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Analysis of substrate specificity of human DHHC protein acyltransferases using a yeast expression system

机译:使用酵母表达系统分析人DHHC蛋白酰基转移酶的底物特异性

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摘要

Palmitoylation plays important roles in the regulation of protein localization, stability, and activity. The protein acyltransferases (PATs) have a common DHHC Cys-rich domain. Twenty-three DHHC proteins have been identified in humans. However, it is unclear whether all of these DHHC proteins function as PATs. In addition, their substrate specificities remain largely unknown. Here we develop a useful method to examine substrate specificities of PATs using a yeast expression system with six distinct model substrates. We identify 17 human DHHC proteins as PATs. Moreover, we classify 11 human and 5 yeast DHHC proteins into three classes (I, II, and III), based on the cellular localization of their respective substrates (class I, soluble proteins; class II, integral membrane proteins; class III, lipidated proteins). Our results may provide an important clue for understanding the function of individual DHHC proteins.
机译:棕榈酰化在蛋白质定位,稳定性和活性的调节中起重要作用。蛋白质酰基转移酶(PAT)具有共同的DHHC Cys富集结构域。在人类中已鉴定出23种DHHC蛋白。但是,尚不清楚所有这些DHHC蛋白是否都起PATs的作用。另外,它们的底物特异性在很大程度上仍然未知。在这里,我们开发了一种有用的方法,使用具有六个不同模型底物的酵母表达系统来检查PATs的底物特异性。我们确定17人类DHHC蛋白为PAT。此外,基于它们各自底物的细胞定位,我们将11种人类和5种酵母DHHC蛋白分为三类(I,II和III)(I类,可溶性蛋白; II类,整合膜蛋白; III类,脂化蛋白质)。我们的结果可能为理解单个DHHC蛋白的功能提供重要线索。

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