Alonso J C, Stiege C A, Tailor R H, Viret J F
Max-Planck Institut für Molekulare Genetik, Berlin, Federal Republic of Germany.
Mol Gen Genet. 1988 Nov;214(3):482-9. doi: 10.1007/BF00330484.
We determined the effect of various Bacillus subtilis dna(Ts) mutations on pUB110 and chromosomal replication. Leading strand DNA synthesis of pUB110, starting by a nick at the plasmid replication origin (oriU), is performed by DNA polymerase III, since replication is blocked at non-permissive temperature in thermosensitive mutants dnaD, dnaF, dnaH and dnaN known to cause thermosensitivity of the various subunits of DNA polymerase III. When the lagging strand origin (oriL) is exposed, the DnaG protein (DNA primase) alone, or in association with unknown protein(s) binds asymmetrically to oriL to form a primer that is also extended by DNA polymerase III. In oriL- plasmids like pBT32, leading and lagging strand DNA syntheses are decoupled from each other. The DnaB protein, that is not required for pUB110 replication, may be associated with priming at a second unidentified lagging strand origin on pBT32. At non-permissive temperature, the dnaC30 and dnaI2 mutations affect both pUB110 and chromosomal DNA synthesis.
我们确定了各种枯草芽孢杆菌dna(Ts)突变对pUB110和染色体复制的影响。pUB110的前导链DNA合成起始于质粒复制起点(oriU)处的一个切口,由DNA聚合酶III进行,因为在已知会导致DNA聚合酶III各亚基产生温度敏感性的温度敏感突变体dnaD、dnaF、dnaH和dnaN中,复制在非允许温度下被阻断。当滞后链起点(oriL)暴露时,单独的DnaG蛋白(DNA引发酶)或与未知蛋白质结合,不对称地结合到oriL上形成一个引物,该引物也由DNA聚合酶III延伸。在像pBT32这样的oriL-质粒中,前导链和滞后链的DNA合成相互解耦。pUB110复制不需要的DnaB蛋白可能与pBT32上第二个未确定的滞后链起点的引发有关。在非允许温度下,dnaC30和dnaI2突变影响pUB110和染色体DNA的合成。