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首页> 外文期刊>Journal of Molecular Biology >Characterization of Protein Methyltransferases Rkm1, Rkm4, Efm4, Efm7, Set5 and Hmt1 Reveals Extensive Post-Translational Modification
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Characterization of Protein Methyltransferases Rkm1, Rkm4, Efm4, Efm7, Set5 and Hmt1 Reveals Extensive Post-Translational Modification

机译:蛋白质甲基转移酶的表征RKM1,RKM4,EFM4,EFM7,SET5和HMT1显示出广泛的翻译后修饰

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摘要

Abstract Protein methylation is one of the major post-translational modifications (PTMs) in the cell. In Saccharomyces cerevisiae , over 20 protein methyltransferases (MTases) and their respective substrates have been identified. However, the way in which these MTases are modified and potentially subject to regulation remains poorly understood. Here, we investigated six overexpressed S. cerevisiae protein MTases (Rkm1, Rkm4, Efm4, Efm7, Set5 and Hmt1) to identify PTMs of potential functional relevance. We identified 48 PTM sites across the six MTases, including phosphorylation, acetylation and methylation. Forty-two sites are novel. We contextualized the PTM sites in structural models of the MTases and revealed that many fell in catalytic pockets or enzyme–substrate interfaces. These may regulate MTase activity. Finally, we compared PTMs on Hmt1 with those on its human homologs PRMT1, PRMT3, CARM1, PRMT6 and PRMT8. This revealed that several PTMs are conserved from yeast to human, whereas others are only found in Hmt1. The mass spectrometry proteomics data have been deposited to the ProteomeXchange Consortium via the PRIDE partner repository with the dataset identifier PXD006767. Graphical abstract Display Omitted Highlights ? Protein methylation affects key processes, but its regulation is poorly understood. ? Six protein MTases are characterized in-depth by MS. ? Protein MTases are highly post-translationally modified. ? Structural contextualization indicates that MTases may be subject to regulation. ? Most comprehensive characterization of PTMs carried by MTases to date.
机译:摘要蛋白质甲基化是细胞中的主要翻译后修饰(PTMS)之一。在酿酒酵母中,已经鉴定了超过20种蛋白质甲基转移酶(MTases)及其各自的底物。然而,这些MTases被修改并可能受调节的方式仍然明白。在此,我们研究了六种过表达的S.酿酒术蛋白MTases(RKM1,RKM4,EFM4,EFM7,SET5和HMT1),以识别潜在功能相关性的PTM。我们鉴定了六个MTases的48个PTM位点,包括磷酸化,乙酰化和甲基化。四十二个网站是新颖的。我们在MTASES的结构模型中阐述了PTM位点,并揭示了许多人落入催化袋或酶底物界面。这些可能调节MTase活性。最后,我们将PTMS与HMT1上的PMT1与其人类同源物PRMT1,PRMT3,CARM1,PRMT6和PRMT8进行了比较。这揭示了从酵母中保存几种PTM,而其他PTM仅在HMT1中发现。质谱蛋白质组学数据通过具有数据集标识符PXD006767的骄傲伙伴存储库沉积到ProteomexChange联盟。图形抽象显示省略了亮点?蛋白质甲基化影响关键过程,但其调节很差。还是六种蛋白质mTases的表征为MS深度。还是蛋白质MTASS是高度翻译的修饰。还是结构上下文化表明MTASES可能受到调节。还是MTASES迄今为止携带的PTMS最全面的表征。

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