首页> 外文期刊>Journal of Molecular Biology >Probing the domain structure and ligand-induced conformational changes by limited proteolysis of tyrocidine synthetase 1.
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Probing the domain structure and ligand-induced conformational changes by limited proteolysis of tyrocidine synthetase 1.

机译:通过有限的酪氨酸合成酶1的蛋白水解来探索域结构和配体诱导的构象变化。

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The boundaries of the structural domains in peptide synthetases and the conformational changes related to catalysis were investigated by limited proteolysis of tyrocidine synthetase 1 (TY1). Four regions sensitive to proteolysis were detected (cleavage site at Arg13, Arg424, Arg509 and Arg602) that, in addition to an N-terminal extension, accurately delineate the domain boundaries of the adenylate-forming domain, the aminoacyl carrier domain, and the epimerisation domain. Limited proteolysis of an active N-terminal truncated deletion mutant, His6DeltaTY1, generated two stable and structurally independent subunits, corresponding to the subdomains of the adenylation domain. The structural integrity of the carrier domain was substantiated by its resistance to proteolytic degradation. Evidence is provided that the C-terminal "spacer" region with epimerising and/or condensing activity folds into an autonomous domain stable against degradation by limited proteoly sis. In the presence of substrates, reduced susceptibility to proteolysis was observed in the linker region connecting the subdomains of the adenylation domain, and corresponding to a peptide stretch of low electron density in the X-ray structure of the homologous firefly luciferase. Sequence analysis has shown that the respective linker contains conserved residues, whereas the linker regions connecting the structural domains are of low homology with a significant content of Pro, Ala, Glu and polar residues. A combination of kinetic and proteolytic studies using ATP analogues with substitutions in the phosphate chain, AMP-PcP, AMP-PNP and AMP-cPP, strongly suggests that the generation of a productive complex is associated with the ability of the beta, gamma-pyrophosphate moiety of ATP to adopt the proper active-site conformation. These data substantiate the observation that peptide synthetases undergo a series of conformational changes in the process of adenylate formation and product release. Copyright 1999 Academic Press.
机译:通过酪氨酸合成酶1(TY1)的有限蛋白水解研究了肽合成酶中结构域的边界以及与催化相关的构象变化。检测到对蛋白水解敏感的四个区域(Arg13,Arg424,Arg509和Arg602的切割位点),除了N端延伸外,还精确地描绘了形成腺苷酸的结构域,氨基酰基载体结构域和差向异构体的结构域边界域。活性N端截短的缺失突变体His6DeltaTY1的有限蛋白水解产生了两个稳定且结构独立的亚基,分别对应于腺苷酸化域的亚域。载体结构域的结构完整性通过其对蛋白水解降解的抗性得以证实。有证据表明,具有差向异构和/或缩合活性的C-末端“间隔区”折叠成一个稳定的自治域,该域对有限的蛋白水解作用不易降解。在存在底物的情况下,在连接腺苷酸化结构域的亚结构域的接头区域中观察到对蛋白水解的敏感性降低,这对应于同源萤火虫荧光素酶的X射线结构中低电子密度的肽段。序列分析表明,相应的接头含有保守的残基,而连接结构域的接头区域同源性低,具有大量的Pro,Ala,Glu和极性残基。使用磷酸酯链中具有取代基的ATP类似物AMP-PcP,AMP-PNP和AMP-cPP进行的动力学和蛋白水解研究相结合,强烈表明生产性复合物的产生与β-γ-焦磷酸盐的能力有关ATP部分以采用适当的活性位点构象。这些数据证实了肽合成酶在腺苷酸形成和产物释放过程中经历了一系列构象变化的观察。版权所有1999,学术出版社。

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