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探究假单胞菌属施氏亮氨酸氰化物降解酶 CynD 蛋白 C 端相互作用。

Probing C-terminal interactions of the Pseudomonas stutzeri cyanide-degrading CynD protein.

机构信息

Department of Biology, Texas A&M University, College Station, TX, 77843-3258, USA.

出版信息

Appl Microbiol Biotechnol. 2015 Apr;99(7):3093-102. doi: 10.1007/s00253-014-6335-x. Epub 2014 Dec 31.

DOI:10.1007/s00253-014-6335-x
PMID:25549622
Abstract

The cyanide dihydratases from Bacillus pumilus and Pseudomonas stutzeri share high amino acid sequence similarity throughout except for their highly divergent C-termini. However, deletion or exchange of the C-termini had different effects upon each enzyme. Here we extended previous studies and investigated how the C-terminus affects the activity and stability of three nitrilases, the cyanide dihydratases from B. pumilus (CynDpum) and P. stutzeri (CynDstut) and the cyanide hydratase from Neurospora crassa. Enzymes in which the C-terminal residues were deleted decreased in both activity and thermostability with increasing deletion lengths. However, CynDstut was more sensitive to such truncation than the other two enzymes. A domain of the P. stutzeri CynDstut C-terminus not found in the other enzymes, 306GERDST311, was shown to be necessary for functionality and explains the inactivity of the previously described CynDstut-pum hybrid. This suggests that the B. pumilus C-terminus, which lacks this motif, may have specific interactions elsewhere in the protein, preventing it from acting in trans on a heterologous CynD protein. We identify the dimerization interface A-surface region 195-206 (A2) from CynDpum as this interaction site. However, this A2 region did not rescue activity in C-terminally truncated CynDstutΔ302 or enhance the activity of full-length CynDstut and therefore does not act as a general stability motif.

摘要

来自短小芽孢杆菌和施氏假单胞菌的氰化物二水合酶除了高度分化的 C 末端外,整个氨基酸序列具有高度的相似性。然而,C 末端的缺失或交换对每种酶都有不同的影响。在这里,我们扩展了以前的研究,研究了 C 末端如何影响三种腈水解酶的活性和稳定性,这三种腈水解酶分别来自短小芽孢杆菌(CynDpum)和施氏假单胞菌(CynDstut)的氰化物二水合酶和粗糙脉孢菌的氰化物水解酶。C 末端残基缺失的酶的活性和热稳定性都随着缺失长度的增加而降低。然而,CynDstut 比其他两种酶对这种截断更为敏感。在其他酶中未发现的施氏假单胞菌 CynDstut C 末端的一个结构域,306GERDST311,对于功能是必需的,这解释了先前描述的 CynDstut-pum 杂种的无活性。这表明缺乏这种模体的短小芽孢杆菌 C 末端可能在蛋白质的其他位置具有特定的相互作用,从而阻止其在异种 CynD 蛋白上发生反式作用。我们确定来自 CynDpum 的二聚化界面 A 表面区域 195-206(A2)作为该相互作用位点。然而,这个 A2 区域并没有恢复在 C 末端截断的 CynDstutΔ302 中的活性,也没有增强全长 CynDstut 的活性,因此它不作为一般的稳定性模体。

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