Expression of RecA and cell-penetrating peptide (CPP) fusion protein in bacteria and in mammalian cells.

International journal of biochemistry and molecular biology Pub Date : 2018-02-08 eCollection Date: 2018-01-01
Xiubao Chang, Yuexian Hou
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引用次数: 0

Abstract

Genome editing is a powerful tool to modify a specific gene and to correct a disease-causing mutation. Recently developed new techniques, such as zinc-finger nucleases (ZFNs), transcription activator-like effector nucleases (TALEN) and clustered regularly interspaced short palindromic repeats/Cas9 (CRISPR/Cas9), significantly facilitate the progression in this field. However, mutations associated with the double strand DNA breaks (DSBs) introduced by these systems hampered their direct usage in clinic. In order to prevent the mutations caused by DSBs, we have designed a novel mean to induce homology-directed recombination (HDR) without DSBs, i.e., the fusion protein of RecA with cell-penetrating peptide (CPP). The involvement of RecA in these fusion proteins will play important roles in formation of the nucleoprotein filament with single strand DNA (ssDNA) in vitro and promoting HDR in vivo; whereas the involvement of CPP in these fusion proteins will mainly play a role in facilitating cellular intake/uptake of the nucleoprotein filaments. Our results indicated that certain amount of the fusion proteins expressed in bacteria is in soluble fraction, whereas majority of the fusion proteins expressed in baby hamster kidney (BHK) cells is in soluble fraction. Interestingly, expression of these fusion proteins in bacteria completely blocked cell growth, whereas expression of them in BHK cells significantly inhibited cell growth, implying that these fusion proteins may bind to ssDNA regions, such as ssDNA regions in DNA replication forks, and inhibit cell growth. These results suggest that we have functional RecA.CPP fusion proteins ready to test our novel idea of inducing HDR without DSB.

Abstract Image

Abstract Image

细菌和哺乳动物细胞中RecA和细胞穿透肽(CPP)融合蛋白的表达。
基因组编辑是修改特定基因和纠正致病突变的强大工具。最近开发的新技术,如锌指核酸酶(ZFNs)、转录激活因子样效应核酸酶(TALEN)和聚集规律间隔短回语重复/Cas9 (CRISPR/Cas9),极大地促进了这一领域的进展。然而,这些系统引入的与双链DNA断裂(DSBs)相关的突变阻碍了它们在临床中的直接应用。为了防止DSBs引起的突变,我们设计了一种新的方法来诱导无DSBs的同源定向重组(HDR),即RecA与细胞穿透肽(CPP)的融合蛋白。RecA参与这些融合蛋白在体外与单链DNA (ssDNA)形成核蛋白丝和促进体内HDR中发挥重要作用;而CPP在这些融合蛋白中的参与将主要在促进核蛋白细丝的细胞摄取中发挥作用。结果表明,在细菌中表达的融合蛋白有一定的可溶性部分,而在幼鼠肾(BHK)细胞中表达的融合蛋白大部分为可溶性部分。有趣的是,这些融合蛋白在细菌中表达完全阻断细胞生长,而在BHK细胞中表达则显著抑制细胞生长,这意味着这些融合蛋白可能与DNA复制叉中的ssDNA区域结合,抑制细胞生长。这些结果表明,我们已经有了功能性的RecA.CPP融合蛋白,可以测试我们在没有DSB的情况下诱导HDR的新想法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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