Stress-Inducible Cellular Responses, Paperback by Feige, U. (EDT); Morimoto, ...

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Publication Year: 2011 Item Width: 6.7 in Author: I. Yahara Language: English height: 0.4 in Item Height: 0.4 in Item Length: 9.6 in Publisher: Springer Basel A&G ISBN: 9783034899017 Type: Textbook Format: Trade Paperback Series: Experientia Supplementum Ser. Subject: Life Sciences / General, Research Book Title: Stress-Inducible Cellular Responses Subject Area: Science, Medical Item Weight: 30.8 Oz width: 6.7 in Number of Pages: Xii, 495 Pages Publication Name: Stress-Inducible Cellular Responses

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Stress-Inducible Cellular Responses, Paperback by Feige, U. (EDT); Morimoto, .... Stress-Inducible Cellular Responses, Paperback by Feige, U. (EDT); Morimoto, R. I. (EDT); Polla, Barbara (EDT); Polla, B. (EDT), ISBN 3034899017, ISBN-13 9783034899017, Brand New, Free shipping in the US "Stress-Inducible Cellular Responses" are essential for survival of cells of all species under adverse conditions. At the molecular level this is ac complished by a number of essential proteins all of which are involved in various aspects of cellular homeostasis through protective or adaptive func tions. Interestingly, molecules such as heat shock proteins have properties as molecular chaperones and are involved in multiple stages of a protein biogenesis beginning with synthesis and involvement in the subsequent events of folding, translocation, and degradation. Heat shock proteins have a critical role to stabilize folding intermediates and to prevent protein aggregation. In addition, stress-proteins serve as targets for immune re sponses in immune homeostasis and during infections. The term Stress Response reflects the rapid growth and breadth of this field which includes the molecular and cellular response to drugs, UV irra diation, oxidative stress, and environmental toxins. Radical scavengers such as superoxide dismutases and inducible regulatory proteins of metall ic ion status such as ferritin and protein disulfide isomerases are also con sidered within the frame of stress proteins and represent a new and growing class of stress responses.