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通过表面展示、流式细胞术和细胞分析来调节工程化基因靶向核酸酶的DNA结合亲和力和切割特异性。

Tuning DNA binding affinity and cleavage specificity of an engineered gene-targeting nuclease via surface display, flow cytometry and cellular analyses.

作者信息

Niyonzima Nixon, Lambert Abigail R, Werther Rachel, De Silva Feelixge Harshana, Roychoudhury Pavitra, Greninger Alexander L, Stone Daniel, Stoddard Barry L, Jerome Keith R

机构信息

Vaccine and Infectious Disease Division, Fred Hutchinson Cancer Research Center, 1100 Fairview Ave. N., Seattle, WA 98109, USA.

Basic Sciences Division, Fred Hutchinson Cancer Research Center, 1100 Fairview Ave. N., Seattle, WA 98109, USA.

出版信息

Protein Eng Des Sel. 2017 Jul 1;30(7):503-522. doi: 10.1093/protein/gzx037.

Abstract

The combination of yeast surface display and flow cytometric analyses and selections is being used with increasing frequency to alter specificity of macromolecular recognition, including both protein-protein and protein-nucleic acid interactions. Here we describe the use of yeast surface display and cleavage-dependent flow cytometric assays to increase the specificity of an engineered meganuclease. The re-engineered meganuclease displays a significantly tightened specificity profile, while binding its cognate target site with a slightly lower, but still sub-nanomolar affinity. When incorporated into otherwise identical megaTAL protein scaffolds, these two nucleases display significantly different activity and toxicity profiles in cellulo. The structural basis for reprogrammed DNA cleavage specificity was further examined via high-resolution X-ray crystal structures of both enzymes. This analysis illustrated the altered protein-DNA contacts produced by mutagenesis and selection, that resulted both in altered readout of those based and a necessary reduction in DNA binding affinity that were necessary to improve specificity across the target site. The results of this study provide an illustrative example of the potential (and the challenges) associated with the use of surface display and flow cytometry for the retargeting and optimization of enzymes that act on nucleic acid substrates in a sequence-specific manner.

摘要

酵母表面展示与流式细胞术分析及筛选相结合的方法正越来越频繁地用于改变大分子识别的特异性,包括蛋白质-蛋白质和蛋白质-核酸相互作用。在此,我们描述了利用酵母表面展示和依赖切割的流式细胞术检测来提高工程化巨核酸酶的特异性。重新设计的巨核酸酶显示出显著收紧的特异性谱,同时以略低但仍为亚纳摩尔的亲和力结合其同源靶位点。当整合到其他方面相同的巨型转录激活因子样效应物(megaTAL)蛋白支架中时,这两种核酸酶在细胞内表现出显著不同的活性和毒性谱。通过两种酶的高分辨率X射线晶体结构进一步研究了重新编程的DNA切割特异性的结构基础。该分析阐明了诱变和筛选产生的蛋白质-DNA接触的改变,这既导致了碱基读出的改变,也导致了DNA结合亲和力的必要降低,而这对于提高跨靶位点的特异性是必需的。本研究结果提供了一个说明性实例,展示了利用表面展示和流式细胞术对以序列特异性方式作用于核酸底物的酶进行重新靶向和优化所具有的潜力(以及挑战)。

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