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SIRT1 通过与 HDAC1 相互作用实现催化非依赖性神经保护。

Catalytic-independent neuroprotection by SIRT1 is mediated through interaction with HDAC1.

机构信息

Department of Biological Sciences, Southern Methodist University, Dallas, TX, United States of America.

National Institutes of Health, Bethesda, MD, United States of America.

出版信息

PLoS One. 2019 Apr 11;14(4):e0215208. doi: 10.1371/journal.pone.0215208. eCollection 2019.

Abstract

SIRT1, a NAD+-dependent deacetylase, protects neurons in a variety of in vitro and in vivo models of neurodegenerative disease. We have previously described a neuroprotective effect by SIRT1 independent of its catalytic activity. To confirm this conclusion we tested a panel of SIRT1 deletion mutant constructs, designated Δ1-Δ10, in cerebellar granule neurons induced to undergo apoptosis by low potassium treatment. We find that deletions of its N-terminal, those lacking portions of the catalytic domain, as well as one that lacks the ESA (Essential for SIRT1 Activity) motif, are as protective as wild-type SIRT1. In contrast, deletion of the region spanning residues 542-609, construct Δ8, substantially reduced the neuroprotective activity of SIRT1. As observed with LK-induced apoptosis, all SIRT1 constructs except Δ8 protect neurons against mutant huntingtin toxicity. Although its own catalytic activity is not required, neuroprotection by SIRT1 is abolished by inhibitors of Class I HDACs as well as by knockdown of endogenous HDAC1. We find that SIRT1 interacts with HDAC1 and this interaction is greatly increased by deleting regions of SIRT1 necessary for its catalytic activity. However, SIRT1-mediated protection is not dependent on HDAC1 deacetylase activity. Although other studies have described that catalytic activity of SIRT1 mediates is neuroprotective effect, our study suggests that in cerebellar granule neurons its deacetylase activity is not important and that HDAC1 contributes to the neuroprotective effect of SIRT1.

摘要

SIRT1 是一种 NAD+依赖的去乙酰化酶,可保护多种体外和体内神经退行性疾病模型中的神经元。我们之前描述了 SIRT1 的一种独立于其催化活性的神经保护作用。为了证实这一结论,我们在通过低钾处理诱导凋亡的小脑颗粒神经元中测试了一系列 SIRT1 缺失突变体构建体,命名为 Δ1-Δ10。我们发现其 N 端缺失、缺失部分催化结构域的缺失以及缺失 ESA(SIRT1 活性必需)基序的缺失与野生型 SIRT1 一样具有保护作用。相比之下,缺失跨越残基 542-609 的区域的构建体 Δ8 大大降低了 SIRT1 的神经保护活性。与 LK 诱导的凋亡一样,除 Δ8 外的所有 SIRT1 构建体都能保护神经元免受突变亨廷顿毒性的影响。尽管不需要其自身的催化活性,但 SIRT1 的神经保护作用被 I 类 HDAC 抑制剂以及内源性 HDAC1 的敲低所消除。我们发现 SIRT1 与 HDAC1 相互作用,并且通过删除 SIRT1 的催化活性所必需的区域,这种相互作用大大增加。然而,SIRT1 介导的保护不依赖于 HDAC1 的去乙酰化酶活性。尽管其他研究已经描述了 SIRT1 的催化活性介导了其神经保护作用,但我们的研究表明,在小脑颗粒神经元中,其去乙酰化酶活性并不重要,并且 HDAC1 有助于 SIRT1 的神经保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fbc/6459503/9f2576e014bc/pone.0215208.g001.jpg

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