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统一聚合酶结构的尝试。

An attempt to unify the structure of polymerases.

作者信息

Delarue M, Poch O, Tordo N, Moras D, Argos P

机构信息

Department of Crystallography, IBMC du CNRS, Strasbourg, France.

出版信息

Protein Eng. 1990 May;3(6):461-7. doi: 10.1093/protein/3.6.461.

Abstract

With the great availability of sequences from RNA- and DNA-dependent RNA and DNA polymerases, it has become possible to delineate a few highly conserved regions for various polymerase types. In this work a DNA polymerase sequence from bacteriophage SPO2 was found to be homologous to the polymerase domain of the Klenow fragment of polymerase I from Escherichia coli, which is known to be closely related to those from Staphylococcus pneumoniae, Thermus aquaticus and bacteriophages T7 and T5. The alignment of the SPO2 polymerase with the other five sequences considerably narrowed the conserved motifs in these proteins. Three of the motifs matched reasonably all the conserved motifs of another DNA polymerase type, characterized by human polymerase alpha. It is also possible to find these three motifs in monomeric DNA-dependent RNA polymerases and two of them in DNA polymerase beta and DNA terminal transferases. These latter two motifs also matched two of the four motifs recently identified in 84 RNA-dependent polymerases. From the known tertiary architecture of the Klenow fragment of E. coli pol I, a spatial arrangement can be implied for these motifs. In addition, numerous biochemical experiments suggesting a role for the motifs in a common function (dNTP binding) also support these inferences. This speculative hypothesis, attempting to unify polymerase structure at least locally, if not globally, under the pol I fold, should provide a useful model to direct mutagenesis experiments to probe template and substrate specificity in polymerases.

摘要

由于可获得大量来自依赖RNA和DNA的RNA及DNA聚合酶的序列,现已能够为各种聚合酶类型描绘出一些高度保守的区域。在这项研究中,发现噬菌体SPO2的一种DNA聚合酶序列与大肠杆菌聚合酶I的Klenow片段的聚合酶结构域同源,已知该结构域与肺炎链球菌、嗜热栖热菌以及噬菌体T7和T5的聚合酶结构域密切相关。将SPO2聚合酶与其他五个序列进行比对,大大缩小了这些蛋白质中的保守基序。其中三个基序与另一种以人聚合酶α为特征的DNA聚合酶类型的所有保守基序相当匹配。在单体依赖DNA的RNA聚合酶中也能找到这三个基序,在DNA聚合酶β和末端脱氧核苷酸转移酶中能找到其中两个基序。后两个基序也与最近在84种依赖RNA的聚合酶中鉴定出的四个基序中的两个相匹配。根据大肠杆菌pol I的Klenow片段已知的三级结构,可以推测出这些基序的空间排列。此外,大量生化实验表明这些基序在共同功能(dNTP结合)中起作用,这也支持了这些推断。这个推测性假说试图至少在局部而非全局上统一聚合酶结构,使其符合pol I折叠模式,应该能为指导诱变实验以探究聚合酶中的模板和底物特异性提供一个有用的模型。

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