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网格蛋白包被小泡催化去包被所需的发动蛋白辅助蛋白功能片段的结构。

Structure of the functional fragment of auxilin required for catalytic uncoating of clathrin-coated vesicles.

作者信息

Gruschus James M, Han Chae J, Greener Tsvika, Ferretti James A, Greene Lois E, Eisenberg Evan

机构信息

Laboratory of Biophysical Chemistry, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892-0301, USA.

出版信息

Biochemistry. 2004 Mar 23;43(11):3111-9. doi: 10.1021/bi0354740.

Abstract

The three-dimensional structure of the C-terminal 20 kDa portion of auxilin, which consists of the clathrin binding region and the C-terminal J-domain, has been determined by NMR. Auxilin is an Hsp40 family protein that catalytically supports the uncoating of clathrin-coated vesicles through recruitment of Hsc70 in an ATP hydrolysis-driven process. This 20 kDa auxilin construct contains the minimal sequential region required to uncoat clathrin-coated vesicles catalytically. The tertiary structure consists of six helices, where the first three are unique to auxilin and believed to be important in the catalytic uncoating of clathrin. The last three helices correspond to the canonical J-domain of Hsp40 proteins. The first helix, helix 1, which contains a conserved FEDLL motif believed to be necessary for clathrin binding, is transient and not packed against the rest of the structure. Helix 1 is joined to helix 2 by a flexible linker. Helix 2 packs loosely against the J-domain surface, whereas helix 3 packs tightly and makes critical contributions to the J-domain core. A long insert loop, also unique to the auxilin J-domain, is seen between helix 4 and helix 5. Comparison with a previously reported structure of auxilin containing only helices 3-6 shows a significant difference in the invariant HPD segment of the J-domain. The region where helix 1 is located corresponds to the expected region of the unstructured G/F-rich domain seen in DnaJ, i.e., the canonical N-terminal J-domain protein. In contrast, the location of helix 1 differs from the substrate binding regions of two other Hsp40 proteins, Escherichia coli Hsc20 and viral large T antigen. The variety of biological functions performed by Hsp40 proteins such as auxilin, as well as the observed differences in the structure and function of their substrate binding regions, supports the notion that Hsp40 proteins act as target-specific adaptors that recruit their more general Hsp70 partners to specific biological roles.

摘要

辅助蛋白C端20 kDa部分的三维结构已通过核磁共振确定,该部分由网格蛋白结合区域和C端J结构域组成。辅助蛋白是一种Hsp40家族蛋白,在ATP水解驱动的过程中,通过招募Hsc70催化支持网格蛋白包被小泡的脱包被过程。这个20 kDa的辅助蛋白构建体包含催化网格蛋白包被小泡脱包被所需的最小连续区域。三级结构由六个螺旋组成,其中前三个螺旋是辅助蛋白特有的,被认为在网格蛋白的催化脱包被过程中很重要。最后三个螺旋对应于Hsp40蛋白的典型J结构域。第一个螺旋,即螺旋1,包含一个保守的FEDLL基序,被认为是网格蛋白结合所必需的,它是短暂的,没有与结构的其余部分堆积在一起。螺旋1通过一个柔性接头与螺旋2相连。螺旋2松散地堆积在J结构域表面,而螺旋3紧密堆积并对J结构域核心做出关键贡献。在螺旋4和螺旋5之间可以看到一个长插入环,这也是辅助蛋白J结构域特有的。与之前报道的仅包含螺旋3 - 6的辅助蛋白结构相比,J结构域的不变HPD片段存在显著差异。螺旋1所在的区域对应于在DnaJ中看到的富含G/F的无结构区域的预期区域,即典型的N端J结构域蛋白。相比之下,螺旋1的位置与另外两种Hsp40蛋白,即大肠杆菌Hsc20和病毒大T抗原的底物结合区域不同。Hsp40蛋白如辅助蛋白所执行的多种生物学功能,以及它们底物结合区域在结构和功能上观察到的差异,支持了这样一种观点,即Hsp40蛋白作为靶标特异性适配器,将其更通用的Hsp70伙伴招募到特定的生物学作用中。

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