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Site-directed mutations of the gatekeeping loop region affect the activity of escherichia coli spermidine synthase

机译:关守环区域的定点突变影响大肠杆菌亚精胺合酶的活性

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Spermidine synthase catalyzes the production of spermidine from putrescine and decarboxylated S-adenosylmethionine (dcSAM), and plays a crucial role in cell proliferation and differentiation. The gatekeeping loop identified in the structure of spermidine synthase was predicted to contain residues important for substrate binding, but its correlation with enzyme catalysis has not been fully understood. In this study, recombinant Escherichia coli spermidine synthase (EcSPDS) was produced and its enzyme kinetics was characterized. Site-directed mutants of EcSPDS were obtained to demonstrate the importance of the amino acid residues in the gatekeeping loop. Substitution of Asp158 and Asp161 with alanine completely abolished EcSPDS activity, suggesting that these residues are absolutely required for substrate interaction. Reduction in enzyme activity was observed in the C159A, T160A, and P165Q variants, indicating that hydrophobic interactions contributed by Cys159, Thr160, and Pro165 are important for enzyme catalysis as well. On the other hand, replacement of Pro162 and Ile163 had no influence on EcSDPS activity. These results indicate that residues in the gatekeeping loop of spermidine synthase are indispensable for the catalytic reaction of EcSPDS. To the best of our knowledge, this is the first functional study on the gatekeeping loop of EcSPDS by site-directed mutagenesis.
机译:亚精胺合酶催化由腐胺和脱羧S-腺苷甲硫氨酸(dcSAM)产生亚精胺,在细胞增殖和分化中起关键作用。据预测,在亚精胺合酶的结构中确定的守门环含有对底物结合很重要的残基,但尚未完全了解其与酶催化的相关性。在这项研究中,重组大肠杆菌亚精胺合酶(EcSPDS)的生产及其酶动力学进行了表征。 EcSPDS的定点突变体被获得,以证明守门环中氨基酸残基的重要性。用丙氨酸取代Asp158和Asp161完全消除了EcSPDS活性,这表明这些残基绝对是底物相互作用所必需的。在C159A,T160A和P165Q变体中观察到酶活性降低,表明Cys159,Thr160和Pro165促成的疏水相互作用对酶催化也很重要。另一方面,Pro162和Ile163的替换对EcSDPS活性没有影响。这些结果表明亚精合酶的守门环中的残基对于EcSPDS的催化反应是必不可少的。据我们所知,这是第一个通过定点诱变对EcSPDS的守门环进行功能研究。

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