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线粒体 ClpX 通过部分展开激活必需的生物合成酶。

Mitochondrial ClpX activates an essential biosynthetic enzyme through partial unfolding.

机构信息

Department of Biochemistry, Brandeis University, Waltham, United States.

Department of Biology, Massachusetts Institute of Technology, Cambridge, United States.

出版信息

Elife. 2020 Feb 24;9:e54387. doi: 10.7554/eLife.54387.

Abstract

Mitochondria control the activity, quality, and lifetime of their proteins with an autonomous system of chaperones, but the signals that direct substrate-chaperone interactions and outcomes are poorly understood. We previously discovered that the mitochondrial AAA+ protein unfoldase ClpX (mtClpX) activates the initiating enzyme for heme biosynthesis, 5-aminolevulinic acid synthase (ALAS), by promoting cofactor incorporation. Here, we ask how mtClpX accomplishes this activation. Using proteins, we identified sequence and structural features within ALAS that position mtClpX and provide it with a grip for acting on ALAS. Observation of ALAS undergoing remodeling by mtClpX revealed that unfolding is limited to a region extending from the mtClpX-binding site to the active site. Unfolding along this path is required for mtClpX to gate cofactor binding to ALAS. This targeted unfolding contrasts with the global unfolding canonically executed by ClpX homologs and provides insight into how substrate-chaperone interactions direct the outcome of remodeling.

摘要

线粒体通过自主的伴侣蛋白系统来控制其蛋白质的活性、质量和寿命,但指导底物-伴侣蛋白相互作用和结果的信号机制还知之甚少。我们之前发现,线粒体 AAA+ 蛋白解折叠酶 ClpX(mtClpX)通过促进辅助因子的结合来激活血红素生物合成的起始酶 5-氨基酮戊酸合酶(ALAS)。在这里,我们想知道 mtClpX 如何完成这种激活。使用 蛋白,我们确定了 ALAS 中的序列和结构特征,这些特征确定了 mtClpX 的位置,并为其提供了对 ALAS 发挥作用的抓手。观察到 mtClpX 对 ALAS 进行重塑,揭示了解折叠仅限于从 mtClpX 结合位点延伸到活性位点的区域。沿着这条路径进行的解折叠对于 mtClpX 门控辅助因子与 ALAS 的结合是必需的。这种靶向解折叠与 ClpX 同源物通常执行的全局解折叠形成对比,并深入了解了底物-伴侣蛋白相互作用如何指导重塑的结果。

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