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Mj1640/ DUF358 蛋白的晶体结构揭示了一种假定的 SPOUT 类 RNA 甲基转移酶。

Crystal structure of Mj1640/DUF358 protein reveals a putative SPOUT-class RNA methyltransferase.

机构信息

Mechanobiology Institute, National University of Singapore, T-lab Building, 5A Engineering Drive 1, Singapore 117411, Singapore.

出版信息

J Mol Cell Biol. 2010 Dec;2(6):366-74. doi: 10.1093/jmcb/mjq034.

Abstract

The proteins in DUF358 family are all bacterial proteins, which are ∼200 amino acids long with unknown function. Bioinformatics analysis suggests that these proteins contain several conserved arginines and aspartates that might adopt SPOUT-class fold. Here we report crystal structure of Methanocaldococcus jannaschii DUF358/Mj1640 in complex with S-adenosyl-L-methionine (SAM) at 1.4 Å resolution. The structure reveals a single domain structure consisting of eight-stranded β-sheets sandwiched by six α-helices at both sides. Similar to other SPOUT-class members, Mj1640 contains a typical deep trefoil knot at its C-terminus to accommodate the SAM cofactor. However, Mj1640 has limited structural extension at its N-terminus, which is unique to this family member. Mj1640 forms a dimer, which is mediated by two parallel pairs of α-helices oriented almost perpendicular to each other. Although Mj1640 shares close structural similarity with Nep1, the significant differences in N-terminal extension domain and the overall surface charge distribution strongly suggest that Mj1640 might target a different RNA sequence. Detailed structural analysis of the SAM-binding pocket reveals that Asp157 or Glu183 from its own monomer or Ser43 from the associate monomer probably plays the catalytic role for RNA methylation.

摘要

DUF358 家族的蛋白质均为细菌蛋白,长度约为 200 个氨基酸,功能未知。生物信息学分析表明,这些蛋白质含有几个保守的精氨酸和天冬氨酸,可能采用 SPOUT 类折叠。本文报道了 Methanocaldococcus jannaschii DUF358/Mj1640 与 S-腺苷-L-甲硫氨酸(SAM)复合物的晶体结构,分辨率为 1.4 Å。结构显示出由八个β-折叠链夹在两侧的六个α-螺旋组成的单一结构域。与其他 SPOUT 类成员类似,Mj1640 在其 C 末端包含一个典型的深三叶结以容纳 SAM 辅因子。然而,Mj1640 在其 N 末端的结构延伸有限,这是该家族成员所特有的。Mj1640 形成二聚体,由两对平行的α-螺旋介导,彼此几乎垂直。尽管 Mj1640 与 Nep1 具有密切的结构相似性,但 N 末端延伸结构域和整体表面电荷分布的显著差异强烈表明 Mj1640 可能针对不同的 RNA 序列。SAM 结合口袋的详细结构分析表明,来自自身单体的 Asp157 或 Glu183 或来自相关单体的 Ser43 可能在 RNA 甲基化中发挥催化作用。

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