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粘性末端的高G/C含量使得DNA末端连接不依赖于Ku。

High G/C content of cohesive overhangs renders DNA end joining Ku-independent.

作者信息

Sandoval Ana, Labhart Paul

机构信息

Torrey Pines Institute for Molecular Studies, 3550 General Atomics Court, San Diego, CA 92121, USA.

出版信息

DNA Repair (Amst). 2004 Jan 5;3(1):13-21. doi: 10.1016/j.dnarep.2003.08.014.

Abstract

Ku plays an important role in the repair of double strand DNA breaks by non-homologous DNA end joining (NHEJ). Ku is thought to exert its function by aligning the two DNA ends. A previous study showed that the joining of certain cohesive DNA ends in cell-free in vitro reactions was independent of Ku [Mol. Cell. Biol. 19 (1999) 2585]. To investigate a possible correlation between Ku-dependence of DNA end joining reactions and the strength of base pair interactions between cohesive ends, we constructed a series of repair substrates with either 3'- or 5'-overhangs, which consisted entirely of either A/T or G/C residues. We found that after Ku-immunodepletion of the extract, the joining of cohesive ends that associate by the formation of four A:T base pairs was reduced, while the joining of ends that associate through four G:C base pairs was unaffected or slightly stimulated. The precision of the repair was not reduced in Ku-independent reactions. Our results indicate that the requirement for Ku is dependent on how stably the two cohesive DNA ends can associate by base-pairing. Two independent assays for protein-DNA interactions did not reveal any differences in Ku binding to substrates with A/T and G/C overhangs, suggesting that in this system Ku is recruited to the repair site regardless of whether it is functionally required or not. The finding that Ku is dispensable for efficient and precise joining of ends with cohesive G/C overhangs also suggests that alignment of DNA ends may be the sole function of Ku during NHEJ.

摘要

Ku在通过非同源DNA末端连接(NHEJ)修复双链DNA断裂过程中发挥着重要作用。Ku被认为是通过使两个DNA末端对齐来发挥其功能的。先前的一项研究表明,在无细胞体外反应中某些粘性DNA末端的连接与Ku无关[《分子细胞生物学》19 (1999) 2585]。为了研究DNA末端连接反应对Ku的依赖性与粘性末端之间碱基对相互作用强度之间可能存在的相关性,我们构建了一系列具有3'或5'突出端的修复底物,这些突出端完全由A/T或G/C残基组成。我们发现,在提取物经Ku免疫去除后,通过形成四个A:T碱基对而结合的粘性末端的连接减少了,而通过四个G:C碱基对结合的末端的连接未受影响或略有增强。在不依赖Ku的反应中,修复的精确性并未降低。我们的结果表明,对Ku的需求取决于两个粘性DNA末端通过碱基配对结合的稳定性。两种独立的蛋白质-DNA相互作用检测方法未发现Ku与具有A/T和G/C突出端的底物结合存在任何差异,这表明在该系统中,无论是否在功能上需要,Ku都会被招募到修复位点。对于具有粘性G/C突出端的末端,高效且精确的连接不需要Ku,这一发现还表明,在NHEJ过程中,DNA末端的对齐可能是Ku的唯一功能。

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