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Structural and functional analysis of the phosphoryl transfer reaction mediated by the human small C-terminal domain phosphatase Scp1

机译:人类小C末端域磷酸酶Scp1介导的磷酸转移反应的结构和功能分析

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摘要

Human small C-terminal domain phosphatase 1 (Scp1) modulates the phosphorylation state of the C-terminal domain (CTD) of eukaryotic RNA polymerase II (RNAP II), with preference for phosphorylated Ser5 in the tandem heptad repeats of the CTD. Additionally, Scp1 was identified as a conserved regulator of neuronal stem cell development. Scp1 is a member of haloacid dehalogenase (HAD) superfamily, whose catalysis depends on a Mg2+ ion and a DXDX(T/V) motif. The first Asp of the motif is identified as the nucleophile that is subject to phosphorylation leading to a phosphoryl-aspartate intermediate. This high-energy mixed anhydride intermediate is subsequently hydrolyzed to regenerate the enzyme. In the present study, we successfully captured the phosphoryl-aspartate intermediate in the crystal structure of a Scp1D206A mutant soaked with para-nitrophenyl phosphate (pNPP), providing strong evidence for the proposed mechanism. Furthermore, steady-state kinetic analysis of a variety of Scp1 mutants revealed the importance of Asp206 in Mg2+ coordination mediated by a water molecule. Overall, we captured the snapshots of the phosphoryl transfer reaction at each stage of Scp1-mediated catalysis. Through structural-based sequence alignment, we show that the spatial position of the D206 side chain is strictly conserved throughout HAD family. Our results strongly suggest that Asp206 and its equivalent residues in other HAD family members play important structural and possible mechanistic roles.
机译:人小C末端域磷酸酶1(Scp1)调节真核RNA聚合酶II(RNAP II)的C末端域(CTD)的磷酸化状态,在CTD的串联七倍体重复序列中偏爱磷酸化的Ser5。此外,Scp1被确定为神经干细胞发育的保守调节剂。 Scp1是卤代酸脱卤酶(HAD)超家族的成员,其催化作用取决于Mg 2 + 离子和DXDX(T / V)基序。该基序的第一个Asp被鉴定为亲核试剂,该亲核试剂会发生磷酸化反应,从而生成磷酸化的天冬氨酸中间体。该高能混合酸酐中间体随后被水解以再生酶。在本研究中,我们成功地捕获了对硝基苯基磷酸酯(pNPP)浸泡的Scp1D206A突变体的晶体结构中的天冬氨酸磷酸酯中间体,为提出的机制提供了有力的证据。此外,对多种Scp1突变体的稳态动力学分析表明,Asp206在水分子介导的Mg 2 + 配位中的重要性。总体而言,我们捕获了Scp1介导的催化作用的每个阶段的磷酸转移反应的快照。通过基于结构的序列比对,我们显示D206侧链的空间位置在整个HAD家族中都严格守恒。我们的结果强烈表明,Asp206及其在HAD其他家族成员中的等效残基起着重要的结构和可能的机械作用。

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