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α1C亚基的N端和C端之间的相互作用调节CaV1.2 L型钙通道的失活。

Interactions between N and C termini of α1C subunit regulate inactivation of CaV1.2 L-type Ca(2+) channel.

作者信息

Benmocha Guggenheimer Adva, Almagor Lior, Tsemakhovich Vladimir, Tripathy Debi Ranjan, Hirsch Joel A, Dascal Nathan

机构信息

a Department of Physiology and Pharmacology ; Sackler School of Medicine; Sagol School of Neuroscience ; Tel Aviv , Israel.

b Department of Biochemistry & Molecular Biology ; Institute of Structural Biology, George S Weiss Faculty of Life Sciences; Sagol School of Neuroscience; Tel Aviv University ; Tel Aviv , Israel.

出版信息

Channels (Austin). 2016;10(1):55-68. doi: 10.1080/19336950.2015.1108499.

Abstract

The modulation and regulation of voltage-gated Ca(2+) channels is affected by the pore-forming segments, the cytosolic parts of the channel, and interacting intracellular proteins. In this study we demonstrate a direct physical interaction between the N terminus (NT) and C terminus (CT) of the main subunit of the L-type Ca(2+) channel CaV1.2, α1C, and explore the importance of this interaction for the regulation of the channel. We used biochemistry to measure the strength of the interaction and to map the location of the interaction sites, and electrophysiology to investigate the functional impact of the interaction. We show that the full-length NT (amino acids 1-154) and the proximal (close to the plasma membrane) part of the CT, pCT (amino acids 1508-1669) interact with sub-micromolar to low-micromolar affinity. Calmodulin (CaM) is not essential for the binding. The results further suggest that the NT-CT interaction regulates the channel's inactivation, and that Ca(2+), presumably through binding to calmodulin (CaM), reduces the strength of NT-CT interaction. We propose a molecular mechanism in which NT and CT of the channel serve as levers whose movements regulate inactivation by promoting changes in the transmembrane core of the channel via S1 (NT) or S6 (pCT) segments of domains I and IV, accordingly, and not as a kind of pore blocker. We hypothesize that Ca(2+)-CaM-induced changes in NT-CT interaction may, in part, underlie the acceleration of CaV1.2 inactivation induced by Ca(2+) entry into the cell.

摘要

电压门控性Ca(2+)通道的调节受成孔片段、通道的胞质部分以及相互作用的细胞内蛋白影响。在本研究中,我们证明了L型Ca(2+)通道CaV1.2的主要亚基α1C的N端(NT)和C端(CT)之间存在直接的物理相互作用,并探讨了这种相互作用对通道调节的重要性。我们运用生物化学方法来测量相互作用的强度并定位相互作用位点,同时运用电生理学方法来研究这种相互作用的功能影响。我们发现全长NT(氨基酸1 - 154)与CT的近端(靠近质膜)部分pCT(氨基酸1508 - 1669)以亚微摩尔至低微摩尔亲和力相互作用。钙调蛋白(CaM)对于这种结合并非必需。结果进一步表明NT - CT相互作用调节通道的失活,并且Ca(2+)可能通过与钙调蛋白(CaM)结合而降低NT - CT相互作用的强度。我们提出一种分子机制,其中通道的NT和CT充当杠杆,其运动通过结构域I和IV的S1(NT)或S6(pCT)片段促进通道跨膜核心的变化,从而调节失活,而不是作为一种孔道阻滞剂。我们推测Ca(2+) - CaM诱导的NT - CT相互作用变化可能部分是Ca(2+)进入细胞所诱导的CaV1.2失活加速的基础。

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