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利用有丝分裂期和核定位信号进行高同源性定向修复。

High Homology-Directed Repair Using Mitosis Phase and Nucleus Localizing Signal.

机构信息

Graduate School of International Agricultural Technology, Seoul National University, 1447 Pyeongchang-Ro, Daewha, Pyeongchang, Kangwon 25354, Korea.

Department of Pharmacology, Yonsei University College of Medicine, 50 Yonsei-Ro, ‎Seodaemun-gu, Seoul 03722, Korea.

出版信息

Int J Mol Sci. 2020 May 26;21(11):3747. doi: 10.3390/ijms21113747.

Abstract

In homology-directed repair, mediated knock-in single-stranded oligodeoxynucleotides (ssODNs) can be used as a homologous template and present high efficiency, but there is still a need to improve efficiency. Previous studies have mainly focused on controlling double-stranded break size, ssODN stability, and the DNA repair cycle. Nevertheless, there is a lack of research on the correlation between the cell cycle and single-strand template repair (SSTR) efficiency. Here, we investigated the relationship between cell cycle and SSTR efficiency. We found higher SSTR efficiency during mitosis, especially in the metaphase and anaphase. A Cas9 protein with a nuclear localization signal (NLS) readily migrated to the nucleus; however, the nuclear envelope inhibited the nuclear import of many nucleotide templates. This seemed to result in non-homologous end joining (NHEJ) before the arrival of the homologous template. Thus, we assessed whether NLS-tagged ssODNs and free NLS peptides could circumvent problems posed by the nuclear envelope. NLS-tagging ssODNs enhanced SSTR and indel efficiency by 4-fold compared to the control. Our results suggest the following: (1) mitosis is the optimal phase for SSTR, (2) the donor template needs to be delivered to the nucleus before nuclease delivery, and (3) NLS-tagging ssODNs improve SSTR efficiency, especially high in mitosis.

摘要

在同源定向修复中,可以使用介导的敲入单链寡脱氧核苷酸 (ssODN) 作为同源模板,具有很高的效率,但仍需要提高效率。以前的研究主要集中在控制双链断裂大小、ssODN 稳定性和 DNA 修复周期上。然而,细胞周期与单链模板修复 (SSTR) 效率之间的相关性研究还很少。在这里,我们研究了细胞周期与 SSTR 效率之间的关系。我们发现有丝分裂过程中的 SSTR 效率更高,特别是在中期和后期。带有核定位信号 (NLS) 的 Cas9 蛋白很容易迁移到细胞核;然而,核膜抑制了许多核苷酸模板的核输入。这似乎导致同源模板到达之前发生非同源末端连接 (NHEJ)。因此,我们评估了 NLS 标记的 ssODN 和游离的 NLS 肽是否可以解决核膜带来的问题。NLS 标记的 ssODN 使 SSTR 和插入缺失效率比对照提高了 4 倍。我们的结果表明:(1)有丝分裂是 SSTR 的最佳阶段,(2)在核酸酶传递之前需要将供体模板递送到细胞核,(3)NLS 标记的 ssODN 提高了 SSTR 效率,特别是在有丝分裂时效率更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06f8/7312558/7aeb308f41d2/ijms-21-03747-g001.jpg

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