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Efficient supercoiling of DNA by a single condensin complex as revealed by electron spectroscopic imaging.

机译:如电子光谱成像所揭示的,单个凝缩蛋白复合物对DNA的超高效卷曲。

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Condensin, a five-subunit protein complex essential for mitotic chromosome condensation from yeast to humans, introduces positive supercoils into DNA in an ATP-dependent manner in vitro. We report here the direct visualization of this supercoiling reaction by electron spectroscopic imaging. In the presence of ATP, a single condensin complex is capable of introducing two or more compensatory supercoils into the protein-free region of a closed circular DNA. Within the condensin-bound region, approximately 190 bp of DNA is organized into a compact structure with two distinct domains, indicative of the formation of two oriented gyres. The current results suggest that the action of condensin is more dynamic and more efficient than that postulated before, providing fundamental insight into the energy-dependent mechanism of higher order chromatin folding.
机译:Condensin是从酵母到人的有丝分裂染色体浓缩中不可或缺的五亚基蛋白质复合物,在体外以ATP依赖性方式将阳性超螺旋引入DNA中。我们在这里报告通过电子光谱成像这种超螺旋反应的直接可视化。在ATP存在下,单个凝缩蛋白复合物能够将两个或多个补偿性超螺旋引入封闭的环状DNA的无蛋白区域。在与凝集素结合的区域内,大约190 bp的DNA被组织成具有两个不同结构域的紧凑结构,表明形成了两个定向的回旋体。目前的结果表明,凝缩蛋白的作用比以前假定的更动态,更有效,为深入了解高阶染色质折叠的能量依赖性机理提供了基础知识。

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