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人微管蛋白伴侣辅因子A的三维结构

Three-dimensional structure of human tubulin chaperone cofactor A.

作者信息

Guasch Alicia, Aloria Kerman, Pérez Rosa, Avila Jesús, Zabala Juan Carlos, Coll Miquel

机构信息

Instituto de Biología Molecular de Barcelona, CSIC, Jordi Girona 18-26, E-08034, Spain.

出版信息

J Mol Biol. 2002 May 10;318(4):1139-49. doi: 10.1016/S0022-2836(02)00185-7.

Abstract

alpha and beta-Tubulin fold in a series of chaperone-assisted steps. At least five protein cofactors are involved in the post-chaperonin tubulin folding pathway and required to maintain the supply of tubulin; some of them also participate in microtubule dynamics. The first tubulin chaperone identified in the tubulin folding pathway was cofactor A (CoA). Here we describe the three-dimensional structure of human CoA at 1.7 A resolution, determined by multiwavelength anomalous diffraction (MAD). The structure is a monomer with a rod-like shape and consists of a three-alpha-helix bundle, or coiled coil, with the second helix kinked by a proline break, offering a convex surface at one face of the protein. The helices are connected by short turns, one of them, between alpha2 and alpha3, including a 3(10)-helix. Peptide mapping analysis and competition experiments with peptides show that CoA interacts with beta-tubulin via the three alpha-helical regions but not with the rod-end loops. The main interaction occurs with the middle kinked alpha2 helix, at the convex face of the rod. Strong 3D structural homology is found with the Hsp70 chaperone cofactor BAG domain, suggesting that these proteins define a family of cofactors of simple compact architecture. Further structural homology is found with alpha-spectrin/alpha-actinin repeats, all are rods of identical length of ten helical turns. We propose to call these three-helix bundles alpha ten modules.

摘要

α-微管蛋白和β-微管蛋白通过一系列伴侣蛋白辅助步骤进行折叠。至少有五种蛋白质辅因子参与伴侣蛋白后微管蛋白折叠途径,并维持微管蛋白的供应;其中一些还参与微管动力学。在微管蛋白折叠途径中鉴定出的第一个微管蛋白伴侣是辅因子A(CoA)。在此,我们描述了通过多波长反常衍射(MAD)确定的人CoA在1.7埃分辨率下的三维结构。该结构是一个棒状单体,由一个三α-螺旋束或卷曲螺旋组成,第二个螺旋因脯氨酸断裂而弯曲,在蛋白质的一个面上提供一个凸面。螺旋由短环连接,其中一个在α2和α3之间,包括一个3(10)-螺旋。肽图谱分析和与肽的竞争实验表明,CoA通过三个α-螺旋区域与β-微管蛋白相互作用,但不与棒端环相互作用。主要相互作用发生在棒状凸面的中间弯曲α2螺旋处。发现与Hsp70伴侣辅因子BAG结构域有很强的三维结构同源性,表明这些蛋白质定义了一个简单紧凑结构的辅因子家族。还发现与α-血影蛋白/α-辅肌动蛋白重复序列有进一步的结构同源性,它们都是十个螺旋圈长度相同的棒状结构。我们建议将这些三螺旋束称为α十模块。

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