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DJ-1 和 Helix 8 对神经样细胞蛋白质组和降解组的影响。

Impact of DJ-1 and Helix 8 on the Proteome and Degradome of Neuron-Like Cells.

机构信息

Institute of Surgical Pathology, Medical Center, University of Freiburg, Breisacher Straße 115a, D-79106 Freiburg, Germany.

Institute of Molecular Medicine and Cell Research, Faculty of Medicine, University of Freiburg, 79110 Freiburg, Germany.

出版信息

Cells. 2021 Feb 16;10(2):404. doi: 10.3390/cells10020404.

Abstract

DJ-1 is an abundant and ubiquitous component of cellular proteomes. DJ-1 supposedly exerts a wide variety of molecular functions, ranging from enzymatic activities as a deglycase, protease, and esterase to chaperone functions. However, a consensus perspective on its molecular function in the cellular context has not yet been reached. Structurally, the C-terminal helix 8 of DJ-1 has been proposed to constitute a propeptide whose proteolytic removal transforms a DJ-1 zymogen to an active hydrolase with potential proteolytic activity. To better understand the cell-contextual functionality of DJ-1 and the role of helix 8, we employed post-mitotically differentiated, neuron-like SH-SY5Y neuroblastoma cells with stable over-expression of full length DJ-1 or DJ-1 lacking helix 8 (ΔH8), either with a native catalytically active site (C106) or an inactive site (C106A active site mutation). Global proteome comparison of cells over-expressing DJ-1 ΔH8 with native or mutated active site cysteine indicated a strong impact on mitochondrial biology. N-terminomic profiling however did not highlight direct protease substrate candidates for DJ-1 ΔH8, but linked DJ-1 to elevated levels of activated lysosomal proteases, albeit presumably in an indirect manner. Finally, we show that DJ-1 ΔH8 loses the deglycation activity of full length DJ-1. Our study further establishes DJ-1 as deglycation enzyme. Helix 8 is essential for the deglycation activity but dispensable for the impact on lysosomal and mitochondrial biology; further illustrating the pleiotropic nature of DJ-1.

摘要

DJ-1 是细胞蛋白质组中丰富且普遍存在的组成部分。DJ-1 据称具有多种分子功能,从糖苷酶、蛋白酶和酯酶的酶活性到伴侣功能不等。然而,尚未达成关于其在细胞环境中分子功能的共识观点。从结构上看,DJ-1 的 C 端螺旋 8 被提议构成一个前肽,其蛋白水解去除将 DJ-1 酶原转化为具有潜在蛋白水解活性的活性水解酶。为了更好地理解 DJ-1 的细胞上下文功能和螺旋 8 的作用,我们使用稳定过表达全长 DJ-1 或缺乏螺旋 8(ΔH8)的具有神经突样 SH-SY5Y 神经母细胞瘤细胞,这些细胞具有天然催化活性位点(C106)或无活性位点(C106A 活性位点突变)。过表达 DJ-1 ΔH8 的细胞与具有天然或突变活性位点半胱氨酸的细胞的全蛋白质组比较表明对线粒体生物学有很大影响。然而,N-端蛋白质组学 profiling 并未突出 DJ-1 ΔH8 的直接蛋白酶底物候选物,但将 DJ-1 与激活的溶酶体蛋白酶水平升高联系起来,尽管可能是间接的。最后,我们表明 DJ-1 ΔH8 失去了全长 DJ-1 的去糖基化活性。我们的研究进一步确立 DJ-1 为去糖基化酶。螺旋 8 对于去糖基化活性是必需的,但对于对溶酶体和线粒体生物学的影响是可有可无的;进一步说明了 DJ-1 的多效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11a9/7920061/eba4245fb273/cells-10-00404-g001.jpg

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