METTL9对蛋白质组氨酸n1特异性“His-x-His”基序甲基化的分子基础

Wentao Zhao , Yang Zhou , Caiyi Li , Yucong Bi , Keyun Wang , Mingliang Ye , Haitao Li
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引用次数: 1

摘要

组氨酸甲基化作为一种有趣的策略,可以引入改变靶蛋白的特性,包括金属离子螯合、组氨酸催化、分子组装和翻译调节。作为一种新发现的组氨酸甲基转移酶,METTL9催化含有“His-x-His”基序的蛋白质底物的n1甲基化(HxH, x表示小侧链残基)。在这里,我们的结构和生化研究表明,METTL9特异性地甲基化“HxH”基序的第二个组氨酸,同时利用第一个组氨酸作为识别特征。我们观察到METTL9和一个五肽基序之间的紧密结合,其中小的“x”残基嵌入并限制在底物口袋中。在络合物形成后,组氨酸咪唑环的N3原子被天冬氨酸残基稳定,使得N1原子呈现给s -腺苷蛋氨酸进行甲基化。此外,METTL9表现出优先连续和“C-to-N”定向甲基化的特征,这些特征存在于许多METTL9底物中。总的来说,我们的工作说明了METTL9在广泛存在的“HxH”基序的n1特异性甲基化中的分子设计,突出了它在组氨酸甲基化生物学中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Molecular basis for protein histidine N1-specific methylation of the “His-x-His” motifs by METTL9

Histidine methylation serves as an intriguing strategy to introduce altered traits of target proteins, including metal ion chelation, histidine-based catalysis, molecular assembly, and translation regulation. As a newly identified histidine methyltransferase, METTL9 catalyzes N1-methylation of protein substrates containing the “His-x-His” motif (HxH, x denotes small side chain residue). Here our structural and biochemical studies revealed that METTL9 specifically methylates the second histidine of the “HxH” motif, while exploiting the first one as a recognition signature. We observed an intimate engagement between METTL9 and a pentapeptide motif, where the small “x” residue is embedded and confined within the substrate pocket. Upon complex formation, the N3 atom of histidine imidazole ring is stabilized by an aspartate residue such that the N1 atom is presented to S-adenosylmethionine for methylation. Moreover, METTL9 displayed a feature in preferred consecutive and “C-to-N” directional methylation of tandem “HxH” repeats that exist in many METTL9 substrates. Collectively, our work illustrates the molecular design of METTL9 in N1-specific methylation of the broadly existing “HxH” motifs, highlighting its importance in histidine methylation biology.

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来源期刊
Cell insight
Cell insight Neuroscience (General), Biochemistry, Genetics and Molecular Biology (General), Cancer Research, Cell Biology
CiteScore
2.70
自引率
0.00%
发文量
0
审稿时长
35 days
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