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Structure of Cre recombinase complexed with DNA in a site-specific recombination synapse

机译:在位点特异性重组突触中与DNA复合的Cre重组酶的结构

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During site-specific DNA recombination, which brings about genetic rearrangement in processes such as viral integration and excision and chromosomal segregation, recombinase enzymes recognize specific DNA sequences and catalyse the reciprocal exchange of DNA strands between these sites. The bacteriophage recombinase Cre catalyses site-specific recombination between two 34-base-pair loxP sites. The crystal structure at 2.4 A resolution of Cre bound to a loxP substrate reveals an intermediate in the recombination reaction, in which a Cre molecule has cleaved the substrate to form a covalent 3'-phosphotyrosine linkage with the DNA. Four recombinases and two loxP sites form a synapsed structure in which the DNA resembles models of four-way Holliday-Junction intermediates. The Cre-loxP complex challenges models of site-specific recombination that require large changes in quaternary structure. Subtle allosteric changes at the carboxy termini of the Cre subunits may instead coordinate the cleavage and strand-exchange reactions.
机译:在特定位点的DNA重组过程中,在诸如病毒整合,切除和染色体分离等过程中引起基因重排,重组酶会识别特定的DNA序列并催化这些位点之间的DNA链相互交换。噬菌体重组酶Cre催化两个34个碱基对的loxP位点之间的位点特异性重组。与loxP底物结合的Cre的2.4 A分辨率的晶体结构揭示了重组反应的中间体,其中Cre分子已裂解底物,与DNA形成共价3'-磷酸酪氨酸键。四个重组酶和两个loxP位点形成一个突触结构,其中的DNA类似于四路霍利迪-结连接中间体的模型。 Cre-loxP复合物挑战特定位置重组的模型,该模型需要对四级结构进行大的更改。 Cre亚基的羧基末端的细微变构变化可能会替代裂解和链交换反应。

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