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Regulation of Ca2+-ATPases,V-ATPases...
~
Chakraborti, Sajal.
Regulation of Ca2+-ATPases,V-ATPases and F-ATPases
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Regulation of Ca2+-ATPases,V-ATPases and F-ATPasesedited by Sajal Chakraborti, Naranjan S. Dhalla.
其他作者:
Chakraborti, Sajal.
出版者:
Cham :Springer International Publishing :2016.
面頁冊數:
xiii, 586 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Adenosine triphosphatase.
電子資源:
http://dx.doi.org/10.1007/978-3-319-24780-9
ISBN:
9783319247809$q(electronic bk.)
Regulation of Ca2+-ATPases,V-ATPases and F-ATPases
Regulation of Ca2+-ATPases,V-ATPases and F-ATPases
[electronic resource] /edited by Sajal Chakraborti, Naranjan S. Dhalla. - Cham :Springer International Publishing :2016. - xiii, 586 p. :ill., digital ;24 cm. - Advances in biochemistry in health and disease ;v.14. - Advances in biochemistry in health and disease ;v.8..
The biological membranes of cellular organization enfold an important group of membrane proteins called the ATPases, which are not only versatile in maintaining chemical gradient and electrical potential across the membrane but also bring metabolites necessary for cell metabolism and drive out toxins, waste products and solutes that otherwise can curb cell functions. ATPases are distributed virtually in all live forms starting from unicellular to multicellular and also in viruses. There are different types of ATPases, which differ in function and structure and in the type of ions they transport. The three main types of the ion pump ATPase family are: (i) P-type ATPases that transport different ions across membranes and Ca2+ATPases belongs to this catagory (ii) F-type ATPase in mitochondria, chloroplasts and bacterial plasma membranes produce ATP using the proton gradient; and (iii) V-type ATPase catalyzes ATP hydrolysis to transport solutes and maintains acidic pH in organelles like lysosomes. Genetic defects in either of the ATPases cause several diseases and a number of researches have demonstrated the involvement of the members of ATPases in the cell pathology and diseases, thereby penetrating exciting new areas of our understanding. In this book, the authors summarize recent knowledge about the molecular mechanisms associated with Ca2+-ATPase, V-ATPase and F-ATPase in intracellular and extracellular Ca2+ transport, mitochondrial ATP synthase, vesicular H+ transport, and lysosomal pH regulation. This book thereby bridges the gap between fundamental research and biomedical and pharmaceutical applications. The book provides an informative resource to improve ATPase research and modern therapeutic approaches toward different life threatening diseases that are associated with dysregulation of the ATPases.
ISBN: 9783319247809$q(electronic bk.)
Standard No.: 10.1007/978-3-319-24780-9doiSubjects--Topical Terms:
738672
Adenosine triphosphatase.
LC Class. No.: QP609.A3
Dewey Class. No.: 572.7553
Regulation of Ca2+-ATPases,V-ATPases and F-ATPases
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The biological membranes of cellular organization enfold an important group of membrane proteins called the ATPases, which are not only versatile in maintaining chemical gradient and electrical potential across the membrane but also bring metabolites necessary for cell metabolism and drive out toxins, waste products and solutes that otherwise can curb cell functions. ATPases are distributed virtually in all live forms starting from unicellular to multicellular and also in viruses. There are different types of ATPases, which differ in function and structure and in the type of ions they transport. The three main types of the ion pump ATPase family are: (i) P-type ATPases that transport different ions across membranes and Ca2+ATPases belongs to this catagory (ii) F-type ATPase in mitochondria, chloroplasts and bacterial plasma membranes produce ATP using the proton gradient; and (iii) V-type ATPase catalyzes ATP hydrolysis to transport solutes and maintains acidic pH in organelles like lysosomes. Genetic defects in either of the ATPases cause several diseases and a number of researches have demonstrated the involvement of the members of ATPases in the cell pathology and diseases, thereby penetrating exciting new areas of our understanding. In this book, the authors summarize recent knowledge about the molecular mechanisms associated with Ca2+-ATPase, V-ATPase and F-ATPase in intracellular and extracellular Ca2+ transport, mitochondrial ATP synthase, vesicular H+ transport, and lysosomal pH regulation. This book thereby bridges the gap between fundamental research and biomedical and pharmaceutical applications. The book provides an informative resource to improve ATPase research and modern therapeutic approaches toward different life threatening diseases that are associated with dysregulation of the ATPases.
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