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Complex formation between p53 and replication protein A inhibits the sequence-specific DNA binding of p53 and is regulated by single-stranded DNA.

机译:p53和复制蛋白A之间的复合物形成抑制了p53的序列特异性DNA结合并受单链DNA调控。

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摘要

Human replication protein A (RP-A) (also known as human single-stranded DNA binding protein, or HSSB) is a multisubunit complex involved in both DNA replication and repair. Potentially important to both these functions, it is also capable of complex formation with the tumor suppressor protein p53. Here we show that although p53 is unable to prevent RP-A from associating with a range of single-stranded DNAs in solution, RP-A is able to strongly inhibit p53 from functioning as a sequence-specific DNA binding protein when the two proteins are complexed. This inhibition, in turn, can be regulated by the presence of various lengths of single-stranded DNAs, as RP-A, when bound to these single-stranded DNAs, is unable to interact with p53. Interestingly, the lengths of single-stranded DNA capable of relieving complex formation between the two proteins represent forms that might be introduced through repair and replicative events. Increasing p53 concentrations can also overcome the inhibition by steady-state levels of RP-A, potentially mimicking cellular points of balance. Finally, it has been shown previously that p53 can itself be stimulated for site-specific DNA binding when complexed through the C terminus with short single strands of DNA, and here we show that p53 stays bound to these short strands even after binding a physiologically relevant site. These results identify a potential dual role for single-stranded DNA in the regulation of DNA binding by p53 and give insights into the p53 response to DNA damage.
机译:人复制蛋白A(RP-A)(也称为人单链DNA结合蛋白或HSSB)是涉及DNA复制和修复的多亚基复合物。对于这两种功能潜在重要的是,它还能够与肿瘤抑制蛋白p53形成复合物。在这里我们表明,尽管p53不能阻止RP-A与溶液中的一系列单链DNA缔合,但是当这两种蛋白分别存在时,RP-A能够强烈抑制p53充当序列特异性DNA结合蛋白。复杂的。反过来,这种抑制作用可以通过各种长度的单链DNA的存在来调节,因为当RP-A与这些单链DNA结合时,它们就无法与p53相互作用。有趣的是,能够减轻两种蛋白质之间复杂形成的单链DNA的长度代表可能通过修复和复制事件引入的形式。 p53浓度的增加也可以克服稳态水平的RP-A所产生的抑制作用,从而可能模仿细胞的平衡点。最后,以前已经证明,当通过C末端与短的单链DNA复合时,p53本身就可以被刺激进行位点特异性DNA结合,并且在这里,我们显示p53即使结合了生理学上相关的分子,也仍然与这些短链结合现场。这些结果确定了单链DNA在通过p53调节DNA结合中的潜在双重作用,并深入了解了p53对DNA损伤的反应。

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