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首页> 外文期刊>Molecular Microbiology >C-terminal interactions between the XerC and XerD site-specific recombinases.
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C-terminal interactions between the XerC and XerD site-specific recombinases.

机译:XerC和XerD位点特异性重组酶之间的C末端相互作用。

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Studies of the site-specific recombinase Cre suggest a key role for interactions between the C-terminus of the protein and a region located about 30 residues from the C-terminus in linking in a cyclical manner the four recombinase monomers present in a recombination complex, and in controlling the catalytic activity of each monomer. By extrapolating the Cre DNA recombinase structure to the related site-specific recombinases XerC and XerD, it is predicted that the extreme C-termini of XerC and XerD interact with alpha-helix M in XerD and the equivalent region of XerC respectively. Consequently, XerC and XerD recombinases deleted for C-terminal residues, and mutated XerD proteins containing single amino acid substitutions in alphaM or in the C-terminal residues were analysed. Deletion of C-terminal residues of XerD has no measurable effect on co-operative interactions with XerC in DNA-binding assays to the recombination site dif, whereas deletion of 5 or 10 residues of XerC reduces co-operativity with XerD some 20-fold. Co-operative interactions between pairs of truncated proteins during dif DNA binding are reduced 20- to 30-fold. All of the XerD mutants, except one, were catalytically proficient in vitro; nevertheless, many failed to mediate a recombination reaction on supercoiled plasmid in vivo or in vitro, implying that the ability to form a productive recombination complex and/or mediate a controlled recombination reaction is impaired.
机译:对位点特异性重组酶Cre的研究表明,蛋白质C末端与位于C末端约30个残基的区域之间的相互作用以循环方式连接重组复合物中存在的四种重组酶单体起着关键作用,以及控制每种单体的催化活性。通过将Cre DNA重组酶结构外推到相关的位点特异性重组酶XerC和XerD,可以预测XerC和XerD的极端C末端分别与XerD和XerC的等效区域中的α-螺旋M相互作用。因此,删除了Cer端残基的XerC和XerD重组酶,并分析了在alphaM或C端残基中包含单个氨基酸取代的突变XerD蛋白。 XerD的C末端残基的缺失在与重组位点dif的DNA结合测定中对与XerC的协同相互作用没有可测量的影响,而XerC的5或10个残基的缺失使与XerD的协同作用降低约20倍。 dif DNA结合过程中,截短的蛋白质对之间的合作相互作用降低了20到30倍。除一个外,所有XerD突变体在体外均具有催化能力。然而,许多未能在体内或体外介导对超螺旋质粒的重组反应,这暗示了形成高效重组复合物和/或介导受控重组反应的能力受到损害。

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