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Recombination directionality factor gp3 binds phi C31 integrase via the zinc domain, potentially affecting the trajectory of the coiled-coil motif

机译:重组方向性因子GP3通过锌结构域结合PHI C31整合酶,可能影响卷绕式线圈基序的轨迹

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摘要

To establish a prophage state, the genomic DNA of temperate bacteriophages normally becomes integrated into the genome of their host bacterium by integrase-mediated, site-specific DNA recombination. Serine integrases catalyse a single crossover between an attachment site in the host (attB) and a phage attachment site (attP) on the circularized phage genome to generate the integrated prophage DNA flanked by recombinant attachment sites, attL and attR. Exiting the prophage state and entry into the lytic growth cycle requires an additional phage-encoded protein, the recombination directionality factor or RDF, to mediate recombination between attL and attR and excision of the phage genome. The RDF is known to bind integrase and switch its activity from integration (attP x attB) to excision (attL x attR) but its precise mechanism is unclear. Here, we identify amino acid residues in the RDF, gp3, encoded by the Streptomyces phage phi C31 and within the phi C31 integrase itself that affect the gp3:Int interaction. We show that residue substitutions in integrase that reduce gp3 binding adversely affect both excision and integration reactions. The mutant integrase phenotypes are consistent with a model in which the RDF binds to a hinge region at the base of the coiled-coil motif in phi C31 integrase.
机译:为了建立先兆状态,温带噬菌体的基因组DNA通常通过整合酶介导的位点特异性DNA重组整合到其宿主细菌的基因组中。丝氨酸积分酶催化宿主(attB)的附着部位和循环噬菌体基因组上的噬菌体附着部位(ATTP)之间的单个交叉,以产生由重组附着位点,ATT1和attr的综合性序列DNA。离开血管态并进入裂解生长周期需要额外的噬菌体编码蛋白质,重组方向因子或RDF,以介导attl和施塔和噬菌体基因组的切除之间的重组。已知RDF粘合整合酶并将其活动从集成(ATTP X ATTB)切换到切除(ATTL x attr),但其精确的机制尚不清楚。这里,我们鉴定由链霉菌噬菌体PHI C31编码的RDF,GP3中的氨基酸残基,并在PHI C31整合酶本身内影响GP3:int相互作用。我们展示了整合酶中的残留物取代,减少GP3结合对切除和整合反应产生不利影响。突变体整合酶表型与其中RDF与在PHI C31整合酶中螺旋线圈基序的底座的铰链区结合的模型一致。

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