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A novel whole-cell lysate kinase assay identifies substrates of the p38 MAPK in differentiating myoblasts

机译:一种新颖的全细胞裂解物激酶测定法可鉴定分化成肌细胞中p38 MAPK的底物

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Background The p38α mitogen-activated protein kinase (MAPK) is a critical mediator of myoblast differentiation, and does so in part through the phosphorylation and regulation of several transcription factors and chromatin remodelling proteins. However, whether p38α is involved in processes other than gene regulation during myogenesis is currently unknown, and why other p38 isoforms cannot compensate for its loss is unclear. Methods To further characterise the involvement of p38α during myoblast differentiation, we developed and applied a simple technique for identifying relevant in vivo kinase substrates and their phosphorylation sites. In addition to identifying substrates for one kinase, the technique can be used in vitro to compare multiple kinases in the same experiment, and we made use of this to study the substrate specificities of the p38α and β isoforms. Results Applying the technique to p38α resulted in the identification of seven in vivo phosphorylation sites on six proteins, four of which are cytoplasmic, in lysate derived from differentiating myoblasts. An in vitro comparison with p38β revealed that substrate specificity does not discriminate these two isoforms, but rather that their distinguishing characteristic appears to be cellular localisation. Conclusion Our results suggest p38α has a novel cytoplasmic role during myogenesis and that its unique cellular localisation may be why p38β and other isoforms cannot compensate for its absence. The substrate-finding approach presented here also provides a necessary tool for studying the hundreds of protein kinases that exist and for uncovering the deeper mechanisms of phosphorylation-dependent cell signalling.
机译:背景技术p38α丝裂原活化蛋白激酶(MAPK)是成肌细胞分化的关键介体,部分通过磷酸化和调控几种转录因子和染色质重塑蛋白来实现。然而,目前尚不清楚p38α是否参与成肌过程中基因调控以外的过程,尚不清楚为什么其他p38亚型不能补偿其丢失。方法为了进一步表征成肌细胞分化过程中p38α的参与,我们开发并应用了一种简单的技术来鉴定相关的体内激酶底物及其磷酸化位点。除了鉴定一种激酶的底物外,该技术还可以在体外用于在同一实验中比较多种激酶,我们利用它来研究p38α和β同工型的底物特异性。结果将该技术应用于p38α导致鉴定了来自分化成肌细胞的裂解物中6种蛋白质的7个体内磷酸化位点,其中4种具有细胞质。与p38β的体外比较显示,底物特异性不能区分这两种同工型,而是它们的区别特征似乎是细胞定位。结论我们的结果表明p38α在肌发生过程中具有新的细胞质作用,其独特的细胞定位可能是为什么p38β和其他同工型不能弥补其缺失的原因。本文介绍的底物寻找方法还提供了必要的工具,用于研究现有的数百种蛋白激酶,并揭示磷酸化依赖性细胞信号转导的更深层机制。

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