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人 LONP1 蛋白酶的结构揭示了蛋白酶激活过程中的调节步骤。

Structures of the human LONP1 protease reveal regulatory steps involved in protease activation.

机构信息

Department of Integrative Structural and Computational Biology, Scripps Research, La Jolla, CA, USA.

Department of Molecular Medicine, Scripps Research, La Jolla, CA, USA.

出版信息

Nat Commun. 2021 May 28;12(1):3239. doi: 10.1038/s41467-021-23495-0.

Abstract

The human mitochondrial AAA+ protein LONP1 is a critical quality control protease involved in regulating diverse aspects of mitochondrial biology including proteostasis, electron transport chain activity, and mitochondrial transcription. As such, genetic or aging-associated imbalances in LONP1 activity are implicated in pathologic mitochondrial dysfunction associated with numerous human diseases. Despite this importance, the molecular basis for LONP1-dependent proteolytic activity remains poorly defined. Here, we solved cryo-electron microscopy structures of human LONP1 to reveal the underlying molecular mechanisms governing substrate proteolysis. We show that, like bacterial Lon, human LONP1 adopts both an open and closed spiral staircase orientation dictated by the presence of substrate and nucleotide. Unlike bacterial Lon, human LONP1 contains a second spiral staircase within its ATPase domain that engages substrate as it is translocated toward the proteolytic chamber. Intriguingly, and in contrast to its bacterial ortholog, substrate binding within the central ATPase channel of LONP1 alone is insufficient to induce the activated conformation of the protease domains. To successfully induce the active protease conformation in substrate-bound LONP1, substrate binding within the protease active site is necessary, which we demonstrate by adding bortezomib, a peptidomimetic active site inhibitor of LONP1. These results suggest LONP1 can decouple ATPase and protease activities depending on whether AAA+ or both AAA+ and protease domains bind substrate. Importantly, our structures provide a molecular framework to define the critical importance of LONP1 in regulating mitochondrial proteostasis in health and disease.

摘要

人类线粒体 AAA+ 蛋白 LONP1 是一种关键的质量控制蛋白酶,参与调节线粒体生物学的多个方面,包括蛋白质平衡、电子传递链活性和线粒体转录。因此,LONP1 活性的遗传或与年龄相关的失衡与许多人类疾病相关的病理性线粒体功能障碍有关。尽管如此,LONP1 依赖性蛋白水解活性的分子基础仍未得到很好的定义。在这里,我们解决了人类 LONP1 的低温电子显微镜结构,以揭示控制底物蛋白水解的潜在分子机制。我们表明,与细菌 Lon 一样,人类 LONP1 采用了由底物和核苷酸存在决定的开放和封闭的螺旋梯取向。与细菌 Lon 不同,人类 LONP1 在其 ATP 酶结构域内包含第二个螺旋梯,当底物被转运到蛋白水解室时,它与底物结合。有趣的是,与细菌同源物不同,仅在 LONP1 的中央 ATP 酶通道内结合底物不足以诱导蛋白酶结构域的激活构象。为了在结合底物的 LONP1 中成功诱导活性蛋白酶构象,需要在蛋白酶活性位点内结合底物,我们通过添加硼替佐米(一种 LONP1 的肽模拟活性位点抑制剂)证明了这一点。这些结果表明,LONP1 可以根据 AAA+ 或 AAA+ 和蛋白酶结构域是否结合底物来分离 ATP 酶和蛋白酶活性。重要的是,我们的结构为定义 LONP1 在调节健康和疾病中线粒体蛋白质平衡方面的关键重要性提供了分子框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d297/8163871/308380129921/41467_2021_23495_Fig1_HTML.jpg

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