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首页> 外文期刊>Scientific reports. >Structure of the Dictyostelium Myosin-II Heavy Chain Kinase A (MHCK-A) α-kinase domain apoenzyme reveals a novel autoinhibited conformation
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Structure of the Dictyostelium Myosin-II Heavy Chain Kinase A (MHCK-A) α-kinase domain apoenzyme reveals a novel autoinhibited conformation

机译:Dictyostelium myosin-II重链激酶A(MHCK-A)α-激酶结构域Apoenzyme揭示了一种新的自动抑制构象

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摘要

The α-kinases are a family of a typical protein kinases present in organisms ranging from protozoa to mammals. Here we report an autoinhibited conformation for the α-kinase domain of Dictyostelium myosin-II heavy chain kinase A (MHCK-A) in which nucleotide binding to the catalytic cleft, located at the interface between an N-terminal and C-terminal lobe, is sterically blocked by the side chain of a conserved arginine residue (Arg592). Previous α-kinase structures have shown that an invariant catalytic aspartic acid residue (Asp766) is phosphorylated. Unexpectedly, in the autoinhibited conformation the phosphoryl group is transferred to the adjacent Asp663, creating an interaction network that stabilizes the autoinhibited state. The results suggest that Asp766 phosphorylation may play both catalytic and regulatory roles. The autoinhibited structure also provides the first view of a phosphothreonine residue docked into the phospho-specific allosteric binding site (Pi-pocket) in the C-lobe of the α-kinase domain.
机译:α-激酶是存在于从原生动物到哺乳动物的生物中存在的典型蛋白激酶的家族。在这里,我们报告了Dictyostelium myosin-II重链激酶A(MHCK-A)的α-激酶结构域的自动构象,其中核苷酸与催化裂缝结合,位于N-末端和C末端叶之间的界面处,在保守的精氨酸残基(ARG592)的侧链是间隙。先前的α-激酶结构表明,不变的催化天冬氨酸残基(ASP766)是磷酸化的。出乎意料地,在自动抑制的构象中,磷素组被转移到相邻的ASP663,创建稳定自动禁止状态的交互网络。结果表明,ASP766磷酸化可能发挥催化和调节作用。自动抑制的结构还将磷酸胆碱残留物的第一个视图在α-激酶结构域的C-叶片中停靠在磷酸特异性颠覆性位点(Pi-袋)中。

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