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Big on Bk: Current Insights into the Function of Large Conductance Voltage- and Ca2+- Activated K+ Channels at the Molecular, Cellular and Systemic Levels: International Review of Neurobiology, cartea 128

Candice Contet
en Limba Engleză Hardback – 26 mai 2016
Big on Bk: Current Insights into the Function of Large Conductance Voltage- and Ca2+- Activated K+ Channels at the Molecular, Cellular and Systemic Levels, a volume in the International Review of Neurobiology series, is a comprehensive overview of the state-of-the-art research into this area. It reviews current knowledge and understanding, and also provides a starting point for researchers and practitioners entering the field.


  • The latest volume in the International Review of Neurobiology series
  • Provides a broad coverage of subject matter at the molecular, cellular and systemic levels
  • Presents an ideal resource for researchers and practitioners, and those just entering the field
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Specificații

ISBN-13: 9780128036198
ISBN-10: 0128036192
Pagini: 550
Dimensiuni: 152 x 229 x 33 mm
Greutate: 1 kg
Editura: ELSEVIER SCIENCE
Seria International Review of Neurobiology


Public țintă

Primarily medical scientists and physicians (diabetologists, endocrinologists, neurologists, internal medicine)

Cuprins

1. Biophysics of BK channel gating
  Riccardo Olcese
2. Modulation of BK channel function by auxiliary beta and gamma subunits
  Jiusheng Yan
3. Posttranscriptional and posttranslational regulation of BK channels
  Mike Shipston
4. Protein network interacting with BK channels
  Hongkyun Kim
5. Functional role of mitochondrial and nuclear BK channels
  Tian-Ming Gao
6. Modulation of BK channels by small endogenous molecules and pharmaceutical channel openers
  Toshinori Hoshi
7. Modulation of BK channels by ethanol
  Alex Dopico
8. BK channels in neurons
  Alison Barth
9. BK channels in the pituitary and hypothalamus
  Peter Duncan
10. BK channels in the inner ear
  Sonja Pyott
11. BK channels in the vascular system
  Gayathri Krishnamoorthy-Natarajan
12. Developing the molecular pharmacology of BK channels for therapeutic benefit
  Gregory John Kaczorowski