Kusakabe T, Richardson C C
Department of Biological Chemistry and Molecular Pharmacology, Harvard University Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 1997 May 9;272(19):12446-53. doi: 10.1074/jbc.272.19.12446.
The 63-kDa gene 4 primase of bacteriophage T7 recognizes a core trinucleotide sequence, 5'-GTC-3', on single-stranded DNA at which it catalyzes the synthesis of the ribodinucleotide pppAC. The dinucleotide is extended to a tetranucleotide primer at the sites 5'-(G/T)GGTC-3' and 5'-GTGTC-3'. In the presence of T7 primase, T7 DNA polymerase extends the synthetic ribotetranucleotide pACCA (1 microM), but not pCACA, on M13 DNA templates. The reaction is specific for T7 DNA polymerase and depends on dTTP and translocation of the gene 4 protein. T7 primase extends the dinucleotide AC and trinucleotide ACC to ACCC in the presence of CTP and an appropriate template, whereas other dinucleotides are extended less efficiently; the deoxyribodinucleotide dAC is not extended. The Cys4 zinc motif of the primase is essential for extension of the dinucleotides. The 5'-cryptic cytidine of the recognition sequence is essential for extension of the dinucleotide AC to tri- and tetranucleotides. At a preformed replication fork, the dinucleotide AC provides for primer synthesis on the lagging strand. The synthesis of all Okazaki fragments is initiated by primers arising from the recognition sequence 5'-GGGTC-3'; none arise at an adjacent 5'-GGGTT-3' sequence. If ADP or AMP replaces ATP in the primase reaction, primers terminating in di- or monophosphate, respectively, are synthesized.
噬菌体T7的63-kDa基因4引发酶识别单链DNA上的核心三核苷酸序列5'-GTC-3',并在此处催化核糖二核苷酸pppAC的合成。二核苷酸在5'-(G/T)GGTC-3'和5'-GTGTC-3'位点延伸为四核苷酸引物。在T7引发酶存在的情况下,T7 DNA聚合酶可在M13 DNA模板上延伸合成的核糖四核苷酸pACCA(1 microM),但不能延伸pCACA。该反应对T7 DNA聚合酶具有特异性,并且依赖于dTTP和基因4蛋白的移位。在CTP和合适模板存在的情况下,T7引发酶将二核苷酸AC和三核苷酸ACC延伸为ACCC,而其他二核苷酸的延伸效率较低;脱氧核糖二核苷酸dAC则不会延伸。引发酶的Cys4锌基序对于二核苷酸的延伸至关重要。识别序列的5'-隐蔽胞嘧啶对于将二核苷酸AC延伸为三核苷酸和四核苷酸至关重要。在预先形成的复制叉处,二核苷酸AC用于在滞后链上合成引物。所有冈崎片段的合成均由源自识别序列5'-GGGTC-3'的引物起始;在相邻的5'-GGGTT-3'序列处则不会起始。如果在引发酶反应中用ADP或AMP替代ATP,则分别合成以二磷酸或单磷酸结尾的引物。