生物化学
磷酸化
蛋白质磷酸化
生物
激酶
蛋白激酶A
丝氨酸苏氨酸激酶
SH3域
丝氨酸
细胞生物学
地图2K7
c-Raf公司
细胞周期蛋白依赖激酶2
受体酪氨酸激酶
作者
Marcin J. Suskiewicz,Bence Hajdusits,Rebecca Beveridge,Alexander Heuck,Lam Dai Vu,R Kurzbauer,Katja Hauer,Vanessa Thoeny,Klaus Rumpel,Karl Mechtler,Anton Meinhart,Tim Clausen
标识
DOI:10.1038/s41589-019-0265-y
摘要
Protein phosphorylation regulates key processes in all organisms. In Gram-positive bacteria, protein arginine phosphorylation plays a central role in protein quality control by regulating transcription factors and marking aberrant proteins for degradation. Here, we report structural, biochemical, and in vivo data of the responsible kinase, McsB, the founding member of an arginine-specific class of protein kinases. McsB differs in structure and mechanism from protein kinases that act on serine, threonine, and tyrosine residues and instead has a catalytic domain related to that of phosphagen kinases (PhKs), metabolic enzymes that phosphorylate small guanidino compounds. In McsB, the PhK-like phosphotransferase domain is structurally adapted to target protein substrates and is accompanied by a novel phosphoarginine (pArg)-binding domain that allosterically controls protein kinase activity. The identification of distinct pArg reader domains in this study points to a remarkably complex signaling system, thus challenging simplistic views of bacterial protein phosphorylation. Structural and biochemical characterization of arginine kinase McsB reveals how its phosphagen kinase–like catalytic domain is adapted to target protein substrates while its phosphoarginine-binding domain allosterically controls kinase activity.
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