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在单链DNA结合蛋白存在的情况下,RecA-ssDNA细丝会发生超螺旋化。

RecA-ssDNA filaments supercoil in the presence of single-stranded DNA-binding protein.

作者信息

Shi Wei-Xian, Larson Ronald G

机构信息

Department of Chemical Engineering, University of Michigan, 3074 H.H. Dow, 2300 Hayward Street, Ann Arbor, MI 48109-2136, USA.

出版信息

Biochem Biophys Res Commun. 2007 Jun 8;357(3):755-60. doi: 10.1016/j.bbrc.2007.04.014. Epub 2007 Apr 12.

Abstract

Using atomic force microscopy (AFM), we find that RecA-single-stranded DNA (RecA-ssDNA) filaments, in the presence of single-stranded DNA-binding (SSB) protein, organize into left-handed bundles, which differ from the previously reported disordered aggregates formed when SSB is excluded from the reaction. In addition, we see both left- and right-handedness on bundles of two filaments. These two-filament supercoils, individual filaments, and other smaller bundles further organize into more complicated bundles, showing overall left-handedness which cannot be explained by earlier arguments that presumed supercoiling is absent in RecA-ssDNA filaments. This novel finding and our previous results regarding supercoiling of RecA-double-stranded DNA (RecA-dsDNA) filaments are, however, consistent with each other and can possibly be explained by the intrinsic tendency of RecA-DNA filaments, in their fully coated form, to order themselves into helical bundles, independent of the DNA inside the filaments (ssDNA or dsDNA). RecA-RecA interactions may dominate the bundling process, while the original conformation of DNA inside filaments and other factors (mechanical properties of filaments, concentration of filaments, and Mg(2+) concentration) could contribute to the variation in the appearance and pitch of supercoils. The tendency of RecA-DNA filaments to form ordered supercoils and their presence during strand exchange suggest a possible biological importance of supercoiled filaments.

摘要

使用原子力显微镜(AFM),我们发现,在单链DNA结合(SSB)蛋白存在的情况下,RecA-单链DNA(RecA-ssDNA)细丝会组织成左手束,这与之前报道的在反应中排除SSB时形成的无序聚集体不同。此外,我们在双细丝束上观察到了左手性和右手性。这些双细丝超螺旋、单细丝以及其他较小的束进一步组织成更复杂的束,呈现出整体左手性,这无法用早期认为RecA-ssDNA细丝中不存在超螺旋的观点来解释。然而, 这一新颖的发现与我们之前关于RecA-双链DNA(RecA-dsDNA)细丝超螺旋的结果是一致的,并且可能可以用RecA-DNA细丝在其完全包覆形式下将自身排列成螺旋束的内在倾向来解释,而与细丝内部的DNA(ssDNA或dsDNA)无关。RecA-RecA相互作用可能在成束过程中起主导作用,而细丝内部DNA的原始构象以及其他因素(细丝的机械性能、细丝浓度和Mg(2+)浓度)可能会导致超螺旋外观和螺距的变化。RecA-DNA细丝形成有序超螺旋的倾向及其在链交换过程中的存在表明超螺旋细丝可能具有生物学重要性。

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