Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309, USA.
Mol Cell. 2010 Jan 29;37(2):273-81. doi: 10.1016/j.molcel.2009.12.025.
We have expressed and purified 13 proteins predicted to be required for B. subtilis DNA replication. When combined with a circular DNA template with a 5' unpaired flap, these proteins reconstitute replication of both the leading and lagging strands at the physiological rate. Consistent with the in vivo requirement for two DNA polymerase III replicases for B. subtilis chromosomal replication, both PolC and DnaE are required for reconstitution of the replication fork in vitro. Leading strand synthesis requires PolC plus ten proteins; lagging strand synthesis additionally requires primase and DnaE. DnaE does not serve as the lagging strand replicase, like DNA polymerase delta in eukaryotes, but instead functions like eukaryotic DNA polymerase alpha, adding a stretch of deoxynucleotides to the RNA primer before handoff to PolC. Primase equilibrates with the fork prior to synthesis of each Okazaki fragment, and its concentration controls the frequency of initiation and Okazaki fragment size.
我们已经表达和纯化了 13 种预测对枯草芽孢杆菌 DNA 复制必需的蛋白质。当与带有 5'未配对的凸起的环状 DNA 模板结合时,这些蛋白质以生理速度重新组装了前导链和滞后链的复制。与枯草芽孢杆菌染色体复制中需要两种 DNA 聚合酶 III 复制酶一致,PolC 和 DnaE 都需要体外复制叉的重新组装。前导链合成需要 PolC 和十种蛋白质;滞后链合成除了需要引物酶和 DnaE 外。DnaE 不像真核生物中的 DNA 聚合酶 delta 那样作为滞后链复制酶,而是像真核生物 DNA 聚合酶 alpha 一样发挥作用,在将 RNA 引物交给 PolC 之前,在其上添加一段脱氧核苷酸。引物在每个 Okazaki 片段的合成之前与叉子平衡,其浓度控制起始频率和 Okazaki 片段大小。