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Archaeal Chromatin Proteins Cren7 and Sul7d Compact DNA by Bending and Bridging

机译:弯曲和桥接抗原染色质蛋白蛋白蛋白Cren7和Sul7d紧凑型DNA

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摘要

Archaeal chromatin proteins Cren7 and Sul7d from Sulfolobus are DNA benders. To better understand their architectural roles in chromosomal DNA organization, we analyzed DNA compaction by Cren7 and Sis7d, a Sul7d family member, from Sulfolobus islandicus at the single-molecule (SM) level by total single-molecule internal reflection fluorescence microscopy (SM-TIRFM) and atomic force microscopy (AFM). We show that both Cren7 and Sis7d were able to compact singly tethered λ DNA into a highly condensed structure in a three-step process and that Cren7 was over an order of magnitude more efficient than Sis7d in DNA compaction. The two proteins were similar in DNA bending kinetics but different in DNA condensation patterns. At saturating concentrations, Sis7d formed randomly distributed clusters whereas Cren7 generated a single and highly condensed core on plasmid DNA. This observation is consistent with the greater ability of Cren7 than of Sis7d to bridge DNA. Our results offer significant insights into the mechanism and kinetics of chromosomal DNA organization in Crenarchaea.
机译:来自苏比洛斯的古斑蛋白蛋白蛋白Cren7和Sul7d是DNA弯道。为了更好地了解他们在染色体DNA组织中的建筑作用,我们通过总单分子内反射荧光显微镜(SM-TiRFM)分析了CREN7和SIS7D的DNA压实Sul7d家族成员。 )和原子力显微镜(AFM)。我们表明,在三步过程中,CREN7和SIS7D都能够将单独系列的λDNA紧密浓缩成高度浓缩的结构,并且CREN7比DNA压实中的SIS7D更有效地超过幅度。两种蛋白质在DNA弯曲动力学中类似但在DNA缩合图案中不同。在饱和浓度下,SIS7D形成随机分布的簇,而CREN7在质粒DNA上产生单个和高浓缩的核心。这种观察结果与CREN7的能力符合比SIS7D桥接DNA的更大能力。我们的结果对克纳基菌染色体DNA组织的机制和动力学提供了重要的见解。

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