Del i serien Reliable Lab Solutions
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Beskrivning
Produktinformation
- Utgivningsdatum:2010-07-22
- Mått:191 x 235 x 32 mm
- Vikt:1 040 g
- Format:Häftad
- Språk:Engelska
- Serie:Reliable Lab Solutions
- Antal sidor:632
- Förlag:Elsevier Science Publishing Co Inc
- ISBN:9780123822048
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P. Michael Conn is the Senior Vice President for Research and Associate Provost, Texas Tech Health Sciences Center. He is The Robert C. Kimbrough, Professor of Internal Medicine and Cell Biology/Biochemistry. He was previously Director of Research Advocacy and Professor of Physiology and Pharmacology, Cell Biology and Development and Obstetrics and Gynecology at Oregon Health and Science University and Senior Scientist of the Oregon National Primate Research Center (ONPRC). He served for twelve years as Special Assistant to the President and Associate Director of the ONPRC. After receiving a B.S. degree and teaching certification from the University of Michigan (1971), a M.S. from North Carolina State University (1973), and a Ph.D. degree from Baylor College of Medicine (1976), Conn did a fellowship at the NIH, then joined the faculty in the Department of Pharmacology, Duke University Medical Center where he was promoted to Associate Professor in 1982. In 1984, he became Professor and Head of Pharmacology at the University of Iowa College of Medicine, a position he held for eleven years. Conn is known for his research in the area of the cellular and molecular basis of action of gonadotropin releasing hormone action in the pituitary and therapeutic approaches that restore misfolded proteins to function. His work has led to drugs that have benefitted humans and animals. Most recently, he has identified a new class of drugs, pharmacoperones, which act by regulating the intracellular trafficking of receptors, enzymes and ion channels. He has authored or co-authored over 350 publications in this area and written or edited over 200 books, including texts in neurosciences, molecular biology and endocrinology. Conn has served as the editor of many professional journals and book series (Endocrinology, Journal of Clinical Endocrinology and Metabolism, Endocrine, Methods, Progress in Molecular Biology and Translational Science and Contemporary Endocrinology). Conn served on the National Board of Medical Examiners, including two years as chairman of the reproduction and endocrinology committee. The work of his laboratory has been recognized with a MERIT award from the NIH, the J.J. Abel Award of the American Society for Pharmacology and Experimental Therapeutics, the Weitzman, Oppenheimer and Ingbar Awards of the Endocrine Society, the National Science Medal of Mexico (the Miguel Aleman Prize) and the Stevenson Award of Canada. He is the recipient of the Oregon State Award for Discovery, the Media Award of the American College of Neuropsychopharmacology and was named a distinguished Alumnus of Baylor College of Medicine in 2012. Conn is a previous member of Council for the American Society for Cell Biology and the Endocrine Society and is a prior President of the Endocrine Society, during which time he founded the Hormone Foundation and worked with political leadership to heighten the public’s awareness of diabetes. Conn’s students and fellows have gone on to become leaders in industry and academia. He is an elected member of the Mexican Institute of Medicine and a fellow of the American Association for the Advancement of Science. He is the co-author of The Animal Research War (2008) and many articles for the public and academic community on the value of animal research and the dangers posed by animal extremism. His op/eds have appeared in The Washington Post, The LA Times, The Wall Street Journal, the Des Moines Register, and elsewhere. Conn consults with organizations that are influenced by animal extremism and with universities and companies facing challenges from these groups.
Innehållsförteckning
- PART I - Assembly 1. Assembly of Ion Channels ZuFang Sheng and Carol DeutschPART II - Genetics 2. Identification of Ion Channel-Associated Proteins Using the Yeast Two-Hybrid System Martin Niethammer and Morgan ShengPART III - Electrophysiology 3. Patch Clamp Studies of the Cystic Fibrosis Transmembrane Conductance Regulator Chloride Channel John W. Hanrahan, Zie Kone , Ceri J. Mathews,Jiexin Luo, Yanlin Jia and Paul Lindsell4. Tight-Seal Whole-cell Patch Clamping of C. elegans Neurons S.R. Lockery and M.B. Goodman5. Gating Currents Enrico Stefani and Francisco Bezanilla6. Determining Ion Channel Permeation Properties Ted BegenisichPART IV - Expression Systems 7. Expression of Ligand-Gated Ion Channels Using Using Semliki Forest Virus and Baculovirus Kathryn Radford and Gary Buell8. Recombinant Adenovirus-Mediated Expression in Nervous System of Genes Coding for Ion Channels and Other Molecules Involved in Synaptic Function Markus U. Ehrengruber, Markus Lanzrein, Youfeng Xu, Mark C. Jasek, David B. Kantor, Erin M. Schuman, Henry A. Lester, and Norman Davidson9. Transient Expression of Heteromeric Ion Channels Alison L. Eertmoed, Yolanda F. Vallejo, and William N. GreenPART V - Model Simulations 10. Computer Simulations and Modeling of Ion Channels Michael E. GreenPART VI. Physical 11. Fluorescence Techniques for Measuring Ion Channel Activity Gönül Velicelebi, Kenneth A. Stauderman, Mark A. Varney, Michael Akong, Stephen D. Hess, and Edwin C. Johnson12. Ligand Binding Methods for Analysis of Ion Channel Structure and Function Steen E. Pedersen, Monica M. Lurtz, and Rao V. L. Papineni13. Three-dimensional structure of membrane proteins determined by two-dimensional crystallization, electron cryomicroscopy, and image analysis Mark Yeager, Vinzenz M. Unger, Alok K. Mitra14. Voltage Clamp Biosensors for Capillary Electrophoresis Owe Orwar, Kent Jardemark, Cecilia Farre, Ingemar Jacobson, Alexander Moscho, Jason B. Shear, Harvey A. Fishman, Sheri J. Lillard, Richard N. Zare15. Ion Channels As Tools to Monitor Lipid Bilayer-Membrane Protein Interactions: Gramicidin Channels As Molecular Force O. S. Andersen, C. Nielsen, A. M. Maer, J. A. Lundbæk, M. Goulian, and R. E. Koeppe IPART VII. Purification and Reconstitution 16. Purification and Reconstitution of the Epithelial Chloride Channel Cystic Fibrosis Transmembrane Conductance Regulator Mohabir Ramjeesingh, Elizabeth Garani, Kevin Galley, Canhui Li, Yanchun Wang, Christine E. Bear17. Reconstitution of Native and Cloned Channels into Planar Bilayers I. Favre, Y.-M. Sun, and E. MoczydlowskiPART VIII. Second Messengers and Biochemical Approaches 18. Protein Phosphorylation of Ligand-Gated Ion Channels Andrew l. Mammen, Sunjeev Kamboj, and Richard L. Huganir19. Analysis of Ion Channel Associated Proteins Michael Wyszynski and Morgan Sheng20. Secondary Messenger Regulation of Ion Channels/Plant Patch Clamping Sarah M. Assmann and Lisa RomanoPART IX. Special Channels 21. ATP-Sensitive Potassium Channels Joseph Bryan, M. Schwanstecher, C. Schwanstecher, F. Chudziak, U. Panten, J.P. Clement IV, G. Gonzalez, and L. Aguilar-Bryan22. Simplified Fast Pressure-Clamp Technique for Studying Mechanically-Gated Channels Don W. McBride, Jr. and Owen P. Hamill23. Purification and Heterologous Expression of Inhibitory Glycine Receptors Bodo Laube and Heinrich Betz24. Functional Analyses of Aquaporin Water Channel Proteins Peter Agre, John C. Mathai, Barbara L. Smith, and Gregory M. PrestonPART X. Toxins and Other Membrane Active Compounds 25. Conus Peptides as Probes for Ion Channels J. Michael McIntosh, Baldomero M. Olivera, and Lourdes J. Cruz26. Scorpion Toxins as Tools for Studying Potassium Channels Maria Garcia, Markus Hanner, Hans-Günther Knaus, Robert Slaughter, Gregory J. Kaczorowski27. The Use of Planar Lipid Bilayer Membranes for Rapid Screening of Membrane Active Compounds Bruce L. Kagan, Tajb A. Mirzabekov, Antoly Y. Silberstein28. Antibodies to Ion Channels Angela Vincent, Ian Hart, Ashwin Pinto, and F. Anne Stephenson
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