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Titlebook: Epithelial Transport Physiology; George A. Gerencser Book 2010 Humana Press 2010 ATP.Amino acid.Base.Calcium.molecular biology.primary str

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书目名称Epithelial Transport Physiology
编辑George A. Gerencser
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概述The diversity of organisms from invertebrate to vertebrate telescopes possible evolutionary trends in a given transport process.The diversity of transporters in various animal epithelia inductively tr
图书封面Titlebook: Epithelial Transport Physiology;  George A. Gerencser Book 2010 Humana Press 2010 ATP.Amino acid.Base.Calcium.molecular biology.primary str
描述Biological cell membranes regulate the transfer of matter and information between the intracellular and extracellular compartments as basic survival and maintenance functions for an organism. This volume contains a series of reviews that are c- cerned with how epithelial plasma membranes regulate the transport of solutes between the intracellular and extracellular compartments of a cell. This book is also an attempt to analyze the molecular basis for the movement of various solutes across an epithelial cell membrane. This volume is devoted to a diversity of epithelial transport mechanisms in rep- sentative cell membranes of a variety of living things. The ?rst section of the book (Chapters 1–6) focuses on mechanisms of solute transport in epithelia of inver- brates. The last section which comprises ten chapters (Chapters 7–16) deals with solute transporters in epithelial cell membranes of vertebrates. It is hoped that with this particular ordering the reader can glean a telescopic view of the evolutionary history of the various epithelial solute transporters.
出版日期Book 2010
关键词ATP; Amino acid; Base; Calcium; molecular biology; primary structure; proteins
版次1
doihttps://doi.org/10.1007/978-1-60327-229-2
isbn_softcover978-1-62703-843-0
isbn_ebook978-1-60327-229-2
copyrightHumana Press 2010
The information of publication is updating

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Fernando Álvarez,Margarita OjedaK. ATPase imposes both Na. and K. concentration gradients across cell membranes with Na. high outside and K. high inside the cells. The Na. gradient, Δ[Na.] is used to drive diverse secondary transporters. For example, in many animal cells Δ[Na.] drives Na. inwardly coupled to H. outwardly, mediated
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https://doi.org/10.1007/978-94-017-6310-3ssues such as the pancreatic duct and colon respond to peptide hormones and transmitters that elevate intracellular levels of cAMP or cGMP (see Chap. 9 by J. F. White, this volume), whereas most exocrine glands have a dominant calcium-dependent system, which is activated by acetylcholine or other ca
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