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Utilizing Optimized Tools to Investigate PTM Crosstalk: Identifying Potential PTM Crosstalk of Acetylated Mitochondrial Proteins

机译:利用优化工具调查PTM串扰:确定乙酰化线粒体蛋白的潜在PTM串扰

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摘要

Post-translational modification (PTM) crosstalk is recognized as a major cell-regulatory mechanism, and studies of several proteins have validated the premise that PTMs work in concert. Previous work by our group investigated the potential PTM crosstalk on proteins in the EGFR-Ras-c-Fos axis by utilizing a comprehensive set of PTM reagents termed Signal-Seeker toolkits. In this study, these tools were used to investigate the potential PTM crosstalk that occurs in acetylated mitochondrial proteins in response to a mitochondrial stress-inducing agent hydrogen peroxide (H2O2). Mitochondrial protein acetylation has been shown to participate in PTM crosstalk as exemplified by the regulation of the pyruvate dehydrogenase complex via kinase, phosphatase, acetyltransferase, and deacetylase activities. Changes in the acetylated state of mitochondrial proteins were investigated, in response to H2O2, using a novel anti acetyl lysine (Ac-K) antibody. Signal-Seeker PTM detection tools were used to validate the acetylation state of ten mitochondrial targets, as well as their endogenous acetylation state in response to H2O2. Importantly, the endogenous acetylation, ubiquitination, SUMOylation 2/3, and tyrosine phosphorylation state of four target mitochondrial proteins were also investigated with the toolkit. Each of the four proteins had unique PTM profiles, but diverging acetylation and ubiquitin or SUMO 2/3 signals appeared to be a common theme. This proof-of-concept study identifies the Signal-Seeker toolkits as a useful tool to investigate potential PTM crosstalk.
机译:翻译后修饰(PTM)串扰被认为是主要的细胞调节机制,对几种蛋白质的研究已经证实了PTM协同工作的前提。我们小组先前的工作是通过利用一套称为Signal-Seeker工具包的PTM试剂,研究EGFR-Ras-c-Fos轴上蛋白质上潜在的PTM串扰。在这项研究中,这些工具用于研究乙酰化线粒体蛋白中对线粒体应激诱导剂过氧化氢(H2O2)的潜在PTM串扰。线粒体蛋白乙酰化已被证明参与PTM串扰,例如通过激酶,磷酸酶,乙酰基转移酶和脱乙酰基酶活性调节丙酮酸脱氢酶复合物。使用新型抗乙酰赖氨酸(Ac-K)抗体,响应H2O2,研究了线粒体蛋白乙酰化状态的变化。使用Signal-Seeker PTM检测工具来验证10个线粒体靶标的乙酰化状态以及它们对H2O2的内源性乙酰化状态。重要的是,还使用该工具包研究了四个靶线粒体蛋白的内源性乙酰化,泛素化,SUMOylation 2/3和酪氨酸磷酸化状态。四种蛋白质中的每一种都有独特的PTM谱,但是不同的乙酰化和泛素或SUMO 2/3信号似乎是一个共同的主题。这项概念验证研究将Signal-Seeker工具包确定为研究潜在PTM串扰的有用工具。

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