Calcium Entry Channels in Non-Excitable Cells

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Albert S. Yu
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cell membranes
cell physiology
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cellular calcium signaling
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electrophysiological techniques
epithelial ion transport
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Ethel Adap
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Gary S. Bird
Genome Wide RNAi Screen
Gergely Gyimesi
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HEK Cell
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immune cell activation
ion channels
J. Ashot Kozak
James W. Putney
Ji-Bin Peng
Jianlin Feng
Jin Seok Woo
Kei Saotome
Khaled Machaca
Klaus Groschner
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molecular pharmacology
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Store Depletion
store-operated calcium entry mechanisms
transgenic mouse models
Trp Channel
TRP channels
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TRPV6 Expression
Xiuyuan Lu
Xuexin Zhang
Yandong Zhou
Yi-Chun Yeh
Yoshiro Suzuki
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Yubin Zhou
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Product details

  • ISBN 9781498752725
  • Weight: 652g
  • Dimensions: 156 x 234mm
  • Publication Date: 08 Jun 2017
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
  • Language: English
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Calcium Entry Channels in Non-Excitable Cells focuses on methods of investigating the structure and function of non-voltage gated calcium channels. Each chapter presents important discoveries in calcium entry pathways, specifically dealing with the molecular identification of store-operated calcium channels which were reviewed by earlier volumes in the Methods in Signal Transduction series. Crystallographic and pharmacological approaches to the study of calcium channels of epithelial cells are also discussed. Calcium ion is a messenger in most cell types. Whereas voltage gated calcium channels have been studied extensively, the non-voltage gated calcium entry channel genes have only been identified relatively recently. The book will fill this important niche.

Ashot Kozak is Associate Professor of Neuroscience, Cell Biology and Physiology in the Department of Biological Sciences at Wright State University in Dayton, Ohio. He received his PhD from Mount Sinai School of Medicine and did a postdoc at the University of California, Irvine. His research focuses upon cation channels expressed in leukocytes; Transient Receptor Potential (TRP) channels; ion channels involved in nociception.