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原核生物和噬菌体DNA聚合酶的核酸外切酶及聚合酶活性对DNA底物的结构要求。

DNA substrate structural requirements for the exonuclease and polymerase activities of procaryotic and phage DNA polymerases.

作者信息

Cowart M, Gibson K J, Allen D J, Benkovic S J

机构信息

Department of Chemistry, Pennsylvania State University, University Park 16802.

出版信息

Biochemistry. 1989 Mar 7;28(5):1975-83. doi: 10.1021/bi00431a004.

Abstract

A DNA duplex covalently cross-linked between specific bases has been prepared. This and similar duplexes are substrates for the polymerase and exonuclease activities of the Klenow fragment of Escherichia coli DNA polymerase I and T4 and T7 DNA polymerases. The action of Klenow fragment on these duplexes indicates that the polymerase site does not require that the DNA duplex undergo strand separation for activity, whereas the exonuclease site requires that at least four base pairs of the primer strand must melt out for the exonucleolytic removal of nucleotides from the primer terminus. The exonucleolytic action of T4 and T7 DNA polymerases requires that only two and three bases respectively melt out for excision of nucleotides from the primer terminus. Klenow fragment and T4 DNA polymerase are able to polymerize onto duplexes incapable of strand separation, whereas T7 DNA polymerase seems to require that the primer terminus be at least three bases from the cross-linked base pair. A DNA duplex with a biotin covalently linked to a specific base has been prepared. In the presence of the biotin binding protein avidin, the exonucleolytic activity of Klenow fragment requires that the primer terminus be at least 15 base pairs downstream from the base with the biotin-avidin complex. On the other hand, the polymerase activity of Klenow fragment required that the primer terminus be at least six base pairs downstream from the base with the biotin-avidin complex. These results suggest that the polymerase and exonuclease sites of Klenow are physically separate in solution and exhibit different substrate structural requirements for activity.

摘要

已制备出一种在特定碱基之间共价交联的DNA双链体。这种双链体及类似的双链体是大肠杆菌DNA聚合酶I的Klenow片段、T4和T7 DNA聚合酶的聚合酶和核酸外切酶活性的底物。Klenow片段对这些双链体的作用表明,聚合酶位点并不要求DNA双链体进行链分离才能发挥活性,而核酸外切酶位点则要求引物链至少有四个碱基对解链,以便从引物末端进行核酸外切酶去除核苷酸。T4和T7 DNA聚合酶的核酸外切酶作用分别只要求两个和三个碱基解链,以便从引物末端切除核苷酸。Klenow片段和T4 DNA聚合酶能够在不能进行链分离的双链体上进行聚合,而T7 DNA聚合酶似乎要求引物末端与交联碱基对至少相隔三个碱基。已制备出一种生物素共价连接到特定碱基的DNA双链体。在生物素结合蛋白抗生物素蛋白存在的情况下,Klenow片段的核酸外切酶活性要求引物末端在带有生物素-抗生物素蛋白复合物的碱基下游至少15个碱基对处。另一方面,Klenow片段的聚合酶活性要求引物末端在带有生物素-抗生物素蛋白复合物的碱基下游至少六个碱基对处。这些结果表明,Klenow的聚合酶和核酸外切酶位点在溶液中在物理上是分开的,并且对活性表现出不同的底物结构要求。

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