Thompson H C, Sheaff R J, Kuchta R D
Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215, USA.
Nucleic Acids Res. 1995 Oct 25;23(20):4109-15. doi: 10.1093/nar/23.20.4109.
The interactions of calf thymus DNA polymerase alpha (pol alpha) with primer/templates were examined. Simply changing the primer from DNA to RNA had little effect on primer/template binding or dNTP polymerization (Km, Vmax and processivity). Surprisingly, however, adding a 5'-triphosphate to the primer greatly changed its interactions with pol alpha (binding, Vmax and Km and processivity). While changing the primer from DNA to RNA greatly altered the abilit of pol alpha to discriminate against nucleotide analogs, it did not compromise the ability of pol alpha to discriminate against non-cognate dNTPs. Thus the nature of the primer appears to affect 'sugar fidelity', without altering 'base fidelity'. DNase protection assays showed that pol alpha strongly protected 9 nt of the primer strand, 13 nt of the duplex template strand and 14 nt of the single-stranded template from hydrolysis by DNase I and weakly protected several bases outside this core region. This large DNA binding domain may account for the ability of a 5'-triphosphate on RNA primers to alter the catalytic properties of pol alpha.
研究了小牛胸腺DNA聚合酶α(polα)与引物/模板的相互作用。仅将引物从DNA改为RNA对引物/模板结合或dNTP聚合(Km、Vmax和持续合成能力)影响很小。然而,令人惊讶的是,在引物上添加5'-三磷酸会极大地改变其与polα的相互作用(结合、Vmax、Km和持续合成能力)。虽然将引物从DNA改为RNA会极大地改变polα区分核苷酸类似物的能力,但它并未损害polα区分非同源dNTP的能力。因此,引物的性质似乎影响“糖保真度”,而不改变“碱基保真度”。DNase保护试验表明,polα强烈保护引物链的9个核苷酸、双链模板链的13个核苷酸和单链模板的14个核苷酸不被DNase I水解,并微弱地保护该核心区域外的几个碱基。这个大的DNA结合结构域可能解释了RNA引物上的5'-三磷酸改变polα催化特性的能力。