Sciences 853
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adam_text ANNALS OF THE NEW YORK ACADEMY OF SCIENCES Volume 853 September 16, 1998 CARDIAC SARCOPLASMIC RETICULUM FUNCTION AND REGULATION OF CONTRACTILITY Editors and Conference Chairs Robert G. Johnson, Jr. and Evangelia G. Kranias Honorary Chair WlLHELM HASSELBACH Scientific Advisory Board Gerd Hasenfuss, Arnold M. Katz, David H. MacLennan, Ketty Schwartz, and Michihiko Tada CONTENTS Introduction. By Robert G. Johnson, Jr. and Evangelia G. Kranias ...... xiii Part I. Structure and Function of the Cardiac Sarcoplasmic Reticulum Ca2+ ATPase The Ca2+ ATPase of the Sarcoplasmic Reticulum in Skeletal and Cardiac Muscle: An Overview from the Very Beginning to More Recent Prospects. By Wilhelm Hasselbach 1 Discovery of Phospholamban: A Personal History. By Arnold M. Katz .... 9 Comparative Ultrastructure of Ca2+ Release Units in Skeletal and Cardiac Muscle. By Clara Franzini Armstrong, Feliciano Protasi, and Venkat Ramesh 20 Sites of Regulatory Interaction between Calcium ATPases and Phospholamban. By David H. MacLennan, Yoshihiro Kimura, and TOSHIHIKO TOYOFUKU 31 This volume is the result of a conference entitled Cardiac Sarcoplasmic Reticulum Function and Regulation of Contractility held by the New York Academy of Sciences on September 27 30, 1997 in Washington, D.C. v Influences of Increased Expression of the Ca2+ ATPase of the Sarcoplasmic Reticulum by a Transgenic Approach on Cardiac Contractility. By Wolfgang H. Dillmann 43 Part II. Phospholamban and Cardiac Sarcoplasmic Reticulum Phospholamban Ablation and Compensatory Responses in the Mammalian Heart. By Guoxiang Chu, Donald G. Ferguson, Istvan Edes, Eva Kiss, Yoji Sato, and Evangelia G. Kranias 49 Structural Studies on Phospholamban and Implications for Regulation of the Ca2+ ATPase. By Russell J. Mortishire Smith, Howard Broughton, Victor M. Garsky, Ernest J. Mayer, and Robert G. Johnson, Jr. ... 63 Phosphorylation States of Phospholamban. By John Colyer 79 High Level Coexpression of the Canine Cardiac Calcium Pump and Phospholamban in Sf21 Insect Cells. By Joseph M. Autry and Larry R. Jones 92 Co reconstitution and Co crystallization of Phospholamban and Ca2+ ATPase. By Howard S. Young, Laxma G. Reddy, Larry R. Jones, and David L. Stokes 103 Molecular Regulation of Phospholamban Function and Gene Expression. By Michihiko Tada, Masanori Yabuki, and Toshihiko Toyofuku 116 Part III. The Calcium Release Channel and Other Sarcoplasmic Reticulum Channels Potential for Pharmacology of Ryanodine Receptor/Calcium Release Channels. By Le Xu, Ashutosh Tripathy, Daniel A. Pasek, and Gerhard Meissner 130 FKBP12 Modulates Gating of the Ryanodine Receptor/Calcium Release Channel. By Karol Ondrias, Steven O. Marx, Marta Gaburjakova, and Andrew R. Marks 149 Factors That Control Sarcoplasmic Reticulum Calcium Release in Intact Ventricular Myocytes. By Donald M. Bers, Li Li, Hiroshi Satoh, and Eileen McCall 157 Part IV. Pharmacology of Sarcoplasmic Reticulum Proteins through Structural Dynamics Models for the Transmembrane Region of the Phospholamban Pentameter: Which Is Correct? By Paul D. Adams, Albert S. Lee, Axel T. Brunger, and Donald M. Engelman 178 Direct Spectroscopic Detection of Molecular Dynamics and Interactions of the Calcium Pump and Phospholamban. By David D. Thomas, Laxma G. Reddy, Christine B. Karim, Ming Li, Razvan Cornea, Joseph M. Autry, Larry R. Jones, and John Stamm 186 The Sarcoplasmic Reticulum Ca2+ Pump: Inhibition by Thapsigargin and Enhancement by Adenovirus Mediated Gene Transfer. By Giuseppe Inesi, Robert Wade, and Terry Rogers 195 Part V. The Role of Sarcoplasmic Reticulum Proteins in Heart Disease The Role of Sarcoplasmic Reticulum Proteins in Heart Disease: Introduction. By William Grossman 207 Alterations in Heart Failure of Cyclic AMP Dependent Inotropic and Lusitropic Properties of Cardiac and Skeletal Muscle. By Amy Bishop, Kerry E. Travers, Jessica Grossman, Heather Johnson, Cynthia Perreault, John H. Woolf, Antonio Cittadini, Hugo Gonzalez Serratos, and James P. Morgan 209 Sarcoplasmic Reticulum Proteins in Heart Failure. By Stephan E. Lehnart, Wolfgang Schillinger, Burkert Pieske, Jurgen Prestle, Hanjorg Just, and Gerd Hasenfuss 220 cAMP Mediated Signal Transduction and Sarcoplasmic Reticulum Function in Heart Failure. By Matthew A. Movsesian 231 cAMP Dependent Protein Kinase A Stimulated Sarcosplasmic Reticulum Function in Heart Failure. By Robert H. G. Schwinger, Birgit Bolck, Gotz Munch, Klara Brixius, Jochen Muller Ehmsen, and Erland Erdmann 240 Sarco(endo)plasmic Reticulum Ca2+ ATPase Isoforms and Their Role in Muscle Physiology and Pathology. By Evgeny Loukianov, Yong Ji, Debra L. Baker, Thomas Reed, Jegadeesh Babu, Tanya Loukianova, Adam Green, Gary Shull, and Muthu Periasamy 251 Part VI. Poster Papers Depletion of Sarcoplasmic Reticulum Calcium Prompts Phosphorylation of Phospholamban to Stimulate Store Refilling. By Moninder Singh Bhogal and John Colyer 260 Changes in Spatial Arrangement between Individual Ca ATPase Polypeptide Chains in Response to Phospholamban Phosphorylation. By Linda Chen, Qing Yao, Kimberly Brungardt, Thomas Squier, and Diana Bigelow 264 Nucleotide Mimetics Reverse Phospholamban Regulation in Cardiac Sarcoplasmic Reticulum. By Kathleen E. Coll, Robert G. Johnson, Jr., and Edward McKenna 267 Reduced Contractile Function Characteristic of Hibernating Human Heart Is Not Mediated by Phospholamban. By Elisabeth Deindl, Elfriede Neubauer, Albrecht Elsasser, Rene Zimmermann, and Wolfgang Schaper 270 Immunofluorescence Localization of SERCA2a and the Phosphorylated Forms of Phospholamban in Intact Rat Cardiac Ventricular Myocytes. By G. A. Drago, J. Colyer, and W. J. Lederer 273 Phosphorylation of the Thr17 Residue of Phospholamban: New Insights into the Physiological Role of the CaMK II Pathway of Phospholamban Phosphorylation. By Alicia Mattiazzi, Leticia Vittone, Cecilia Mundina Weilenmann, and Matilde Said 280 A Quantitative Immunoassay for the Measurement of Phospholamban Levels and Phosphorylation States: Measurement of Phospholamban Levels in Transgenic Mouse Hearts. By Ernest J. Mayer, George M. Savage, and Robert G. Johnson, Jr 284 Cytosolic Domain of Phospholamban Remains Associated with the Ca ATPase Following Phosphorylation by cAMP dependent Protein Kinase. By Sewite Negash, Hongye Sun, Qing Yao, Swee Yong Goh, Diana J. Bigelow, and Thomas C. Squier 288 Immunodetection of Phosphorylation Sites of Phospholamban in Aortic Smooth Muscle: Effects of Sodium Nitroprusside. By Leticia Vittone, Cecilia Mundina Weilenmann, Matilde Said, G. Rinaldi, Gladys Chiappe de Cingolani, and Alicia Mattiazzi 292 Phospholamban Gene Dosage Effects in Chemically Permeabilized Mouse Cardiac Muscle. By Richard T. Wiedmann, Bo Sheng Pan, Evangelia G. Kranias, Sherri Motzel, and Robert G. Johnson, Jr 296 Fatigue Conditions Alter Sarcoplasmic Reticulum Function of Striated Muscle. By Mark Anthony W. Andrews and Thomas M. Nosek 300 Postrest Potentiation of Active Force in Mouse Papillary Muscles Is Greatly Accelerated by Increased Stimulus Frequency. By Wolfgang F. Bluhm, Markus Meyer, Eric A. Swanson, and Wolfgang H. Dillmann .... 304 Metabolic Inotropy and Calcium Transients in Isolated Rat Cardiomyocytes. By Robert D. Lasley, Bradley J. Martin, Hector H. Valdivia, Robert M. Mentzer, Jr., and Rolf Bunger 308 Endothelial Protective Effect of Verapamil against Acute Myocardial Contractile Dysfunction in Isolated Working Rat Hearts Subjected to Global Ischemia. By Pericle Di Napoli, Attilio Di Crecchio, Gaetano Contegiacomo, Paolo Tiloca, Alfonso Antonio Taccardi, Alessandro Maggi, Marcello Di Muzio, and Antonio Barsotti ... 311 Cardiac Responses to Calcium Sensitizers and Isoproterenol in Intact Guinea Pig Hearts: Effects on Cyclic AMP Levels, Protein Phosphorylation, Myoplasmic Calcium Concentration, and Left Ventricular Function. By Eva Kristof, Gyula Szigeti, Zoltan Papp, Annamaria Bodi, Andrea Facsko, Laszlo Kovacs, Julius G. Papp, Evangelia G. Kranias, and Istvan Edes 316 Cyclosporin A Induces Alteration of Ca Release Channel in Cardiac Sarcoplasmic Reticulum. By D. H. Kim, K. S. Park, E. H. Lee, T. K. Kim, and C. S. Park 320 Thermodynamic Limitation for the Sarcoplasmic Reticulum Ca2+ ATPase Contributes to Impaired Contractile Reserve in Hearts. By Rong Tian .. 322 Sarcoplasmic Reticulum Calcium ATPase Overexpression Induces Cellular Calcium Overload and Cell Death. By Tony S. Ma 325 Pressure Overload Induces Overexpression of Annexins II and V in Aortic banded Rats. By Ion I. Moraru, Sergei Syrbu, Katerina Michaels, Do Han Kim, Diana Malchoff, and James Watras 329 An Antibody to Annexin V Blocks Ca2+ Dependent ATPase Activity of Sarcoplasmic Reticulum in Human Failing Hearts. By Ion I. Moraru, Sergei Syrbu, Nada Zecevic, W. David Hager, James Watras, and Frank Messineo 333 Reduced Sarcoplasmic Reticulum Ca2+ Release in Rabbits with Left Ventricular Dysfunction. By Paul Neary, Stuart M. Cobbe, and Godfrey L. Smith 338 Structural Proximity of Mitochondria to Calcium Release Units in Rat Ventricular Myocardium May Suggest a Role in Ca2+ Sequestration. By V. Ramesh, V. K. Sharma, S S. Sheu, and C. Franzini Armstrong 341 Modeling Short Term Interval Force Relations in Cardiac Muscle. By J. Jeremy Rice, M. Saleet Jafri, and Raimond L. Winslow 345 Reverse Mode of the Sarcoplasmic Reticulum Ca Pump Limits Sarcoplasmic Reticulum Ca Uptake in Permeabilized and Voltage Clamped Myocytes. By Thomas R. Shannon, Kenneth S. Ginsburg, and Donald M. Bers 350 A Critical Role for L type Ca2+ Current in the Regulation of Ca2+ Release from the Sarcoplasmic Reticulum in Human Ventricular Myocytes from Dilated Cardiomyopathy. By K. R. Sipido, T. Stankovicova, J. Vanhaecke, W. Flameng, and F. Verdonck 353 Efficiency of L type Ca2+ Current Compared to Reverse Mode Na/Ca Exchange or T type Ca2+ Current as Trigger for Ca2+ Release from the Sarcoplasmic Reticulum. By Karin R. Sipido 357 EJSR/JSR: 3 D Geometry of an Ionic Charge with Fuse. By J. R. Sommer, T. High, P. Ingram, D. Kopf, R. Nassar, and I. Taylor 361 Cardiac Sarcoplasmic Reticulum Membrane Lipid Asymmetries. By Roger J. Bick, W. Barry Van Winkle, and George E. Taffet 365 Measurement of Sarcoplasmic Reticulum Ca Content and Sarcolemmal Fluxes during the Transient Stimulation of the Systolic Ca Transient Produced by Caffeine. By A. W. Trafford, M. E. Diaz, and D. A. Eisner 368 Regulation of Alternative Splicing of the SERCA2 Pre mRNA in Muscle. By Frank Wuytack, Ludo Van Den Bosch, Mark Ver Heyen, Fawzia Baba Aissa, Luc Raeymaekers, and Rik Casteels 372 The Sarcoplasmic Reticulum Ca2+ ATPase Is Depressed in Stunned Myocardium after Ischemia Reperfusion, but Remains Functionally Coupled to Sarcoplasmic Reticulum Bound Glycolytic Enzymes. By Kai Y. Xu, Koenraad Vandegaer, and Lewis C. Becker 376 Pharmacology of the Cardiac Sarcoplasmic Reticulum Calcium ATPase Phospholamban Interaction. By Robert G. Johnson, Jr 380 Index of Contributors 393
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Herzmuskel (DE-588)4024675-9 gnd
subject_GND (DE-588)4179132-0
(DE-588)4024632-2
(DE-588)4170858-1
(DE-588)4024675-9
(DE-588)1071861417
title Cardiac sarcoplasmic reticulum function and regulation of contractility
title_auth Cardiac sarcoplasmic reticulum function and regulation of contractility
title_exact_search Cardiac sarcoplasmic reticulum function and regulation of contractility
title_full Cardiac sarcoplasmic reticulum function and regulation of contractility ed. by Robert G. Johnson ...
title_fullStr Cardiac sarcoplasmic reticulum function and regulation of contractility ed. by Robert G. Johnson ...
title_full_unstemmed Cardiac sarcoplasmic reticulum function and regulation of contractility ed. by Robert G. Johnson ...
title_short Cardiac sarcoplasmic reticulum function and regulation of contractility
title_sort cardiac sarcoplasmic reticulum function and regulation of contractility
topic Cellules cardiaques - Congrès
Cur - Contraction - Régulation - Congrès
Hart gtt
Hartcontractie gtt
Reticulumcellen gtt
Réticulum sarcoplasmique - Congrès
Réticulum sarcoplasmique - Physiologie - Congrès
Sarcoplasma gtt
Contractile Proteins Congresses
Heart cells Congresses
Heart Contraction Regulation Congresses
Myocardial Contraction physiology Congresses
Sarcoplasmic Reticulum physiology Congresses
Sarcoplasmic reticulum Congresses
Sarkoplasmatisches Retikulum (DE-588)4179132-0 gnd
Herz (DE-588)4024632-2 gnd
Muskelkontraktion (DE-588)4170858-1 gnd
Herzmuskel (DE-588)4024675-9 gnd
topic_facet Cellules cardiaques - Congrès
Cur - Contraction - Régulation - Congrès
Hart
Hartcontractie
Reticulumcellen
Réticulum sarcoplasmique - Congrès
Réticulum sarcoplasmique - Physiologie - Congrès
Sarcoplasma
Contractile Proteins Congresses
Heart cells Congresses
Heart Contraction Regulation Congresses
Myocardial Contraction physiology Congresses
Sarcoplasmic Reticulum physiology Congresses
Sarcoplasmic reticulum Congresses
Sarkoplasmatisches Retikulum
Herz
Muskelkontraktion
Herzmuskel
Konferenzschrift 1997 Washington DC
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008378297&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
volume_link (DE-604)BV002532608
work_keys_str_mv AT johnsonrobertg cardiacsarcoplasmicreticulumfunctionandregulationofcontractility