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    1. Naturvetenskap och teknik
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    3. Biologi
    4. Cellbiologi

    Functional Organization of Vertebrate Plasma Membrane

    Inbunden, Engelska, 2013

    Del 72 i serien Current Topics in Membranes

    1 964 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Current Topics in Membranes is targeted toward scientists and researchers in biochemistry and molecular and cellular biology, providing the necessary membrane research to assist them in discovering the current state of a particular field and in learning where that field is heading. This volume covers recent breakthroughs in understanding the molecular and cellular basis for patterning vertebrate plasma membranes. A special emphasis is placed on physiological function with chapters covering signaling in the nervous system and heart, vision, and the immune system.



    • consolidates subjects normally dispersed in the literature
    • presents in one volume a subject that has undergone a recent molecular revolution
    • authors are primary contributors and in some cases the founding figures in their fields

    Produktinformation

    • Utgivningsdatum:2013-11-15
    • Mått:152 x 229 x undefined mm
    • Vikt:720 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Current Topics in Membranes
    • Antal sidor:374
    • Förlag:Elsevier Science
    • Medarbetare:Vann Bennett
    • ISBN:9780124170278

    Utforska kategorier

    • Cellbiologi inom Naturvetenskap och teknik
    • Zoologi inom Naturvetenskap och teknik
    • Djurböcker inom Djur och Natur

    Mer om författaren

    Vann Bennett was born April 21, 1948 in Morganton, North Carolina. He graduated from Stanford University (Phi Beta Kappa, in biological and chemical studies) in 1970. He earned his Ph.D for work on the mechanism of action of cholera toxin with Pedro Cuatrecasas in 1974, and his M.D. in 1976 from the Johns Hopkins Medical School. He completed postdoctoral training with Daniel Branton, at the Biological Laboratories, Harvard University, where he developed an assay for measuring reconstitution of spectrin with membrane sites. He was a Staff scientist at Burroughs Wellcome, 1977-1980, where he discovered ankyrin and its role in coupling the anion exchanger to the spectrin-based membrane skeleton. He was appointed Assistant professor, 1981-1983; Associate professor, 1983-1987; and Professor 1987 in the Department of Cell Biology, Johns Hopkins School of Medicine. During this time he biochemically characterized spectrin and ankyrin for the first time from non-erythroid tissues, discovered with Peter Agre that spectrin deficiency is a common feature of hereditary spherocytosis, and discovered adducin and its role in recruiting spectrin to actin. He was appointed Professor of Biochemistry at Duke University Medical Center and Investigator of the Howard Hughes Medical Institute in 1987, and now holds joint appointments in the Departments of Cell Biology and Neurobiology. While at Duke, he has cloned and characterized erythrocyte ankyrin, beta-2 spectrin, and adducin subunits, discovered ankyrin-G and its role in formation of axon initial segments, and ankyrin-B and its role in ankyrin-B syndrome due to ankyrin-B mutation in humans. He currently is the George Barth Geller Professor of Biochemistry and an Investigator of the Howard Hughes Medical Institute. His honors include Maryland’s Outstanding Young Scientist Award, 1981 a Merit Award from NIH (1990-98), election to the Johns Hopkins Society of Scholars (2004), the American Academy of Arts and Sciences (2009), the National Academy of Sciences (2010), and the Association of American Physicians (2013). He has served as Chair, Keystone Symposium Membrane-Cytoskeleton Interactions (1985); Red Cell Gordon Research Conference (1987); Co-Chair with Stan Froehner, Woods Hole Conference of the Society of General Physiologists, Cytoskeletal Regulation of Membrane Function, (1996); and Chair, 2009 Program Committee of the American Society of Cell Biology. He is especially proud of the talented people who have trained in his laboratory and now direct their own research programs including Peter Agre, Kevin Gardner, Kathy Amberson Hajjar, Velia Fowler, Anthony Baines, David Virshup, Ekatarina Kordeli, Steve Lambert, and Peter Mohler.

    Innehållsförteckning

    • Spectrin- and Ankyrin-Based Membrane Domains and the Evolution of VertebratesVann Bennett and Damaris N. LorenzoThe Human Erythrocyte Plasma Membrane: A Rosetta Stone for Decoding Membrane –Cytoskeleton StructureVelia M. FowlerMembrane Protein Dynamics and Functional Implications in Mammalian CellsFrancis J. Alenghat and David E. GolanEvolving Form to Fit Function: Cardiomyocyte Intercalated Disc and Transverse-Tubule MembranesCrystal F. Kline and Peter J. MohlerExcitable Domains of Myelinated Nerves: Axon Initial Segments and Nodes of RanvierKae-Jiun Chang and Matthew N. RasbandMicrodomains of SNARE Proteins in the Plasma MembraneGeert van den Bogaart, Thorsten Lang and Reinhard JahnPhotoreceptor Inner and Outer SegmentsSheila A. Baker and Vasily KerovThe Evolutionary Origin of Epithelial Cell-Cell Adhesion MechanismsPhillip W. Miller, Donald N. Clarke, William I. Weis, Christopher J. Lowe and W. James NelsonCell Biology Meets Physiology: Functional Organization of Vertebrate Plasma Membranes  - The immunological synapseSilvia Curado, Sudha Kumari and Michael L. Dustin