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Enzymatic characterization and molecular mechanism of a novel aspartokinase mutant M372I/T379W from Corynebacterium pekinense

机译:北京棒状杆菌新型天冬氨酸激酶突变体M372I / T379W的酶学表征及分子机理

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A novel aspartokinase mutant M372I/T379W from Corynebacterium pekinense was constructed by using site-directed mutagenesis. The enzyme was then purified, characterized, and its molecular mechanism was comprehensively analyzed. Compared with wild-type AK, the catalytic activity of M372I/T379W AK was 16.51 fold higher and the optimum temperature increased from 28 to 35 °C. The thermostability of M372I/T379W AK was significantly improved. Microscale thermophoresis analysis indicated that M372I/T379W AK not only weakened the inhibitory effect of Lys, but also had stronger binding force with Asp. Molecular dynamics simulation showed that mutations M372I and T379W could regulate the activity of CpAK through affecting the flexibility of Asp and ATP binding pocket residues and the hydrogen bond between CpAK and Asp. In addition, mutations could affect the relative position of protein domains. The width of the Asp binding pocket entrance gate Arg169–Ala60 of M372I/T379W AK was greater than that in wild-type AK and the CpAK switched from T-state to R-state, which promoted the binding of the enzyme to Asp and improving the catalytic efficiency of this enzyme. These results explain the molecular mechanism of M372I/T379W AK, which will greatly facilitate the rational design of more aspartokinase mutants, with have potential applications in aspartic acid metabolism.
机译:利用定点诱变技术构建了一种来自北京棒状杆菌的新型天冬氨酸激酶突变体M372I / T379W。然后对该酶进行纯化,表征,并全面分析其分子机理。与野生型AK相比,M372I / T379W AK的催化活性高16.51倍,最适温度从28°C升高到35°C。 M372I / T379W AK的热稳定性得到了显着改善。微量热分析表明,M372I / T379W AK不仅减弱了Lys的抑制作用,而且与Asp的结合力更强。分子动力学模拟表明,突变M372I和T379W可以通过影响Asp和ATP结合口袋残基的柔性以及CpAK和Asp之间的氢键来调节CpAK的活性。另外,突变可能影响蛋白质结构域的相对位置。 M372I / T379W AK的Asp结合口袋入口门Arg169–Ala60的宽度大于野生型AK,CpAK从T状态变为R状态,这促进了酶与Asp的结合并改善了该酶的催化效率。这些结果解释了M372I / T379W AK的分子机制,这将极大地促进更多天冬氨酸激酶突变体的合理设计,并在天冬氨酸代谢中具有潜在的应用。

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