Maher Robyn L, Morrical Scott W
Department of Biochemistry, University of Vermont College of Medicine, Burlington, Vermont, United States of America.
PLoS One. 2013 Jun 18;8(6):e66654. doi: 10.1371/journal.pone.0066654. Print 2013.
Homologous recombination is important for the error-free repair of DNA double-strand breaks and for replication fork restart. Recombinases of the RecA/Rad51 family perform the central catalytic role in this process. UvsX recombinase is the RecA/Rad51 ortholog of bacteriophage T4. UvsX and other recombinases form presynaptic filaments on ssDNA that are activated to search for homology in dsDNA and to perform DNA strand exchange. To effectively initiate recombination, UvsX must find and bind to ssDNA within an excess of dsDNA. Here we examine the binding of UvsX to ssDNA and dsDNA in the presence and absence of nucleotide cofactor, ATP. We also examine how the binding of one DNA substrate is affected by simultaneous binding of the other to determine how UvsX might selectively assemble on ssDNA. We show that the two DNA binding sites of UvsX are regulated by the nucleotide cofactor ATP and are coordinated with each other such that in the presence of ssDNA, dsDNA binding is significantly reduced and correlated with its homology to the ssDNA bound to the enzyme. UvsX has high affinity for dsDNA in the absence of ssDNA, which may allow for sequestration of the enzyme in an inactive form prior to ssDNA generation.
同源重组对于DNA双链断裂的无差错修复以及复制叉重启至关重要。RecA/Rad51家族的重组酶在这一过程中发挥核心催化作用。UvsX重组酶是噬菌体T4的RecA/Rad51直系同源物。UvsX和其他重组酶在单链DNA上形成突触前细丝,这些细丝被激活以在双链DNA中寻找同源性并进行DNA链交换。为了有效启动重组,UvsX必须在过量的双链DNA中找到并结合到单链DNA上。在这里,我们研究了在存在和不存在核苷酸辅因子ATP的情况下,UvsX与单链DNA和双链DNA的结合情况。我们还研究了一种DNA底物的结合如何受到另一种底物同时结合的影响,以确定UvsX如何选择性地组装在单链DNA上。我们表明,UvsX的两个DNA结合位点受核苷酸辅因子ATP的调节,并且相互协调,使得在存在单链DNA的情况下,双链DNA的结合显著减少,并且与其与结合到酶上的单链DNA的同源性相关。在不存在单链DNA的情况下,UvsX对双链DNA具有高亲和力,这可能允许在单链DNA产生之前将该酶以无活性形式隔离。