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酵母Fis1中N端的新结构与线粒体分裂中的特定功能相关。

Novel structure of the N terminus in yeast Fis1 correlates with a specialized function in mitochondrial fission.

作者信息

Suzuki Motoshi, Neutzner Albert, Tjandra Nico, Youle Richard J

机构信息

Biochemistry Section, Surgical Neurology Branch, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2005 Jun 3;280(22):21444-52. doi: 10.1074/jbc.M414092200. Epub 2005 Apr 4.

Abstract

Mitochondrial fission is facilitated by a multiprotein complex assembled at the division site. The required components of the fission machinery in Saccharomyces cerevisiae include Dnm1, Fis1, and Mdv1. In the present study, we determined the protein structure of yeast Fis1 using NMR spectroscopy. Although the six alpha-helices, as well as their folding, in the yeast Fis1 structure are similar to those of the tetratricopeptide repeat (TPR) domains of the human Fis1 structure, the two structures differ in their N termini. The N-terminal tail of human Fis1 is flexible and unstructured, whereas a major segment of the longer N terminus of yeast Fis1 is fixed to the concave face formed by the six alpha-helices in the TPR domains. To investigate the role of the fixed N terminus, exogenous Fis1 was expressed in yeast lacking the endogenous protein. Expression of yeast Fis1 protein rescued mitochondrial fission in delta fis1 yeast only when the N-terminal TPR binding segment was left intact. The presence of this segment is also correlated to the recruitment of Mdv1 to mitochondria. The conformation of the N-terminal segment embedded in the TPR pocket indicates an intra-molecular regulation of Fis1 bioactivity. Although the TPR-like helix bundle of Fis1 mediates the interaction with Dnm1 and Mdv1, the N terminus of Fis1 is a prerequisite to recruit Mdv1 to facilitate mitochondrial fission.

摘要

线粒体分裂由组装在分裂位点的多蛋白复合物促进。酿酒酵母中分裂机制所需的组分包括Dnm1、Fis1和Mdv1。在本研究中,我们使用核磁共振光谱法测定了酵母Fis1的蛋白质结构。尽管酵母Fis1结构中的六个α螺旋及其折叠与人类Fis1结构的四肽重复(TPR)结构域相似,但这两种结构在其N端有所不同。人类Fis1的N端尾巴是灵活且无结构的,而酵母Fis1较长N端的一个主要片段固定在TPR结构域中由六个α螺旋形成的凹面上。为了研究固定N端的作用,在缺乏内源性蛋白质的酵母中表达了外源Fis1。只有当N端TPR结合片段保持完整时,酵母Fis1蛋白的表达才能挽救δfis1酵母中的线粒体分裂。该片段的存在也与Mdv1向线粒体的募集相关。嵌入TPR口袋中的N端片段的构象表明Fis1生物活性的分子内调节。尽管Fis1的TPR样螺旋束介导了与Dnm1和Mdv1的相互作用,但Fis1的N端是募集Mdv1以促进线粒体分裂的先决条件。

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