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From the Cover: BeF... formula ... acts as a phosphate analog in proteins phosphorylated on aspartate: Structure of a BeF... formula ... complex with phosphoserine phosphatase

机译:从封面开始:BeF ...公式...在天冬氨酸磷酸化的蛋白质中充当磷酸盐类似物:BeF ...公式...与磷酸丝氨酸磷酸酶复合物的结构

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摘要

Protein phosphoaspartate bonds play a variety of roles. In response regulator proteins of two-component signal transduction systems, phosphorylation of an aspartate residue is coupled to a change from an inactive to an active conformation. In phosphatases and mutases of the haloacid dehalogenase (HAD) superfamily, phosphoaspartate serves as an intermediate in phosphotransfer reactions, and in P-type ATPases, also members of the HAD family, it serves in the conversion of chemical energy to ion gradients. In each case, lability of the phosphoaspartate linkage has hampered a detailed study of the phosphorylated form. For response regulators, this difficulty was recently overcome with a phosphate analog, BeF, which yields persistent complexes with the active site aspartate of their receiver domains. We now extend the application of this analog to a HAD superfamily member by solving at 1.5-Å resolution the x-ray crystal structure of the complex of BeF with phosphoserine phosphatase (PSP) from Methanococcus jannaschii. The structure is comparable to that of a phosphoenzyme intermediate: BeF is bound to Asp-11 with the tetrahedral geometry of a phosphoryl group, is coordinated to Mg2+, and is bound to residues surrounding the active site that are conserved in the HAD superfamily. Comparison of the active sites of BeF⋅PSP and BeF⋅CeY, a receiver domain/response regulator, reveals striking similarities that provide insights into the function not only of PSP but also of P-type ATPases. Our results indicate that use of BeF for structural studies of proteins that form phosphoaspartate linkages will extend well beyond response regulators.
机译:蛋白质天冬氨酸磷酸酯键起多种作用。在两组分信号转导系统的应答调节蛋白中,天冬氨酸残基的磷酸化与从无活性构象到活性构象的变化偶联。在卤代酸脱卤酶(HAD)超家族的磷酸酶和突变酶中,天冬氨酸磷酸酯是磷转移反应的中间体,在P型ATP酶(也是HAD家族的成员)中,其作用是将化学能转化为离子梯度。在每种情况下,天冬氨酸磷酸酯键的不稳定性阻碍了对磷酸化形式的详细研究。对于反应调节剂,最近用磷酸盐类似物BeF克服了这一困难,它产生了与受体结构域的活性位点天冬氨酸呈持久性复合物。现在,我们以1.5-Å的分辨率解决BeF与詹氏甲烷球菌的磷酸丝氨酸磷酸酶(PSP)配合物的X射线晶体结构,从而将该类似物的应用扩展到HAD超家族成员。其结构与磷酸酶中间体的结构相当:BeF以磷酸基团的四面体几何形状与Asp-11结合,与Mg 2 + 配位,并与活性位点周围的残基结合在HAD超家族中是保守的。受体域/响应调节剂BeF·PSP和BeF·CeY的活性位点的比较显示出惊人的相似性,不仅提供了PSP的功能,还提供了P型ATP酶的功能。我们的结果表明,使用BeF进行形成磷酸天冬氨酸键的蛋白质的结构研究将远远超出响应调节剂的范围。

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