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与部分双链连接体结合的大肠杆菌复制解旋酶单体的DNA结合方向和结构域构象:荧光标记酶的单分子研究

DNA-binding orientation and domain conformation of the E. coli rep helicase monomer bound to a partial duplex junction: single-molecule studies of fluorescently labeled enzymes.

作者信息

Rasnik Ivan, Myong Sua, Cheng Wei, Lohman Timothy M, Ha Taekjip

机构信息

Department of Physics, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

J Mol Biol. 2004 Feb 13;336(2):395-408. doi: 10.1016/j.jmb.2003.12.031.

Abstract

The SF1 DNA helicases are multi-domain proteins that can unwind duplex DNA in reactions that are coupled to ATP binding and hydrolysis. Crystal structures of two such helicases, Escherichia coli Rep and Bacillus stearothermophilus PcrA, show that the 2B sub-domain of these proteins can be found in dramatically different orientations (closed versus open) with respect to the remainder of the protein, suggesting that the 2B domain is highly flexible. By systematically using fluorescence resonance energy transfer at the single-molecule level, we have determined both the orientation of an E.coli Rep monomer bound to a 3'-single-stranded-double-stranded (ss/ds) DNA junction in solution, as well as the relative orientation of its 2B sub-domain. To accomplish this, we developed a highly efficient procedure for site-specific fluorescence labeling of Rep and a bio-friendly immobilization scheme, which preserves its activities. Both ensemble and single-molecule experiments were carried out, although the single-molecule experiments proved to be essential here in providing quantitative distance information that could not be obtained by steady-state ensemble measurements. Using distance-constrained triangulation procedures we demonstrate that in solution the 2B sub-domain of a Rep monomer is primarily in the "closed" conformation when bound to a 3'-ss/ds DNA, similar to the orientation observed in the complex of PcrA bound to a 3'-ss/ds DNA. Previous biochemical studies have shown that a Rep monomer bound to such a 3'-ss/ds DNA substrate is unable to unwind the DNA and that a Rep oligomer is required for helicase activity. Therefore, the closed form of Rep bound to a partial duplex DNA appears to be an inhibited form of the enzyme.

摘要

SF1 DNA解旋酶是多结构域蛋白,可在与ATP结合和水解偶联的反应中解开双链DNA。两种此类解旋酶(大肠杆菌Rep和嗜热脂肪芽孢杆菌PcrA)的晶体结构表明,这些蛋白的2B亚结构域相对于蛋白的其余部分可呈现出截然不同的方向(闭合与开放),这表明2B结构域具有高度灵活性。通过在单分子水平系统地运用荧光共振能量转移,我们确定了溶液中与3'-单链-双链(ss/ds)DNA连接点结合的大肠杆菌Rep单体的方向,以及其2B亚结构域的相对方向。为实现这一点,我们开发了一种用于Rep位点特异性荧光标记的高效程序和一种生物友好的固定方案,该方案可保留其活性。我们进行了整体实验和单分子实验,不过单分子实验在此处被证明对于提供稳态整体测量无法获得的定量距离信息至关重要。使用距离受限的三角测量程序,我们证明在溶液中,当Rep单体与3'-ss/ds DNA结合时,其2B亚结构域主要处于“闭合”构象,类似于在PcrA与3'-ss/ds DNA复合物中观察到的方向。先前的生化研究表明,与这种3'-ss/ds DNA底物结合的Rep单体无法解开DNA,并且解旋酶活性需要Rep寡聚体。因此,与部分双链DNA结合的Rep的闭合形式似乎是该酶的一种受抑制形式。

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