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在双链DNA上以纳米分辨率定向组装3纳米长的RecA核蛋白细丝。

Directed assembly of 3-nm-long RecA nucleoprotein filaments on double-stranded DNA with nanometer resolution.

作者信息

Sharma Rajan, Davies A Giles, Wälti Christoph

机构信息

School of Electronic and Electrical Engineering, University of Leeds , Leeds LS2 9JT, U.K.

出版信息

ACS Nano. 2014 Apr 22;8(4):3322-30. doi: 10.1021/nn405281s. Epub 2014 Mar 7.

Abstract

Protein-mediated self-assembly is arguably one of the most promising routes for building complex molecular nanostructures. Here, we report a molecular self-assembly technique that allows programmable, site-specific patterning of double-stranded DNA scaffolds, at a single-base resolution, by 3-nm-long RecA-based nucleoprotein filaments. RecA proteins bind to single-stranded DNA to form nucleoprotein filaments. These can self-assemble onto a double-stranded DNA scaffold at a region homologous to the nucleoprotein's single-stranded DNA sequence. We demonstrate that nucleoprotein filaments can be formed from single-stranded DNA molecules ranging in length from 60 nucleotides down to just 6 nucleotides, and these can be assembled site-specifically onto a model DNA scaffold both at the end of the scaffold and away from the end. In both cases, successful site-specific self-assembly is demonstrated even for the smallest nucleoprotein filaments, which are just 3 nm long, comprise only two monomers of RecA, and cover less than one helical turn of the double-stranded DNA scaffold. Finally, we demonstrate that the RecA-mediated assembly process is highly site-specific and that the filaments indeed bind only to the homologous region of the DNA scaffold, leaving the neighboring scaffold exposed.

摘要

蛋白质介导的自组装可以说是构建复杂分子纳米结构最有前景的途径之一。在此,我们报告了一种分子自组装技术,该技术可通过3纳米长的基于RecA的核蛋白丝,以单碱基分辨率对双链DNA支架进行可编程的、位点特异性的图案化。RecA蛋白与单链DNA结合形成核蛋白丝。这些核蛋白丝可以在与核蛋白单链DNA序列同源的区域自组装到双链DNA支架上。我们证明,核蛋白丝可以由长度从60个核苷酸到仅6个核苷酸的单链DNA分子形成,并且这些核蛋白丝可以在位点特异性地组装到模型DNA支架上,既可以在支架末端,也可以在远离末端的位置。在这两种情况下,即使是仅3纳米长、仅包含两个RecA单体且覆盖双链DNA支架不到一圈螺旋的最小核蛋白丝,也证明了成功的位点特异性自组装。最后,我们证明RecA介导的组装过程具有高度的位点特异性,并且这些丝确实仅与DNA支架的同源区域结合,使相邻的支架暴露在外。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2954/4004295/748f7739972f/nn-2013-05281s_0001.jpg

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