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噬菌体O29 DNA复制的蛋白质引发起始和延伸的序列要求。

Sequence requirements for protein-primed initiation and elongation of phage O29 DNA replication.

作者信息

Gonzalez-Huici V, Salas M, Hermoso J M

机构信息

Centro de Biologia Molecular Severo Ochoa (Consejo Superior de Investigaciones Cientificas-Universidad Autónoma Madrid), Universidad Autónoma, Canto Blanco, 28049 Madrid, Spain.

出版信息

J Biol Chem. 2000 Dec 22;275(51):40547-53. doi: 10.1074/jbc.M007170200.

Abstract

The double-stranded linear DNA of Bacillus subtilis phage O29 is replicated by a mechanism in which a terminal protein (TP) acts as a primer. The second 3'-terminal nucleotide of the template directs the incorporation of the 5'-terminal nucleotide into the TP, giving rise to the initiation complex TP-dAMP. Elongation then proceeds by a sliding-back mechanism in which the dAMP covalently linked to the TP pairs to the 3'-terminal nucleotide of the template strand to recover full-length DNA. We have studied the sequence requirements for efficient initiation of replication using mutated TP-free double-stranded DNA fragments. Efficient initiation only requires the terminal repetition 5'-AA. The 3'-terminal T, although not used as template, increases the affinity of DNA polymerase for the initiator nucleotide; in addition, although to a minor extent, the third 3'-terminal position also directs the formation of the initiation complex and modulates the initiation rate at the second position. Efficient elongation requires a previous sliding-back, demanding again a repetition of two nucleotides at the 3' end; if the sliding-back is prevented, a residual elongation can proceed directly from the second position or after jumping back from the third to the first position.

摘要

枯草芽孢杆菌噬菌体O29的双链线性DNA通过一种机制进行复制,其中末端蛋白(TP)充当引物。模板的第二个3'末端核苷酸指导5'末端核苷酸掺入TP中,从而产生起始复合物TP-dAMP。然后通过一种回滑机制进行延伸,其中与TP共价连接的dAMP与模板链的3'末端核苷酸配对以恢复全长DNA。我们使用突变的无TP双链DNA片段研究了有效起始复制的序列要求。有效起始仅需要末端重复序列5'-AA。3'末端的T虽然不用作模板,但增加了DNA聚合酶对起始核苷酸的亲和力;此外,尽管程度较小,但第三个3'末端位置也指导起始复合物的形成并调节第二个位置的起始速率。有效延伸需要先前的回滑,这再次要求在3'末端重复两个核苷酸;如果回滑被阻止,残余延伸可以直接从第二个位置进行,或者在从第三个位置跳回到第一个位置之后进行。

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