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首页> 外文期刊>Nucleic acids research >Active site residue identity regulates cleavage preference of LAGLIDADG homing endonucleases
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Active site residue identity regulates cleavage preference of LAGLIDADG homing endonucleases

机译:活性位点残基身份调节LAGLIDADG归巢核酸内切酶的切割偏好

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摘要

LAGLIDADG homing endonucleases (meganucleases) are site-specific mobile endonucleases that can be adapted for genome-editing applications. However, one problem when reprogramming meganucleases on non-native substrates is indirect readout of DNA shape and flexibility at the central 4 bases where cleavage occurs. To understand how the meganuclease active site regulates DNA cleavage, we used functional selections and deep sequencing to profile the fitness landscape of 1600 I-LtrI and I-OnuI active site variants individually challenged with 67 substrates with central 4 base substitutions. The wild-type active site was not optimal for cleavage on many substrates, including the native I-LtrI and I-OnuI targets. Novel combinations of active site residues not observed in known meganucleases supported activity on substrates poorly cleaved by the wild-type enzymes. Strikingly, combinations of E or D substitutions in the two metal-binding residues greatly influenced cleavage activity, and E184D variants had a broadened cleavage profile. Analyses of I-LtrI E184D and the wild-type proteins co-crystallized with the non-cognate AACC central 4 sequence revealed structural differences that correlated with kinetic constants for cleavage of individual DNA strands. Optimizing meganuclease active sites to enhance cleavage of non-native central 4 target sites is a straightforward addition to engineering workflows that will expand genome-editing applications.
机译:LAGLIDADG归巢内切核酸酶(大范围核酸酶)是可用于基因组编辑应用的位点特异性移动核酸内切酶。然而,在非天然底物上重新编程大范围核酸酶时的一个问题是在发生切割的中心4个碱基处间接读出DNA的形状和柔韧性。为了了解大范围核酸酶活性位点如何调控DNA切割,我们使用功能选择和深度测序来分析1600 I-LtrI和I-OnuI活性位点变异体的适应度,这些变异体分别被67个具有中心4个碱基取代的底物挑战。对于许多底物(包括天然I-LtrI和I-OnuI靶标)进行切割,野生型活性位点并非最佳。在已知的大范围核酸酶中未观察到的活性位点残基的新组合支持在野生型酶难以裂解的底物上的活性。引人注目的是,两个金属结合残基中E或D取代的组合极大地影响了切割活性,而E184D变体具有更宽的切割特性。对I-LtrI E184D和与非同源AACC中枢4序列共结晶的野生型蛋白质的分析显示,结构差异与切割单个DNA链的动力学常数相关。优化大范围核酸酶活性位点以增强对非天然中央4个靶位点的切割是对工程工作流程的直接补充,它将扩展基因组编辑应用程序。

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