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两亲分子介导的活细胞中蛋白质的去棕榈酰化作用

Amphiphile-Mediated Depalmitoylation of Proteins in Living Cells.

机构信息

Department of Chemistry and Biochemistry , University of California, San Diego , La Jolla , California 92093 , United States.

出版信息

J Am Chem Soc. 2018 Dec 19;140(50):17374-17378. doi: 10.1021/jacs.8b10806. Epub 2018 Dec 10.

Abstract

Post-translational S-palmitoylation plays a central role in protein localization, trafficking, stability, aggregation, and cell signaling. Dysregulation of palmitoylation pathways in cells can alter protein function and is the cause of several diseases. Considering the biological and clinical importance of S-palmitoylation, tools for direct, in vivo modulation of this lipid modification would be extremely valuable. Here, we describe a method for the cleavage of native S-palmitoyl groups from proteins in living cells. Using a cell permeable, cysteine-functionalized amphiphile, we demonstrate the direct depalmitoylation of cellular proteins. We show that amphiphile-mediated depalmitoylation (AMD) can effectively cleave S-palmitoyl groups from the native GTPase HRas and successfully depalmitoylate mislocalized proteins in an infantile neuronal ceroid lipofuscinosis (INCL) disease model. AMD enables direct and facile depalmitoylation of proteins in live cells and has potential therapeutic applications for diseases such as INCL, where native protein thioesterase activity is deficient.

摘要

翻译后修饰的S-棕榈酰化在蛋白质定位、运输、稳定性、聚集及细胞信号传导中起着核心作用。细胞内棕榈酰化途径的失调会改变蛋白质功能,是多种疾病的病因。鉴于S-棕榈酰化在生物学和临床上的重要性,能够直接在体内调节这种脂质修饰的工具将极具价值。在此,我们描述了一种从活细胞中的蛋白质上切割天然S-棕榈酰基团的方法。使用一种细胞可渗透的、半胱氨酸功能化的两亲分子,我们证明了细胞蛋白质的直接去棕榈酰化。我们表明,两亲分子介导的去棕榈酰化(AMD)能够有效地从天然GTP酶HRas上切割S-棕榈酰基团,并在婴儿神经元蜡样脂褐质沉积症(INCL)疾病模型中成功地使错误定位的蛋白质去棕榈酰化。AMD能够在活细胞中直接且简便地实现蛋白质的去棕榈酰化,对于诸如INCL这类天然蛋白质硫酯酶活性缺乏的疾病具有潜在的治疗应用价值。

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