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小型定制醛缩酶的开发:催化活性、折叠及底物特异性

Development of small designer aldolase enzymes: catalytic activity, folding, and substrate specificity.

作者信息

Tanaka Fujie, Fuller Roberta, Barbas Carlos F

机构信息

The Skaggs Institute for Chemical Biology and Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Biochemistry. 2005 May 24;44(20):7583-92. doi: 10.1021/bi050216j.

Abstract

Small (24-35 amino acid residues) peptides that catalyze carbon-carbon bond transformations including aldol, retro-aldol, and Michael reactions in aqueous buffer via an enamine mechanism have been developed. Peptide phage libraries were created by appending six randomized amino acid residues to the C-terminus or to the N-terminus of an 18-mer alpha-helix peptide containing lysine residues. Reaction-based selection with 1,3-diketones was performed to trap the amino groups of reactive lysine residues that were necessary for the catalysis via an enamine mechanism by formation of stable enaminones. The selected 24-mer peptides catalyzed the reactions with improved activities. The improved activities were correlated with improved folded states of the peptides. The catalyst was then improved with respect to substrate specificity by appending a phage display-derived substrate-binding module. The resulting 35-mer peptide functioned with a significant proportion of the catalytic proficiency of larger protein catalysts. These results indicate that small designer enzymes with good rate acceleration and excellent substrate specificity can be created by combination of design and reaction-based selection from libraries.

摘要

已开发出小肽(含24 - 35个氨基酸残基),其通过烯胺机制在水性缓冲液中催化碳 - 碳键转化,包括羟醛反应、逆羟醛反应和迈克尔反应。通过将六个随机氨基酸残基附加到含有赖氨酸残基的18聚体α - 螺旋肽的C末端或N末端,构建了肽噬菌体文库。进行基于1,3 - 二酮的反应筛选,以捕获通过烯胺机制催化反应所必需的活性赖氨酸残基的氨基,方法是形成稳定的烯胺酮。所选的24聚体肽催化反应的活性有所提高。活性的提高与肽折叠状态的改善相关。然后通过附加噬菌体展示衍生的底物结合模块,在底物特异性方面对催化剂进行改进。所得的35聚体肽具有与较大蛋白质催化剂相当比例的显著催化效能。这些结果表明,通过从文库中进行设计和基于反应的筛选相结合,可以创建具有良好速率加速和优异底物特异性的小型定制酶。

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