Ramirez-Aguilar Kathryn A, Kuchta Robert D
Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309, USA.
Biochemistry. 2004 Feb 17;43(6):1754-62. doi: 10.1021/bi035519x.
We utilized templates of defined sequence to investigate the mechanism of primer synthesis by herpes simplex virus 1 helicase-primase. Under steady-state conditions, the rate of primer synthesis and the size distribution of products remained constant with time, suggesting that the rate-limiting step(s) of primer synthesis occur(s) during primer initiation (at or before the formation of the pppNpN dinucleotide). Consistent with this idea, increasing the concentration of NTPs required for dinucleotide synthesis increased the rate of primer synthesis, whereas increasing the concentration of NTPs not involved in dinucleotide synthesis inhibited primer synthesis. Due to these effects on primer initiation, varying the NTP concentration could affect start site selection on templates containing multiple G-pyr-pyr initiation sites. Increasing the NTP concentration also increased the processivity of primase. However, even at very high concentrations of NTPs, elongation of the dinucleotide into longer products remained relatively inefficient. Primase did not readily elongate preexisting primers under conditions where free template was present in large excess of enzyme. However, if template concentrations were lowered such that primase synthesized primers on all or most of the template present in the reaction, then primase would elongate previously synthesized primers.
我们利用特定序列的模板来研究单纯疱疹病毒1解旋酶-引物酶合成引物的机制。在稳态条件下,引物合成速率和产物的大小分布随时间保持恒定,这表明引物合成的限速步骤发生在引物起始阶段(在pppNpN二核苷酸形成时或之前)。与此观点一致,增加二核苷酸合成所需的NTP浓度会提高引物合成速率,而增加不参与二核苷酸合成的NTP浓度则会抑制引物合成。由于这些对引物起始的影响,改变NTP浓度可能会影响含有多个G-pyr-pyr起始位点的模板上的起始位点选择。增加NTP浓度也会提高引物酶的持续合成能力。然而,即使在非常高的NTP浓度下,二核苷酸延伸为更长产物的效率仍然相对较低。在游离模板大大过量于酶的条件下,引物酶不容易延伸预先存在的引物。但是,如果降低模板浓度,使得引物酶在反应中存在的所有或大部分模板上合成引物,那么引物酶就会延伸先前合成的引物。