Heat Shock Proteins in Neural Cells

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eat shock proteins (HSPs), also called stress proteins, are not only induced in response to elevated temperatures, but also as a result of various stress situations, including environmental strains, viral H infection, ischemia, anoxia and oxidative stress. These stress situations trigger cellular defence mechanisms that act as an emergency system capable of combatting the toxic consequences due to the accumulation of misfolded proteins. Heat shock proteins are involved in many physiological processes, including development and differentiation, organisation of the cytoarchi tecture by binding to cytoskeletal elements and regulation of the balance between cell death and survival. Many heat shock proteins work as molecular chaperones. In this role, they contribute to in vivo protein folding and prevent nonproductive interactions with other proteins and cellular c- ponents. In recent years it has been found that the chaperone system and the proteolytic machinery work closely together, and that proteasomal - hibition causes the upregulation of stress proteins. Impairment of the proteasomal machinery and chaperone functions lead to protein damage, which contributes to neurodegenerative disorders and to the aging process.

Contains comprehensive reviews of actual and recent data

Inhalt
Heat Shock Proteins.- Small Heat Shock Proteins and the Cytoskeleton.- The Role of Hsps in Neuronal Differentiation and Development.- Heme Oxygenase as a Therapeutic Funnel in Nutritional Redox Homeostasis and Cellular Stress Response.- Heat Shock Proteins and the Regulation of Apoptosis.- Assembly of Protein Aggregates in Neurodegeneration.- The Role of Heat Shock Proteins during Neurodegeneration in Alzheimer's, Parkinson's and Huntington's Disease.- Heat Shock Proteins in Multiple Sclerosis.

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Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Editor Christiane Richter-Landsberg
    • Titel Heat Shock Proteins in Neural Cells
    • Veröffentlichung 17.09.2011
    • ISBN 1441922938
    • Format Kartonierter Einband
    • EAN 9781441922939
    • Jahr 2011
    • Größe H235mm x B155mm x T8mm
    • Untertitel Neuroscience Intelligence Unit
    • Gewicht 207g
    • Auflage 2009
    • Genre Medizin
    • Lesemotiv Verstehen
    • Anzahl Seiten 128
    • Herausgeber Springer New York
    • GTIN 09781441922939

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