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首页> 外文期刊>Molecular and Cellular Biology >Functional analysis of box I mutations in yeast site-specific recombinases Flp and R: pairwise complementation with recombinase variants lacking the active-site tyrosine.
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Functional analysis of box I mutations in yeast site-specific recombinases Flp and R: pairwise complementation with recombinase variants lacking the active-site tyrosine.

机译:酵母位点特异性重组酶Flp和R中box I突变的功能分析:与缺乏活性位点酪氨酸的重组酶变体成对互补。

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The site-specific recombinases Flp and R from Saccharomyces cerevisiae and Zygosaccharomyces rouxii, respectively, are related proteins that belong to the yeast family of site-specific recombinases. They share approximately 30% amino acid matches and exhibit a common reaction mechanism that appears to be conserved within the larger integrase family of site-specific recombinases. Two regions of the proteins, designated box I and box II, also harbor a significantly high degree of homology at the nucleotide sequence level. We have analyzed the properties of Flp and R variants carrying point mutations within the box I segment in substrate-binding, DNA cleavage, and full-site and half-site strand transfer reactions. All mutations abolish or seriously diminish recombinase function either at the substrate-binding step or at the catalytic steps of strand cleavage or strand transfer. Of particular interest are mutations of Arg-191 of Flp and R, residues which correspond to one of the two invariant arginine residues of the integrase family. These variant proteins bind substrate with affinities comparable to those of the corresponding wild-type recombinases. Among the binding-competent variants, only Flp(R191K) is capable of efficient substrate cleavage in a full recombination target. However, this protein does not cleave a half recombination site and fails to complete strand exchange in a full site. Strikingly, the Arg-191 mutants of Flp and R can be rescued in half-site strand transfer reactions by a second point mutant of the corresponding recombinase that lacks its active-site tyrosine (Tyr-343). Similarly, Flp and R variants of Cys-189 and Flp variants at Asp-194 and Asp-199 can also be complemented by the corresponding Tyr-343-to-phenylalanine recombinase mutant.
机译:来自酿酒酵母和鲁氏酵母的位点特异性重组酶Flp和R分别是属于位点特异性重组酶酵母家族的相关蛋白。它们共有大约30%的氨基酸匹配,并显示出一个共同的反应机制,该机制在较大的定点重组酶整合酶家族中似乎是保守的。蛋白质的两个区域,分别称为方框I和方框II,在核苷酸序列水平上也具有相当高的同源性。我们已经分析了底物结合,DNA切割以及全位和半位链转移反应中框I片段内携带点突变的Flp和R变体的特性。在底物结合步骤或在链切割或链转移的催化步骤中,所有突变都消除或严重降低了重组酶的功能。特别感兴趣的是Flp和R的Arg-191的突变,其残基对应于整合酶家族的两个不变的精氨酸残基之一。这些变体蛋白以与相应的野生型重组酶相当的亲和力结合底物。在具有结合能力的变体中,只有Flp(R191K)能够在完全重组靶中有效切割底物。但是,该蛋白质不能切割一半的重组位点,并且不能在完整的位点完成链交换。引人注目的是,Flp和R的Arg-191突变体可以通过缺少活性位点酪氨酸(Tyr-343)的相应重组酶的第二个点突变体在半位点链转移反应中得以拯救。同样,Cys-189的Flp和R变体以及Asp-194和Asp-199的Flp变体也可以通过相应的Tyr-343-苯丙氨酸重组酶突变体进行补充。

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