首页> 外文期刊>Journal of Molecular Biology >A newly identified, essential catalytic residue in a critical secondary structure element in the integrase family of site-specific recombinases is conserved in a similar element in eucaryotic type IB topoisomerases.
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A newly identified, essential catalytic residue in a critical secondary structure element in the integrase family of site-specific recombinases is conserved in a similar element in eucaryotic type IB topoisomerases.

机译:在位点特异性重组酶整合酶家族的关键二级结构元件中新鉴定的必需催化残基在真核IB型拓扑异构酶的类似元件中保守。

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摘要

The integrase family of site-specific recombinases catalyzes conservative rearrangements between defined segments of DNA. A highly conserved tetrad (RHRY) of catalytic residues is essential for this process. This tetrad is dispersed in two motifs in the linear sequence, but is configured appropriately in the catalytic pocket to execute the strand cleavage and rejoining reactions. A third conserved motif has been identified in the Xer subgroup of the integrase family. Mutational analysis of 12 conserved residues in this motif in the XerD protein from Salmonella typhimurium led to the identification of an essential fifth catalytic residue (lysine 172) which is implicated in strand cleavage or exchange. This lysine residue occupies part of the turn of an antiparallel beta-hairpin which forms one side of the catalytic cleft in XerD, and is found at similar positions among evolutionarily diverse integrase family members. Related antiparallel beta-hairpins are present in eucaryotic type IB topoisomerase enzymes which also contain a critical lysine residue in the turn of the hairpin. In both the integrase family and eucaryotic type IB topoisomerases, the catalytic lysine residues are in close contact with the substrates and may play similar roles in influencing the reactivity of the phosphotyrosine intermediates formed during reactions catalyzed by both enzymes. Copyright 1999 Academic Press.
机译:定点重组酶的整合酶家族催化DNA定义片段之间的保守重排。催化残基的高度保守四联体(RHRY)对于此过程至关重要。该四联体以线性顺序分散在两个基序中,但在催化腔中适当配置,以执行链裂解和重新结合反应。在整合酶家族的Xer亚组中已经鉴定出第三个保守基序。鼠伤寒沙门氏菌的XerD蛋白中该基序中12个保守残基的突变分析导致鉴定了必不可少的第五个催化残基(赖氨酸172),与链断裂或交换有关。该赖氨酸残基占据反平行β-发夹的转向部分,该β-发夹形成XerD中催化裂隙的一侧,并在进化上不同的整合酶家族成员中的相似位置处发现。相关的反平行β-发夹存在于真核IB型拓扑异构酶中,该酶在发夹处还含有关键的赖氨酸残基。在整合酶家族和真核生物IB型拓扑异构酶中,催化赖氨酸残基与底物紧密接触,并且在影响由两种酶催化的反应过程中形成的磷酸酪氨酸中间体的反应性中可能发挥相似的作用。版权所有1999,学术出版社。

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