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纽蛋白亚型对肌动蛋白的不同组织作用:对细胞类型特异性微丝锚定的影响

Differential actin organization by vinculin isoforms: implications for cell type-specific microfilament anchorage.

作者信息

Rüdiger M, Korneeva N, Schwienbacher C, Weiss E E, Jockusch B M

机构信息

Cell Biology, Zoological Institute, Technical University Braunschweig, Germany.

出版信息

FEBS Lett. 1998 Jul 10;431(1):49-54. doi: 10.1016/s0014-5793(98)00723-6.

Abstract

Vinculin is found in all adherens junctions, while metavinculin, a larger splice variant, is coexpressed with vinculin only in smooth and cardiac muscle. To understand the significance of metavinculin expression, we compared ligand binding between turkey vinculin and metavinculin. Residues 1-258 were found essential for head-tail interactions in both proteins. The tail domains (VT and MVT, respectively) both bind to F-actin. However, while VT bundles F-actin, MVT generates highly viscous F-actin webs. In transfected PtK2 cells, VT causes F-actin needles or coils, while MVT-expressing cells display a diffuse F-actin distribution. Thus, the MVT-specific insert induces an F-actin supraorganization different from the VT-based form, suggesting that metavinculin has a specific role in muscle.

摘要

纽蛋白存在于所有黏着连接中,而巨纽蛋白是一种更大的剪接变体,仅在平滑肌和心肌中与纽蛋白共表达。为了解巨纽蛋白表达的意义,我们比较了火鸡纽蛋白和巨纽蛋白之间的配体结合情况。发现1 - 258位残基对两种蛋白质的头尾相互作用至关重要。尾部结构域(分别为VT和MVT)均与F - 肌动蛋白结合。然而,虽然VT使F - 肌动蛋白成束,但MVT产生高度黏稠的F - 肌动蛋白网络。在转染的PtK2细胞中,VT导致F - 肌动蛋白针状物或螺旋状物形成,而表达MVT的细胞呈现弥散的F - 肌动蛋白分布。因此,MVT特异性插入片段诱导了一种不同于基于VT形式的F - 肌动蛋白超组织,这表明巨纽蛋白在肌肉中具有特定作用。

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