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Alleviation of restriction by DNA condensation and non-specific DNA binding ligands

机译:减轻DNA缩合和非特异性DNA结合配体的限制

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During conditions of cell stress, the type I restriction and modification enzymes of bacteria show reduced, but not zero, levels of restriction of unmethylated foreign DNA. In such conditions, chemically identical unmethylated recognition sequences also occur on the chromosome of the host but restriction alleviation prevents the enzymes from destroying the host DNA. How is this distinction between chemically identical DNA molecules achieved? For some, but not all, type I restriction enzymes, alleviation is partially due to proteolytic degradation of a subunit of the enzyme. We identify that the additional alleviation factor is attributable to the structural difference between foreign DNA entering the cell as a random coil and host DNA, which exists in a condensed nucleoid structure coated with many non-specific ligands. The type I restriction enzyme is able to destroy the 'naked' DNA using a complex reaction linked to DNA translocation, but this essential translocation process is inhibited by DNA condensation and the presence of non-specific ligands bound along the DNA.
机译:在细胞应激条件下,细菌的I型限制酶和修饰酶显示出未甲基化外源DNA的限制水平降低,但不为零。在这样的条件下,化学相同的未甲基化的识别序列也出现在宿主的染色体上,但是限制性的减轻阻止了酶破坏宿主DNA。如何实现化学上相同的DNA分子之间的区别?对于某些但不是全部的I型限制酶,缓解的部分原因是该酶亚基的蛋白水解降解。我们确定,额外的缓解因素归因于外来DNA作为随机线圈进入细胞与宿主DNA之间的结构差异,该差异存在于涂有许多非特异性配体的浓缩核苷结构中。 I型限制酶能够通过与DNA易位相关的复杂反应破坏“裸露”的DNA,但是这种必不可少的易位过程受到DNA缩合和沿DNA结合的非特异性配体的存在的抑制。

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