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首页> 外文期刊>ACS Omega >Mutational Analysis of a Conserved Glutamate Reveals Unique Mechanistic and Structural Features of the Phosphatase PRL-3
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Mutational Analysis of a Conserved Glutamate Reveals Unique Mechanistic and Structural Features of the Phosphatase PRL-3

机译:保守的谷氨酸的突变分析揭示了磷酸酶PRL-3的独特机理和结构特征

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Phosphatase of regenerating liver (PRL)-3 (PTP4A3 ) has gained much attention in cancer research due to its involvement in tumor promoting and metastatic processes. It belongs to the protein tyrosine phosphatase (PTP) superfamily and is thought to follow the catalytic mechanism shared by this family, which aside from the conserved active-site amino acids includes a conserved glutamic acid residue that is usually required for the integrity of the active site in PTPs. We noted that in structures of PRL-3, PRL-1, and PTEN these residues do not clearly align and therefore we sought to investigate if the glutamic acid residue fulfills its usual function in these proteins. Although this residue was essential for PTEN’s catalytic activity, it was nonessential for PRL-1 and PRL-3. Surprisingly, the mutation E50R increased PRL-3 activity against all tested in vitro substrates and also enhanced PRL-3-promoted cell adhesion and migration. We show that the introduction of Arg50 leads to an enhancement of substrate turnover for both PRL-3 and, to a lesser extent, PRL-1, and that the stronger gain in activity correlates with a higher structural flexibility of PRL-3, likely allowing for conformational adaptation during catalysis. Thus, in contrast to its crucial functions in other PTPs, this conserved glutamic acid can be replaced in PRL-3 without impairing the structural integrity. The variant with enhanced activity might serve as a tool to study PRL-3 in the future.
机译:再生肝磷酸酶(PRL)-3(PTP4A3)由于参与了肿瘤的促进和转移过程而在癌症研究中引起了广泛的关注。它属于蛋白酪氨酸磷酸酶(PTP)超家族,被认为遵循该家族共有的催化机制,除了保守的活性位点氨基酸外,还包括保守的谷氨酸残基,通常是活性成分完整性所必需的。 PTP中的站点。我们注意到在PRL-3,PRL-1和PTEN的结构中这些残基没有清楚地对齐,因此我们试图研究谷氨酸残基是否在这些蛋白质中实现了其通常的功能。尽管此残留物对PTEN的催化活性至关重要,但对PRL-1和PRL-3却不是必需的。令人惊讶地,突变E50R增加了对所有测试的体外底物的PRL-3活性,并且还增强了PRL-3促进的细胞粘附和迁移。我们表明,Arg50的引入导致PRL-3以及在较小程度上PRL-1的底物周转率提高,并且活性增强与PRL-3的结构柔性更高有关,这可能允许用于催化过程中的构象适应。因此,与其在其他PTP中的关键功能相反,这种保守的谷氨酸可以在PRL-3中被取代而不损害结构完整性。具有增强活性的变体可能会成为将来研究PRL-3的工具。

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