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钙调蛋白对连接蛋白 50 间隙连接的分子相互作用和功能调节。

Molecular interaction and functional regulation of connexin50 gap junctions by calmodulin.

机构信息

Department of Chemistry, Georgia State University, Atlanta, GA 30303, USA.

出版信息

Biochem J. 2011 May 1;435(3):711-22. doi: 10.1042/BJ20101726.

Abstract

Cx50 (connexin50), a member of the α-family of gap junction proteins expressed in the lens of the eye, has been shown to be essential for normal lens development. In the present study, we identified a CaMBD [CaM (calmodulin)-binding domain] (residues 141-166) in the intracellular loop of Cx50. Elevations in intracellular Ca2+ concentration effected a 95% decline in gj (junctional conductance) of Cx50 in N2a cells that is likely to be mediated by CaM, because inclusion of the CaM inhibitor calmidazolium prevented this Ca2+-dependent decrease in gj. The direct involvement of the Cx50 CaMBD in this Ca2+/CaM-dependent regulation was demonstrated further by the inclusion of a synthetic peptide encompassing the CaMBD in both whole-cell patch pipettes, which effectively prevented the intracellular Ca2+-dependent decline in gj. Biophysical studies using NMR and fluorescence spectroscopy reveal further that the peptide stoichiometrically binds to Ca2+/CaM with an affinity of ~5 nM. The binding of the peptide expanded the Ca2+-sensing range of CaM by increasing the Ca2+ affinity of the C-lobe of CaM, while decreasing the Ca2+ affinity of the N-lobe of CaM. Overall, these results demonstrate that the binding of Ca2+/CaM to the intracellular loop of Cx50 is critical for mediating the Ca2+-dependent inhibition of Cx50 gap junctions in the lens of the eye.

摘要

Cx50(连接蛋白 50)是一种在眼睛晶状体中表达的α家族间隙连接蛋白,已被证明对正常晶状体发育至关重要。在本研究中,我们在 Cx50 的细胞内环中鉴定出一个 CaMBD(钙调蛋白结合域)(残基 141-166)。细胞内钙离子浓度的升高导致 N2a 细胞中 Cx50 的 gj(连接电导)下降了 95%,这很可能是通过钙调蛋白介导的,因为包含钙调蛋白抑制剂钙调蛋白素可以防止这种 Ca2+-依赖性 gj 下降。通过在整个细胞贴片电极中包含包含 CaMBD 的合成肽,进一步证明了 Cx50 CaMBD 直接参与了这种 Ca2+/CaM 依赖性调节,这有效地阻止了细胞内 Ca2+-依赖性 gj 下降。使用 NMR 和荧光光谱学的生物物理研究进一步表明,该肽与 Ca2+/CaM 以约 5 nM 的亲和力计量结合。该肽通过增加 CaM 的 C 结构域的 Ca2+亲和力,同时降低 CaM 的 N 结构域的 Ca2+亲和力,扩展了 CaM 的 Ca2+ 传感范围。总的来说,这些结果表明,Ca2+/CaM 与 Cx50 细胞内环的结合对于介导 Ca2+-依赖性抑制眼睛晶状体中的 Cx50 间隙连接至关重要。

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