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一种DNA结合蛋白在染色质上的易化扩散。

Facilitated diffusion of a DNA binding protein on chromatin.

作者信息

Hannon R, Richards E G, Gould H J

出版信息

EMBO J. 1986 Dec 1;5(12):3313-9. doi: 10.1002/j.1460-2075.1986.tb04645.x.

Abstract

Facilitated diffusion accounts for the rapid rate of association of many bacterial DNA binding proteins with specific DNA sequences in vitro. In this mechanism the proteins bind at random to non-specific sites on the DAN and diffuse (by 'sliding' or 'hopping') along the DNA chain until they arrive at their specific functional sites. We have investigated whether such a mechanism can operate in chromatin by using a bacterial DNA binding protein, Escherichia coli RNA polymerase, that depends on linear diffusion to locate initiation sites on DNA. We have measured the competition between chromatin and its free DNA for the formation of initiation complexes. Only the short linker segments exposed by the removal of histone H1 are available for interaction with the polymerase, but the sparsely distributed promoter sites on the linker DNA of such a polynucleosome chain are located at the same rate as those on DNA. We conclude that the polymerase is free to migrate between the separate linker DNA segments of a polynucleosome chain to reach a promoter site. This chain thus permits the 'hopping' of proteins between neighboring linker segments in their search for a target site on the accessible DNA.

摘要

易化扩散解释了许多细菌DNA结合蛋白在体外与特定DNA序列快速结合的速率。在这种机制中,蛋白质随机结合到DNA上的非特异性位点,并沿着DNA链扩散(通过“滑动”或“跳跃”),直到到达其特定的功能位点。我们通过使用一种依赖线性扩散来定位DNA上起始位点的细菌DNA结合蛋白——大肠杆菌RNA聚合酶,研究了这种机制是否能在染色质中起作用。我们测量了染色质及其游离DNA在形成起始复合物方面的竞争情况。只有通过去除组蛋白H1而暴露的短连接片段可用于与聚合酶相互作用,但在这样的多核小体链的连接DNA上稀疏分布的启动子位点与DNA上的启动子位点以相同的速率定位。我们得出结论,聚合酶可以在多核小体链的单独连接DNA片段之间自由迁移以到达启动子位点。因此,这条链允许蛋白质在相邻连接片段之间“跳跃”,以在可及的DNA上寻找靶位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2e9/1167328/d24f3a8b8491/emboj00175-0247-a.jpg

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