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首页> 外文期刊>Molecular cell >Mechanical constraints on Hin subunit rotation imposed by the Fis/enhancer system and DNA supercoiling during site-specific recombination.
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Mechanical constraints on Hin subunit rotation imposed by the Fis/enhancer system and DNA supercoiling during site-specific recombination.

机译:Fis /增强子系统对Hin亚基旋转的机械约束以及位点特异性重组过程中的DNA超螺旋。

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摘要

Hin, a member of the serine family of site-specific recombinases, regulates gene expression by inverting a DNA segment. DNA inversion requires assembly of an invertasome complex in which a recombinational enhancer DNA segment bound by the Fis protein associates with the Hin synaptic complex at the base of a supercoiled DNA branch. Each of the four Hin subunits becomes covalently joined to the cleaved DNA ends, and DNA exchange occurs by translocation of a Hin subunit pair within the tetramer. We show here that, although the Hin tetramer forms a bidirectional molecular swivel, the Fis/enhancer system determines both the direction and number of subunit rotations. The chirality of supercoiling directs rotational direction, and the short DNA loop stabilized by Fis-Hin contacts limit rotational processivity, thereby ensuring that the DNA strands religate in the recombinant configuration. We identify multiple rotational conformers that are formed under different supercoiling and solution conditions.
机译:Hin是位点特异性重组酶丝氨酸家族的成员,它通过反转DNA片段来调节基因表达。 DNA转化需要组装一个invertasome复合体,其中由Fis蛋白结合的重组增强子DNA片段与超螺旋DNA分支底部的Hin突触复合物缔合。四个Hin亚基中的每一个都与被切割的DNA末端共价连接,并且DNA交换是通过在四聚体中移位一个Hin亚基对而发生的。我们在这里显示,尽管Hin四聚体形成双向分子旋转,但Fis /增强子系统决定了亚基旋转的方向和数目。超螺旋的手性指导旋转方向,而由Fis-Hin接触稳定的短DNA环限制了旋转过程,从而确保了DNA链以重组构型连接。我们确定了在不同超螺旋和固溶条件下形成的多个旋转构象异构体。

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