首页> 外文期刊>Nucleic acids research >Flap endonucleases pass 5′-flaps through a flexible arch using a disorder-thread-order mechanism to confer specificity for free 5′-ends
【24h】

Flap endonucleases pass 5′-flaps through a flexible arch using a disorder-thread-order mechanism to confer specificity for free 5′-ends

机译:皮瓣内切核酸酶使用无序线顺序机制使5'-襟翼通过柔性牙弓,从而赋予游离5'-末端特异性

获取原文
           

摘要

Flap endonucleases (FENs), essential for DNA replication and repair, recognize and remove RNA or DNA 5′-flaps. Related to FEN specificity for substrates with free 5′-ends, but controversial, is the role of the helical arch observed in varying conformations in substrate-free FEN structures. Conflicting models suggest either 5′-flaps thread through the arch, which when structured can only accommodate single-stranded (ss) DNA, or the arch acts as a clamp. Here we show that free 5′-termini are selected using a disorder-thread-order mechanism. Adding short duplexes to 5′-flaps or 3′-streptavidin does not markedly impair the FEN reaction. In contrast, reactions of 5′-streptavidin substrates are drastically slowed. However, when added to premixed FEN and 5′-biotinylated substrate, streptavidin is not inhibitory and complexes persist after challenge with unlabelled competitor substrate, regardless of flap length or the presence of a short duplex. Cross-linked flap duplexes that cannot thread through the structured arch react at modestly reduced rate, ruling out mechanisms involving resolution of secondary structure. Combined results explain how FEN avoids cutting template DNA between Okazaki fragments and link local FEN folding to catalysis and specificity: the arch is disordered when flaps are threaded to confer specificity for free 5′-ends, with subsequent ordering of the arch to catalyze hydrolysis.
机译:对DNA复制和修复必不可少的瓣内切核酸酶(FEN),识别并去除RNA或DNA 5'-瓣。与具有5'端游离基团的底物的FEN特异性有关,但有争议的是,在无底物FEN结构的各种构象中观察到的螺旋弓的作用。相互矛盾的模型表明,要么是5'-襟翼穿过牙弓,当结构化时只能容纳单链(ss)DNA,或者是牙弓充当了钳位。在这里,我们显示使用无序线程顺序机制选择了自由的5'-末端。在5'-襟翼或3'-链霉亲和素中添加短双链体不会明显损害FEN反应。相反,5'-链霉亲和素底物的反应大大减慢了。但是,当添加到预混合的FEN和5'-生物素化的底物中时,链霉亲和素不具有抑制作用,并且在用未标记的竞争物底物攻击后复合物仍然存在,无论襟翼长度或短双链体的存在如何。无法穿过结构化牙弓的交联瓣状双链体以适度降低的速率反应,排除了涉及二级结构拆分的机制。组合结果说明了FEN如何避免在冈崎片段之间切割模板DNA并将链接的FEN折叠与催化和特异性联系起来:当将襟翼穿线赋予游离5'-末端特异性时,弓就无序了,随后对弓进行排序以催化水解。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号