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含有肽基脯氨酸键的环的主链构象和运动灵活性受限,这主导了葡萄球菌核酸酶的酶活性。

Restricted backbone conformational and motional flexibilities of loops containing peptidyl-proline bonds dominate the enzyme activity of staphylococcal nuclease.

作者信息

Shan Lu, Tong Yufeng, Xie Tao, Wang Min, Wang Jinfeng

机构信息

National Laboratory of Biomacromolecules, Center for Molecular Biology, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Beijing 100101, China.

出版信息

Biochemistry. 2007 Oct 16;46(41):11504-13. doi: 10.1021/bi7009794. Epub 2007 Sep 22.

Abstract

The role of cis-trans isomerizations of peptidyl-proline bonds in the enzyme activity of staphylococcal nuclease (SNase) was examined by mutation of proline residues. The proline-free SNase ([Pro-]SNase), namely, P11A/P31A/P42A/P47T/P56A/P117G-mutant SNase, was adopted for elucidating the correlation between the nuclease activity and the backbone conformational and dynamic states of SNase. The 3D solution structure of [Pro-]SNase has been determined by heteronuclear NMR experiments. Comparing the structure of [Pro-]SNase with the structure of SNase revealed the conformational differences between the two proteins. In the structure of [Pro-]SNase, conformational rearrangements were observed for the loop of residues Ala112-His121 containing a trans Lys116-Gly117 peptide bond and for the C-terminal alpha-helical loop of residues Leu137-Glu142. Mutation of proline at position 117 also caused the conformational rearrangement of the p-loop (Asp77-Leu89), which is remote from the Ala112-His121 loop. The Ala112-His121 loop and p-loop are placed closer to each other in [Pro-]SNase than in SNase. The backbone dynamic features of the omega-loop (Pro42-Pro56) of SNase are different from those of [Pro-]SNase. The backbone of the omega-loop exhibits restricted flexibility with slow conformational exchange motions in SNase, but is highly flexible in [Pro-]SNase. The analysis indicates that the restrained backbone conformation of the Ala112-His121 loop and restricted flexibility of the omega-loop are two dominant factors determining the enzyme activity of SNase. Of the two factors, the former is correlated with the strained cis Lys116-Pro117 peptide bond and the latter is correlated with the cis-trans isomerizations of the His46-Pro47 peptide bond.

摘要

通过脯氨酸残基突变研究了肽基 - 脯氨酸键的顺反异构化在葡萄球菌核酸酶(SNase)酶活性中的作用。采用无脯氨酸的SNase([Pro - ]SNase),即P11A/P31A/P42A/P47T/P56A/P117G - 突变体SNase,来阐明核酸酶活性与SNase主链构象和动态状态之间的相关性。[Pro - ]SNase的三维溶液结构已通过异核NMR实验确定。将[Pro - ]SNase的结构与SNase的结构进行比较,揭示了两种蛋白质之间的构象差异。在[Pro - ]SNase的结构中,观察到包含反式Lys116 - Gly117肽键的Ala112 - His121残基环以及Leu137 - Glu142残基的C末端α - 螺旋环发生了构象重排。117位脯氨酸的突变也导致了远离Ala112 - His121环的p环(Asp77 - Leu89)的构象重排。在[Pro - ]SNase中,Ala112 - His121环和p环比在SNase中彼此更靠近。SNase的ω环(Pro42 - Pro56)的主链动态特征与[Pro - ]SNase不同。在SNase中,ω环的主链表现出受限的灵活性,构象交换运动缓慢,但在[Pro - ]SNase中具有高度灵活性。分析表明,Ala112 - His121环的受限主链构象和ω环的受限灵活性是决定SNase酶活性的两个主要因素。在这两个因素中,前者与应变的顺式Lys116 - Pro117肽键相关,后者与His46 - Pro47肽键的顺反异构化相关。

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