Nyborg M, Atlung T, Skovgaard O, Hansen F G
Department of Life Sciences and Chemistry (17.2), Roskilde University, PO Box 260, DK-4000 Roskilde, Denmark.
Mol Microbiol. 2000 Mar;35(5):1202-10. doi: 10.1046/j.1365-2958.2000.01790.x.
Multicopy dnaA(Ts) strains carrying the dnaA5 or dnaA46 allele are high-temperature resistant but are cold sensitive for colony formation. The DnaA5 and DnaA46 proteins both have an A184-->V change in the ATP binding motif of the protein, but they also have one additional mutation. The mutations were separated, and it was found that a plasmid carrying exclusively the A184-->V mutation conferred a phenotype virtually identical to that of the dnaA5 plasmid. Strains carrying plasmids with either of the additional mutations behaved like a strain carrying the dnaA+ plasmid. In temperature downshifts from 42 degrees C to 30 degrees C, chromosome replication was stimulated in the multicopy dnaA46 strain. The DNA per mass ratio increased threefold, and exponential growth was maintained for more than four mass doublings. Strains carrying plasmids with the dnaA(A184-->V) or the dnaA5 gene behaved differently. The temperature downshift resulted in run out of DNA synthesis and the strains eventually ceased growth. The arrest of DNA synthesis was not due to the inability to initiate chromosome replication because marker frequency analysis showed high initiation activity after temperature downshift. However, the marker frequencies indicated that most, if not all, of the newly initiated replication forks were stalled soon after the onset of chromosome replication. Thus, it appears that the multicopy dnaA(A184-->V) strains are cold sensitive because of an inability to elongate replication at low temperature. The multicopy dnaA46 strains, on the contrary, exhibit productive initiation and normal fork movement. In this case, the cold-sensitive phenotype may be due to DNA overproduction.
携带dnaA5或dnaA46等位基因的多拷贝dnaA(Ts)菌株具有高温抗性,但对菌落形成是冷敏感的。DnaA5和DnaA46蛋白在该蛋白的ATP结合基序中都有A184→V的变化,但它们也有一个额外的突变。这些突变被分离出来,结果发现仅携带A184→V突变的质粒赋予了与dnaA5质粒几乎相同的表型。携带任何一种额外突变质粒的菌株表现得像携带dnaA+质粒的菌株。在从42℃温度下调到30℃的过程中,多拷贝dnaA46菌株中的染色体复制受到刺激。每质量DNA比率增加了三倍,并且指数生长维持了超过四次质量加倍。携带含有dnaA(A184→V)或dnaA5基因质粒的菌株表现不同。温度下调导致DNA合成耗尽,菌株最终停止生长。DNA合成的停滞不是由于无法启动染色体复制,因为标记频率分析显示温度下调后具有高启动活性。然而,标记频率表明,大多数(如果不是全部)新启动的复制叉在染色体复制开始后不久就停滞了。因此,似乎多拷贝dnaA(A184→V)菌株是冷敏感的,因为在低温下无法延长复制。相反,多拷贝dnaA46菌株表现出有效的启动和正常的叉移动。在这种情况下,冷敏感表型可能是由于DNA过量产生。