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T4 核酸内切酶 VII 对霍利迪连接体类似物的拆分可由底物结构引导。

Resolution of Holliday junction analogs by T4 endonuclease VII can be directed by substrate structure.

作者信息

Mueller J E, Newton C J, Jensch F, Kemper B, Cunningham R P, Kallenbach N R, Seeman N C

机构信息

Department of Biological Sciences, State University of New York, Albany 12222.

出版信息

J Biol Chem. 1990 Aug 15;265(23):13918-24.

PMID:2199447
Abstract

Endonuclease VII is an enzyme from bacteriophage T4 capable of resolving four-arm Holliday junction intermediates in recombination. Since natural Holliday junctions have homologous (2-fold) sequence symmetry, they can branch migrate, creating a population of substrates that have the branch point at different sites. We have explored the substrate requirements of endonuclease VII by using immobile analogs of Holliday junctions that lack this homology, thereby situating the branch point at a fixed site in the molecule. We have found that immobile junctions whose double-helical arms contain fewer than nine nucleotide pairs do not serve as substrates for resolution by endonuclease VII. Scission of substrates with 2-fold symmetrically elongated arms produces resolution products that are a function of the particular arms that are lengthened. We have confirmed that the scission products are those of resolution, rather than nicking of individual strands, by using shamrock junction molecules formed from a single oligonucleotide strand. A combination of end-labeled and internally labeled shamrock molecules has been used to demonstrate that all of the scission is due to coordinated cleavage of DNA on opposite sides of the junction, 3' to the branch point. Endonuclease VII is known to cleave the crossover strands of Holliday junctions in this fashion. The relationship of the long arms to the cleavage direction suggests that the portion of the enzyme which requires the minimum arm length interacts with the pair of arms containing the 3' portion of the crossover strands on the bound surface of the antiparallel junction.

摘要

核酸内切酶VII是一种来自噬菌体T4的酶,能够在重组过程中解析四臂霍利迪连接中间体。由于天然霍利迪连接具有同源(2倍)序列对称性,它们可以进行分支迁移,产生一系列分支点位于不同位点的底物。我们通过使用缺乏这种同源性的霍利迪连接的固定类似物来探索核酸内切酶VII的底物需求,从而将分支点定位在分子中的固定位点。我们发现,双螺旋臂包含少于九个核苷酸对的固定连接不能作为核酸内切酶VII解析的底物。对具有2倍对称延长臂的底物进行切割会产生取决于延长的特定臂的解析产物。通过使用由单链寡核苷酸形成的三叶草连接分子,我们证实了切割产物是解析产物,而不是单链的切口。末端标记和内部标记的三叶草分子的组合已被用于证明所有切割都是由于连接点相对两侧的DNA在分支点3'端的协同切割。已知核酸内切酶VII以这种方式切割霍利迪连接的交叉链。长臂与切割方向的关系表明,需要最小臂长的酶部分与包含反平行连接结合表面上交叉链3'部分的一对臂相互作用。

相似文献

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Resolution of Holliday junction analogs by T4 endonuclease VII can be directed by substrate structure.T4 核酸内切酶 VII 对霍利迪连接体类似物的拆分可由底物结构引导。
J Biol Chem. 1990 Aug 15;265(23):13918-24.
2
Cleavage specificity of bacteriophage T4 endonuclease VII and bacteriophage T7 endonuclease I on synthetic branch migratable Holliday junctions.噬菌体T4内切核酸酶VII和噬菌体T7内切核酸酶I对合成的可分支迁移霍利迪连接体的切割特异性。
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Cleavage of double-crossover molecules by T4 endonuclease VII.T4核酸内切酶VII对双交换分子的切割
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T4 endonuclease VII cleaves the crossover strands of Holliday junction analogs.T4核酸内切酶VII可切割霍利迪连接体类似物的交叉链。
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T4 endonuclease VII cleaves holliday structures.T4 核酸内切酶 VII 可切割霍利迪结构。
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Crystal structure of T4 endonuclease VII resolving a Holliday junction.T4核酸内切酶VII解析霍利迪连接体的晶体结构。
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T4 endonuclease VII resolves cruciform DNA with nick and counter-nick and its activity is directed by local nucleotide sequence.T4 内切核酸酶 VII 通过切口和反向切口来分解十字形 DNA,其活性由局部核苷酸序列引导。
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Enzymatic formation and resolution of Holliday junctions in vitro.体外Holliday连接体的酶促形成与解离
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Analysis of substrate specificity of the RuvC holliday junction resolvase with synthetic Holliday junctions.用合成霍利迪连接体分析RuvC霍利迪连接体解离酶的底物特异性。
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Resolution of model Holliday junctions by yeast endonuclease is dependent upon homologous DNA sequences.酵母核酸内切酶对模型霍利迪连接体的切割取决于同源DNA序列。
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引用本文的文献

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Holliday junction resolvases.霍利迪连接体解离酶
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In vivo cloning of artificial DNA nanostructures.人工DNA纳米结构的体内克隆
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Long palindromic sequences induce double-strand breaks during meiosis in yeast.长回文序列在酵母减数分裂过程中诱导双链断裂。
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X-ray structure of T4 endonuclease VII: a DNA junction resolvase with a novel fold and unusual domain-swapped dimer architecture.T4核酸内切酶VII的X射线结构:一种具有新型折叠和异常结构域交换二聚体结构的DNA连接解旋酶。
EMBO J. 1999 Mar 15;18(6):1447-58. doi: 10.1093/emboj/18.6.1447.
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A 140-bp-long palindromic sequence induces double-strand breaks during meiosis in the yeast Saccharomyces cerevisiae.一段140个碱基对长的回文序列在酿酒酵母减数分裂过程中诱导双链断裂。
Genetics. 1997 Jul;146(3):835-47. doi: 10.1093/genetics/146.3.835.
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Near-simultaneous DNA cleavage by the subunits of the junction-resolving enzyme T4 endonuclease VII.连接解离酶T4核酸内切酶VII的亚基几乎同时进行DNA切割。
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The characterization of a mammalian DNA structure-specific endonuclease.一种哺乳动物DNA结构特异性核酸内切酶的特性描述。
EMBO J. 1994 Mar 1;13(5):1235-46. doi: 10.1002/j.1460-2075.1994.tb06373.x.