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A DFT Study on the Formation of a Phosphohistidine Intermediate in Prostatic Acid Phosphatase

机译:DFT研究前列腺酸性磷酸酶中磷酸组氨酸中间体的形成

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Histidine phosphatases are a class of enzymes that are characterized by the presence of a conserved RHGXRXP motif. This motif contains a catalytic histidine that is being phosphorylated in the course of a dephosphorylation reaction catalyzed by these enzymes. Prostatic acid phosphatase (PAP) is one such enzyme. The dephosphorylation of phosphotyrosine by PAP is a two-step process. The first step involves the transfer of a phosphate group from the substrate to the histidine (His12). The present study reports on the details of the first step of this reaction, which was investigated using a series of quantum chemistry calculations. A number of quantum models were constructed containing various residues that were thought to play a role in the mechanism. In all these models, the transition state displayed an associative character. The transition state is stabilized by three active site arginines (Arg11, Arg15, and Arg79), two of which belong to the aforementioned conserved motif. The work also demonstrated that His12 could act as a nucleophile. The enzyme is further characterized by a His257-Asp258 motif. The role of Asp258 has been elusive. In this work, we propose that Asp258 acts as a proton donor which becomes protonated when the substrate enters the binding pocket. Evidence is also obtained that the transfer of a proton from Asp258 to the leaving group is possibly mediated by a water molecule in the active site. The work also underlines the importance of His257 in lowering the energy barrier for the nucleophilic attack.
机译:组氨酸磷酸酶是一类以保守的RHGXRXP基序存在为特征的酶。该基序包含催化的组氨酸,其在被这些酶催化的脱磷酸反应中被磷酸化。前列腺酸磷酸酶(PAP)就是这样一种酶。 PAP对磷酸酪氨酸的去磷酸化是一个两步过程。第一步涉及将磷酸基团从底物转移至组氨酸(His12)。本研究报告了该反应第一步的详细信息,已使用一系列量子化学计算对其进行了研究。构建了许多量子模型,其中包含各种被认为在该机理中起作用的残基。在所有这些模型中,过渡状态都显示出关联性。过渡态由三个活性位点精氨酸(Arg11,Arg15和Arg79)稳定,其中两个属于上述保守基序。这项工作还表明,His12可以充当亲核试剂。该酶的特征还在于His257-Asp258基序。 Asp258的作用难以捉摸。在这项工作中,我们建议Asp258充当质子供体,当底物进入结合袋时会质子化。还获得证据表明质子从Asp258到离去基团的转移可能是由活性位点中的水分子介导的。这项工作还强调了His257在降低亲核攻击的能垒方面的重要性。

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