嗜热热菌蛋白质组翻译后修饰位点的结构分析。

Ryoji Masui, Yoshio Takahata, Masao Inoue, Yota Iio, Hiroki Okanishi, Kwang Kim, Noriko Nakagawa, Kei Yura, Seiki Kuramitsu
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引用次数: 3

摘要

磷酸化和乙酰化是真核生物和细菌中最常见的翻译后修饰(PTMs)。我们对一种极端嗜热的真细菌HB8的蛋白质进行了磷酸化蛋白质组和乙酰化分析,并鉴定了许多磷酸化和乙酰化位点。为了便于阐明这些PTM事件的结构方面,我们在各自蛋白质及其同源物的已知三级结构上绘制了PTM位点。Wu等人(Mol Cell Proteomics 12:2701-2713, 2013)最近报道了嗜热T. HB27蛋白的磷酸化蛋白质组学分析。因此,我们评估了鉴定蛋白或其同源物三级结构上这些磷酸化和乙酰化位点的结构特征。我们的研究表明,许多已鉴定的磷酸化位点非常接近结合配体,即“附近”和“周围”磷酸化位点的数量占已鉴定磷酸化位点总数的56%(48/86个位点)。此外,约60%的磷酸体显示
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Structural insights of post-translational modification sites in the proteome of Thermus thermophilus.

Phosphorylation and acetylation are the most prevalent post-translational modifications (PTMs) detected in not only eukaryotes but also bacteria. We performed phosphoproteome and acetylome analyses of proteins from an extremely thermophilic eubacterium Thermus thermophilus HB8, and identified numerous phosphorylation and acetylation sites. To facilitate the elucidation of the structural aspects of these PTM events, we mapped the PTM sites on the known tertiary structures for the respective proteins and their homologs. Wu et al. (Mol Cell Proteomics 12:2701-2713, 2013) recently reported phosphoproteome analysis of proteins from T. thermophilus HB27. Therefore, we assessed the structural characteristics of these phosphorylation and acetylation sites on the tertiary structures of the identified proteins or their homologs. Our study revealed that many of the identified phosphosites are in close proximity to bound ligands, i.e., the numbers of 'nearby' and 'peripheral' phosphorylation sites represent 56 % (48/86 sites) of total identified phosphorylation sites. In addition, approximately 60 % of all phosphosites exhibited <10 % accessible surface area of their side chains, suggesting some structural rearrangement is required for phosphoryl transfer by kinases. Our findings also indicate that phosphorylation of a residue occurs more frequently at a flexible region of the protein, whereas lysine acetylation occurs more frequently in an ordered structure.

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