Patel Shona C, Bradley Luke H, Jinadasa Sayuri P, Hecht Michael H
Department of Chemical Engineering, Princeton University, Princeton, New Jersey 08544, USA.
Protein Sci. 2009 Jul;18(7):1388-400. doi: 10.1002/pro.147.
To probe the potential for enzymatic activity in unevolved amino acid sequence space, we created a combinatorial library of de novo 4-helix bundle proteins. This collection of novel proteins can be considered an "artificial superfamily" of helical bundles. The superfamily of 102-residue proteins was designed using binary patterning of polar and nonpolar residues, and expressed in Escherichia coli from a library of synthetic genes. Sequences from the library were screened for a range of biological functions including heme binding and peroxidase, esterase, and lipase activities. Proteins exhibiting these functions were purified and characterized biochemically. The majority of de novo proteins from this superfamily bound the heme cofactor, and a sizable fraction of the proteins showed activity significantly above background for at least one of the tested enzymatic activities. Moreover, several of the designed 4-helix bundles proteins showed activity in all of the assays, thereby demonstrating the functional promiscuity of unevolved proteins. These studies reveal that de novo proteins-which have neither been designed for function, nor subjected to evolutionary pressure (either in vivo or in vitro)-can provide rudimentary activities and serve as a "feedstock" for evolution.
为了探究未进化氨基酸序列空间中酶活性的潜力,我们创建了一个全新的4-螺旋束蛋白组合文库。这个新型蛋白集合可被视为螺旋束的“人工超家族”。利用极性和非极性残基的二元模式设计了102个残基的蛋白超家族,并通过合成基因文库在大肠杆菌中进行表达。从文库中筛选具有一系列生物学功能的序列,包括血红素结合以及过氧化物酶、酯酶和脂肪酶活性。对表现出这些功能的蛋白质进行纯化并进行生化表征。来自这个超家族的大多数全新蛋白都结合了血红素辅因子,并且相当一部分蛋白质在至少一种测试的酶活性中表现出显著高于背景的活性。此外,一些设计的4-螺旋束蛋白在所有测定中均表现出活性,从而证明了未进化蛋白的功能混杂性。这些研究表明,既未针对功能进行设计,也未受到进化压力(体内或体外)影响的全新蛋白能够提供基本活性,并可作为进化的“原料”。