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PEGylated surfaces for the study of DNA-protein interactions by atomic force microscopy

机译:聚乙二醇为研究dna蛋白质表面通过原子力显微镜的交互

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摘要

DNA-protein interactions are vital to cellular function, with key roles in the regulation of gene expression and genome maintenance. Atomic force microscopy (AFM) offers the ability to visualize DNA-protein interactions at nanometre resolution in near-physiological buffers, but it requires that the DNA be adhered to the surface of a solid substrate. This presents a problem when working in biologically relevant protein concentrations, where proteins may be present in large excess in solution; much of the biophysically relevant information can therefore be occluded by non-specific protein binding to the underlying substrate. Here we explore the use of PLLx-b-PEG(y) block copolymers to achieve selective adsorption of DNA on a mica surface for AFM studies. Through varying both the number of lysine and ethylene glycol residues in the block copolymers, we show selective adsorption of DNA on mica that is functionalized with a PLL10-b-PEG(113)/PLL1000-2000 mixture as viewed by AFM imaging in a solution containing high concentrations of streptavidin. We show - through the use of biotinylated DNA and streptavidin - that this selective adsorption extends to DNA-protein complexes and that DNA-bound streptavidin can be unambiguously distinguished in spite of an excess of unbound streptavidin in solution. Finally, we apply this to the nuclear enzyme PARP1, resolving the binding of individual PARP1 molecules to DNA by in-liquid AFM.
机译:对细胞dna蛋白质相互作用是至关重要的函数,与监管的关键角色基因表达和基因组维护。力显微镜(AFM)提供的能力可视化在纳米dna蛋白质相互作用near-physiological缓冲区的决议,但它要求坚持DNA表面固体基质。当工作在生物学上相关的蛋白质的浓度,蛋白质可能出现的地方大过剩解决方案;因此生物物理相关的信息由非特异性蛋白质绑定阻挡底层的衬底。PLLx-b-PEG (y)的嵌段共聚物DNA在云母表面的选择性吸附AFM研究。赖氨酸和乙二醇残留块共聚物,我们展示选择性吸附的DNA云母是携带PLL10-b-PEG (113) / pll1000 - 2000混合通过AFM成像解决方案包含高链霉亲和素的浓度。的使用和链霉亲和素-生物素化的DNA这种选择性吸附延伸到dna蛋白质复合物,DNA-bound链霉亲和素可以明确区分尽管过多的游离链霉亲和素解决方案。酶PARP1,解决个人的约束力通过在液体AFM PARP1 DNA分子。

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