Program in Molecular and Cellular Biology, University of Washington, Box 357275, Seattle, WA 98195, USA.
Nucleic Acids Res. 2012 Jun;40(11):4954-64. doi: 10.1093/nar/gkr1303. Epub 2012 Feb 14.
LAGLIDADG homing endonucleases (LHEs) are a family of highly specific DNA endonucleases capable of recognizing target sequences ≈ 20 bp in length, thus drawing intense interest for their potential academic, biotechnological and clinical applications. Methods for rational design of LHEs to cleave desired target sites are presently limited by a small number of high-quality native LHEs to serve as scaffolds for protein engineering-many are unsatisfactory for gene targeting applications. One strategy to address such limitations is to identify close homologs of existing LHEs possessing superior biophysical or catalytic properties. To test this concept, we searched public sequence databases to identify putative LHE open reading frames homologous to the LHE I-AniI and used a DNA binding and cleavage assay using yeast surface display to rapidly survey a subset of the predicted proteins. These proteins exhibited a range of capacities for surface expression and also displayed locally altered binding and cleavage specificities with a range of in vivo cleavage activities. Of these enzymes, I-HjeMI demonstrated the greatest activity in vivo and was readily crystallizable, allowing a comparative structural analysis. Taken together, our results suggest that even highly homologous LHEs offer a readily accessible resource of related scaffolds that display diverse biochemical properties for biotechnological applications.
LAGLIDADG 归巢内切核酸酶(LHEs)是一类具有高度特异性的 DNA 内切核酸酶,能够识别长度约为 20 个碱基的靶序列,因此引起了人们对其潜在的学术、生物技术和临床应用的浓厚兴趣。目前,用于合理设计切割所需靶位点的 LHE 的方法受到可用作蛋白质工程支架的高质量天然 LHE 数量有限的限制——许多 LHE 不适合基因靶向应用。解决这些限制的一种策略是识别具有优越物理或催化特性的现有 LHE 的紧密同源物。为了检验这一概念,我们搜索了公共序列数据库,以鉴定与 LHE I-AniI 同源的推定 LHE 开放阅读框,并使用酵母表面展示的 DNA 结合和切割测定法快速筛选预测蛋白质的一部分。这些蛋白质表现出一系列的表面表达能力,并且还表现出与体内切割活性范围相匹配的局部改变的结合和切割特异性。在这些酶中,I-HjeMI 表现出最强的体内活性,并且易于结晶,允许进行比较结构分析。总之,我们的结果表明,即使是高度同源的 LHE 也提供了广泛的相关支架资源,这些支架具有多种生物技术应用所需的不同生化特性。