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蛋白引发的DNA聚合酶中的一个保守插入序列参与引物末端的稳定作用。

A conserved insertion in protein-primed DNA polymerases is involved in primer terminus stabilisation.

作者信息

Dufour Emmanuelle, Rodríguez Irene, Lázaro José M, de Vega Miguel, Salas Margarita

机构信息

Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Instituto de Biología Molecular Eladio Viñuela (CSIC), Universidad Autónoma, Cantoblanco, 28049 Madrid, Spain.

出版信息

J Mol Biol. 2003 Aug 22;331(4):781-94. doi: 10.1016/s0022-2836(03)00788-5.

Abstract

Protein-primed DNA polymerases form a subgroup of the eukaryotic-type DNA polymerases family, also called family B or alpha-like. A multiple amino acid sequence alignment of this subgroup of DNA polymerases led to the identification of two insertions, TPR-1 and TPR-2, in the polymerisation domain. We showed previously that Asp332 of the TPR-1 insertion of phi29 DNA polymerase is involved in the correct orientation of the terminal protein (TP) for the initiation of replication. In this work, the functional role of two other conserved residues from TPR-1, Lys305 and Tyr315, has been analysed. The four mutant derivatives constructed, K305I, K305R, Y315A and Y315F, displayed a wild-type 3'-5' exonuclease activity on single-stranded DNA. However, when assayed on double-stranded DNA such activity was higher than that of the wild-type enzyme. This activity led to a reduced pol/exo ratio, suggesting a defect in stabilising the primer terminus at the polymerase active site. On the other hand, although mutant polymerases K305I and Y315A were able to couple processive DNA polymerisation to strand displacement, they were severely impaired in phi29 TP-DNA replication. The possible role of the TPR-1 insertion in the set of interactions with the nascent chain during the first steps of TP-DNA replication is discussed.

摘要

蛋白质引发的DNA聚合酶构成了真核生物型DNA聚合酶家族的一个亚组,也被称为B家族或α样家族。对该亚组DNA聚合酶进行多氨基酸序列比对后,在聚合结构域中鉴定出两个插入序列,即TPR-1和TPR-2。我们之前表明,phi29 DNA聚合酶的TPR-1插入序列中的Asp332参与了末端蛋白(TP)在复制起始时的正确定向。在这项工作中,对TPR-1的另外两个保守残基Lys305和Tyr315的功能作用进行了分析。构建的四个突变衍生物K305I、K305R、Y315A和Y315F在单链DNA上表现出野生型的3'-5'核酸外切酶活性。然而,在双链DNA上进行检测时,这种活性高于野生型酶。这种活性导致聚合酶/核酸外切酶比值降低,表明在聚合酶活性位点稳定引物末端存在缺陷。另一方面,尽管突变聚合酶K305I和Y315A能够将连续的DNA聚合与链置换偶联,但它们在phi29 TP-DNA复制中严重受损。讨论了TPR-1插入序列在TP-DNA复制第一步与新生链相互作用中的可能作用。

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