Literature DB >> 14559910

The voltage-dependent calcium channel beta subunit contains two stable interacting domains.

Yarden Opatowsky1, Orna Chomsky-Hecht, Myoung-Goo Kang, Kevin P Campbell, Joel A Hirsch.   

Abstract

Voltage-dependent calcium channels selectively enable Ca2+ ion movement through cellular membranes. These multiprotein complexes are involved in a wide spectrum of biological processes such as signal transduction and cellular homeostasis. alpha1 is the membrane pore-forming subunit, whereas beta is an intracellular subunit that binds to alpha1, facilitating and modulating channel function. We have expressed, purified, and characterized recombinant beta3 and beta2a using both biochemical and biophysical methods, including electrophysiology, to better understand the beta family's protein structural and functional correlates. Our results indicate that the beta protein is composed of two distinct domains that associate with one another in a stable manner. The data also suggest that the polypeptide regions outside these domains are not structured when beta is not in complex with the channel. In addition, the beta structural core, comprised of just these two domains without other sequences, binds tightly to the alpha interaction domain (AID) motif, a sequence derived from the alpha1 subunit and the principal anchor site of beta. Domain II is responsible for this binding, but domain I enhances it.

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Year:  2003        PMID: 14559910     DOI: 10.1074/jbc.M303564200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  43 in total

1.  Structure of a complex between a voltage-gated calcium channel beta-subunit and an alpha-subunit domain.

Authors:  Filip Van Petegem; Kimberly A Clark; Franck C Chatelain; Daniel L Minor
Journal:  Nature       Date:  2004-05-12       Impact factor: 49.962

Review 2.  The ß subunit of voltage-gated Ca2+ channels.

Authors:  Zafir Buraei; Jian Yang
Journal:  Physiol Rev       Date:  2010-10       Impact factor: 37.312

3.  Short-term regulation of excitation-contraction coupling by the beta1a subunit in adult mouse skeletal muscle.

Authors:  María C García; Elba Carrillo; José M Galindo; Ascensión Hernández; Julio A Copello; Michael Fill; Jorge A Sánchez
Journal:  Biophys J       Date:  2005-09-23       Impact factor: 4.033

4.  A single CaVbeta can reconstitute both trafficking and macroscopic conductance of voltage-dependent calcium channels.

Authors:  Stanislava Dalton; Shoji X Takahashi; Jayalakshmi Miriyala; Henry M Colecraft
Journal:  J Physiol       Date:  2005-07-14       Impact factor: 5.182

5.  Two PEST-like motifs regulate Ca2+/calpain-mediated cleavage of the CaVbeta3 subunit and provide important determinants for neuronal Ca2+ channel activity.

Authors:  Alejandro Sandoval; Norma Oviedo; Abir Tadmouri; Traudy Avila; Michel De Waard; Ricardo Felix
Journal:  Eur J Neurosci       Date:  2006-05       Impact factor: 3.386

6.  Expression, purification and crystallization of a PCI domain from the COP9 signalosome subunit 7 (CSN7).

Authors:  Moshe Dessau; Daniel A Chamovitz; Joel A Hirsch
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2006-10-20

7.  The structural biology of voltage-gated calcium channel function and regulation.

Authors:  F Van Petegem; D L Minor
Journal:  Biochem Soc Trans       Date:  2006-11       Impact factor: 5.407

Review 8.  The L-type calcium channel in the heart: the beat goes on.

Authors:  Ilona Bodi; Gabor Mikala; Sheryl E Koch; Shahab A Akhter; Arnold Schwartz
Journal:  J Clin Invest       Date:  2005-12       Impact factor: 14.808

Review 9.  Bridging the myoplasmic gap: recent developments in skeletal muscle excitation-contraction coupling.

Authors:  Roger A Bannister
Journal:  J Muscle Res Cell Motil       Date:  2007-09-26       Impact factor: 2.698

10.  The Arabidopsis COP9 signalosome subunit 7 is a model PCI domain protein with subdomains involved in COP9 signalosome assembly.

Authors:  Moshe Dessau; Yair Halimi; Tamir Erez; Orna Chomsky-Hecht; Daniel A Chamovitz; Joel A Hirsch
Journal:  Plant Cell       Date:  2008-10-14       Impact factor: 11.277

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