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Cav2.1的I-II环与III-IV环之间的相互作用以β依赖的方式促进电压依赖性失活。

The interaction between the I-II loop and the III-IV loop of Cav2.1 contributes to voltage-dependent inactivation in a beta -dependent manner.

作者信息

Geib Sandrine, Sandoz Guillaume, Cornet Veronique, Mabrouk Kamel, Fund-Saunier Odile, Bichet Delphine, Villaz Michel, Hoshi Toshinori, Sabatier Jean-Marc, De Waard Michel

机构信息

INSERM Unité 464, Laboratoire de Neurobiologie des Canaux Ioniques, Faculté de Médecine Nord, Boulevard Pierre Dramard, 13916 Marseille Cedex 20, France.

出版信息

J Biol Chem. 2002 Mar 22;277(12):10003-13. doi: 10.1074/jbc.M106231200. Epub 2002 Jan 14.

Abstract

We have investigated the molecular mechanisms whereby the I-II loop controls voltage-dependent inactivation in P/Q calcium channels. We demonstrate that the I-II loop is localized in a central position to control calcium channel activity through the interaction with several cytoplasmic sequences; including the III-IV loop. Several experiments reveal the crucial role of the interaction between the I-II loop and the III-IV loop in channel inactivation. First, point mutations of two amino acid residues of the I-II loop of Ca(v)2.1 (Arg-387 or Glu-388) facilitate voltage-dependent inactivation. Second, overexpression of the III-IV loop, or injection of a peptide derived from this loop, produces a similar inactivation behavior than the mutated channels. Third, the III-IV peptide has no effect on channels mutated in the I-II loop. Thus, both point mutations and overexpression of the III-IV loop appear to act similarly on inactivation, by competing off the native interaction between the I-II and the III-IV loops of Ca(v)2.1. As they are known to affect inactivation, we also analyzed the effects of beta subunits on these interactions. In experiments in which the beta(4) subunit is co-expressed, the III-IV peptide is no longer able to regulate channel inactivation. We conclude that (i) the contribution of the I-II loop to inactivation is partly mediated by an interaction with the III-IV loop and (ii) the beta subunits partially control inactivation by modifying this interaction. These data provide novel insights into the mechanisms whereby the beta subunit, the I-II loop, and the III-IV loop altogether can contribute to regulate inactivation in high voltage-activated calcium channels.

摘要

我们研究了I-II环控制P/Q型钙通道电压依赖性失活的分子机制。我们证明,I-II环定位于中心位置,通过与几个胞质序列相互作用来控制钙通道活性,这些序列包括III-IV环。多项实验揭示了I-II环与III-IV环之间的相互作用在通道失活中的关键作用。首先,Ca(v)2.1的I-II环中两个氨基酸残基(Arg-387或Glu-388)的点突变促进了电压依赖性失活。其次,III-IV环的过表达或注射源自该环的肽,产生与突变通道类似的失活行为。第三,III-IV肽对I-II环中发生突变的通道没有影响。因此,点突变和III-IV环的过表达似乎通过竞争Ca(v)2.1的I-II环与III-IV环之间的天然相互作用,对失活发挥类似的作用。由于已知它们会影响失活,我们还分析了β亚基对这些相互作用的影响。在共表达β(4)亚基的实验中,III-IV肽不再能够调节通道失活。我们得出结论:(i) I-II环对失活的贡献部分是由与III-IV环的相互作用介导的;(ii) β亚基通过改变这种相互作用部分控制失活。这些数据为β亚基、I-II环和III-IV环共同调节高电压激活钙通道失活的机制提供了新的见解。

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