Department of Immunology, University of Washington, Seattle, WA 98195, USA.
Nucleic Acids Res. 2012 Sep;40(16):7985-8000. doi: 10.1093/nar/gks502. Epub 2012 Jun 7.
Although engineered LAGLIDADG homing endonucleases (LHEs) are finding increasing applications in biotechnology, their generation remains a challenging, industrial-scale process. As new single-chain LAGLIDADG nuclease scaffolds are identified, however, an alternative paradigm is emerging: identification of an LHE scaffold whose native cleavage site is a close match to a desired target sequence, followed by small-scale engineering to modestly refine recognition specificity. The application of this paradigm could be accelerated if methods were available for fusing N- and C-terminal domains from newly identified LHEs into chimeric enzymes with hybrid cleavage sites. Here we have analyzed the structural requirements for fusion of domains extracted from six single-chain I-OnuI family LHEs, spanning 40-70% amino acid identity. Our analyses demonstrate that both the LAGLIDADG helical interface residues and the linker peptide composition have important effects on the stability and activity of chimeric enzymes. Using a simple domain fusion method in which linker peptide residues predicted to contact their respective domains are retained, and in which limited variation is introduced into the LAGLIDADG helix and nearby interface residues, catalytically active enzymes were recoverable for ≈ 70% of domain chimeras. This method will be useful for creating large numbers of chimeric LHEs for genome engineering applications.
尽管经过工程改造的 LAGLIDADG 归巢内切核酸酶(LHEs)在生物技术中的应用越来越广泛,但它们的产生仍然是一个具有挑战性的、工业规模的过程。然而,随着新的单链 LAGLIDADG 核酸酶支架的出现,出现了另一种模式:鉴定出 LHE 支架,其天然切割位点与所需的靶序列非常匹配,然后进行小规模工程改造以适度提高识别特异性。如果有方法可将新鉴定的 LHE 中的 N 和 C 末端结构域融合到具有杂交切割位点的嵌合酶中,那么这种模式的应用可以加速。在这里,我们分析了将六个单链 I-OnuI 家族 LHE 中提取的结构域融合的结构要求,这些 LHE 的氨基酸同一性为 40-70%。我们的分析表明,LAGLIDADG 螺旋界面残基和连接肽组成都对嵌合酶的稳定性和活性有重要影响。使用一种简单的结构域融合方法,其中预测与各自结构域接触的连接肽残基被保留,并且在 LAGLIDADG 螺旋和附近界面残基中引入有限的变异,可恢复约 70%的结构域嵌合体的催化活性酶。该方法将有助于为基因组工程应用创建大量嵌合 LHE。