| Literature DB >> 32969463 |
Jie Gao1, Bin Wang2, Huijuan Yu1, Gao Wu1, Cuihong Wan2, Wenting Liu3, Shanhui Liao1, Liansheng Cheng3, Zhongliang Zhu1.
Abstract
Post-translational modifications play important roles in mediating protein functions in a wide variety of cellular events in vivo. HEMK2-TRMT112 heterodimer has been reported to be responsible for both histone lysine methylation and eukaryotic release factor 1 (eRF1) glutamine methylation. However, how HEMK2-TRMT112 complex recognizes and catalyzes eRF1 glutamine methylation is largely unknown. Here, we present two structures of HEMK2-TRMT112, with one bound to SAM and the other bound with SAH and methylglutamine (Qme). Structural analyses of the post-catalytic complex, complemented by mass spectrometry experiments, indicate that the HEMK2 utilizes a specific pocket to accommodate the substrate glutamine and catalyzes the subsequent methylation. Therefore, our work not only throws light on the protein glutamine methylation mechanism, but also reveals the dual activity of HEMK2 by catalyzing the methylation of both Lys and Gln residues.Entities:
Keywords: HEMK2; SAM/SAH; TRMT112; glutamine methylation; x-ray crystallography
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Year: 2020 PMID: 32969463 DOI: 10.1042/BCJ20200594
Source DB: PubMed Journal: Biochem J ISSN: 0264-6021 Impact factor: 3.857