首页> 美国卫生研究院文献>Journal of Bacteriology >DNA Topoisomerase III from the Hyperthermophilic Archaeon Sulfolobus solfataricus with Specific DNA Cleavage Activity
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DNA Topoisomerase III from the Hyperthermophilic Archaeon Sulfolobus solfataricus with Specific DNA Cleavage Activity

机译:具有特异DNA切割活性的超嗜热古细菌Sulfolobus solfataricus的DNA拓扑异构酶III。

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摘要

We report the production, purification, and characterization of a type IA DNA topoisomerase, previously designated topoisomerase I, from the hyperthermophilic archaeon Sulfolobus solfataricus. The protein was capable of relaxing negatively supercoiled DNA at 75°C in the presence of Mg2+. Mutation of the putative active site Tyr318 to Phe318 led to the inactivation of the protein. The S. solfataricus enzyme cleaved oligonucleotides in a sequence-specific fashion. The cleavage occurred only in the presence of a divalent cation, preferably Mg2+. The cofactor requirement of the enzyme was partially satisfied by Cu2+, Co2+, Mn2+, Ca2+, or Ni2+. It appears that the enzyme is active with a broader spectrum of metal cofactors in DNA cleavage than in DNA relaxation (Mg2+ and Ca2+). The enzyme-catalyzed oligonucleotide cleavage required at least 7 bases upstream and 2 bases downstream of the cleavage site. Analysis of cleavage by the S. solfataricus enzyme on a set of oligonucleotides revealed a consensus cleavage sequence of the enzyme: 5′-G(A/T)CA(T)AG(T)G(A)X↓XX-3′. This sequence bears more resemblance to the preferred cleavage sites of topoisomerases III than to those of topoisomerases I. Based on these data and sequence analysis, we designate the enzyme S. solfataricus topoisomerase III.
机译:我们报告的生产,纯化和表征的IA型DNA拓扑异构酶,以前称为拓扑异构酶I,从嗜热古细菌Sulfolobus solfataricus。该蛋白能够在Mg 2 + 存在下于75°C松弛负超螺旋DNA。推定的活性位点Tyr318突变为Phe318导致蛋白质失活。 S. solfataricus酶以序列特异性方式切割寡核苷酸。裂解仅在二价阳离子,优选Mg 2 + 存在下发生。 Cu 2 + ,Co 2 + ,Mn 2 + ,Ca 2+ <可以部分满足酶的辅因子需求/ sup>或Ni 2 + 。似乎该酶在DNA裂解中比在DNA松弛中具有更广谱的金属辅因子活性(Mg 2 + 和Ca 2 + )。酶催化的寡核苷酸裂解需要在裂解位点上游至少7个碱基和下游2个碱基。啤酒链霉菌对一组寡核苷酸的切割分析表明该酶的共有切割序列:5'-G(A / T)CA(T)AG(T)G(A)X↓XX-3' 。该序列与拓扑异构酶III的优选切割位点相比具有更大的相似性。基于这些数据和序列分析,我们指定了S. solfataricus拓扑异构酶III。

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