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Inaugural Article: Dissecting the roles of MuB in Mu transposition: ATP regulation of DNA binding is not essential for target delivery

机译:开篇文章:剖析MuB在Mu转座中的作用:ATP结合调控DNA结合对于靶标传递不是必需的

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摘要

Collaboration between MuA transposase and its activator protein, MuB, is essential for properly regulated transposition. MuB activates MuA catalytic activity, selects target DNA, and stimulates transposition into the selected target site. Selection of appropriate target DNA requires ATP hydrolysis by the MuB ATPase. By fusing MuB to a site-specific DNA-binding protein, the Arc repressor, we generated a MuB variant that could select target DNA independently of ATP. This Arc-MuB fusion protein allowed us to test whether ATP binding and hydrolysis by MuB are necessary for stimulation of transposition into selected DNA, a process termed target delivery. We find that with the fusion proteins, MuB-dependent target delivery occurs efficiently under conditions where ATP hydrolysis is prevented by mutation or use of ADP. In contrast, no delivery was detected in the absence of nucleotide. These data indicate that the ATP- and MuA-regulated DNA-binding activity of MuB is not essential for target delivery but that activation of MuA by MuB strictly requires nucleotide-bound MuB. Furthermore, we find that the fusion protein directs transposition to regions of the DNA within 40–750 bp of its own binding site. Taken together, these results suggest that target delivery by MuB occurs as a consequence of the ability of MuB to stimulate MuA while simultaneously tethering MuA to a selected target DNA. This tethered-activator model provides an attractive explanation for other examples of protein-stimulated control of target site selection.
机译:MuA转座酶与其激活蛋白MuB之间的协作对于正确调节转座至关重要。 MuB激活MuA的催化活性,选择目标DNA,并刺激转位进入选定的目标位点。选择合适的靶DNA需要通过MuB ATP酶水解ATP。通过将MuB与位点特异性DNA结合蛋白Arc Repressor融合,我们生成了MuB变体,可以独立于ATP选择目标DNA。这种Arc-MuB融合蛋白使我们能够测试ATP结合和MuB水解是否对刺激转位入选定的DNA(称为目标递送)的过程是必需的。我们发现,利用融合蛋白,在突变或使用ADP防止ATP水解的条件下,MuB依赖的靶有效地发生。相反,在不存在核苷酸的情况下未检测到递送。这些数据表明,MuB的ATP和MuA调节的DNA结合活性对于靶标传递不是必需的,但是MuB激活MuA严格要求与核苷酸结合的MuB。此外,我们发现融合蛋白将转座定向到其结合位点40-750 bp之内的DNA区域。综上所述,这些结果表明,由于MuB刺激MuA的能力同时将MuA束缚到选定的靶DNA上,因此MuB进行的靶标递送发生了。该束缚激活剂模型为蛋白质刺激的靶位点选择控制的其他示例提供了一个有吸引力的解释。

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