Pato Martin L
Department of Microbiology, University of Colorado Health Sciences Center, 4200 E, 9th Ave., Denver, CO, USA.
Res Microbiol. 2004 Sep;155(7):553-8. doi: 10.1016/j.resmic.2004.03.006.
Replication of Mu prophages lacking the central strong gyrase site (SGS) is severely slowed. To study details of the replication of these prophages, an assay was developed for determining the rate and extent of introduction of nicks at the 3'-ends of a Mu prophage, an early step in Mu replicative transposition. The maximal level of end-nicking of a prophage with the SGS, about 70-90% depending upon the host strain, was achieved within about 15 min after induction, whereas at that time less than 5% nicking was observed with a prophage lacking the SGS. The amount of nicking at the end of the SGS(-) prophage increased with time, and approx. 30% nicking of the SGS(-) prophage was achieved by 60 min post-induction. Nicking kinetics were identical at each end of the prophages, and no nicking was observed at the 5'-ends of the prophages, verifying in vivo the earlier results with in vitro systems. To determine if prophage location affects the kinetics of replication, we examined prophages at numerous chromosomal locations. SGS(+) prophages at different chromosomal locations showed essentially identical replication kinetics. SGS(-) prophages showed a range of delays in replication and host lysis. A gradient of delays was apparent, with prophages further from the chromosomal origin of replication, oriC, showing longer delays than ones nearer to oriC. However, there were also exceptions to this overall gradient. Possible explanations for the differences in the delays observed with SGS(-) prophages are discussed.
缺乏中央强解旋酶位点(SGS)的Mu原噬菌体的复制严重减缓。为了研究这些原噬菌体复制的细节,开发了一种测定方法,用于确定Mu原噬菌体3'端切口引入的速率和程度,这是Mu复制性转座的早期步骤。具有SGS的原噬菌体的最大切口水平,取决于宿主菌株,约为70-90%,在诱导后约15分钟内达到,而此时缺乏SGS的原噬菌体的切口率不到5%。SGS(-)原噬菌体末端的切口量随时间增加,诱导后60分钟时,SGS(-)原噬菌体的切口率约为30%。原噬菌体两端的切口动力学相同,在原噬菌体的5'端未观察到切口,这在体内验证了早期体外系统的结果。为了确定原噬菌体的位置是否影响复制动力学,我们检查了多个染色体位置的原噬菌体。不同染色体位置的SGS(+)原噬菌体显示出基本相同的复制动力学。SGS(-)原噬菌体在复制和宿主裂解方面表现出一系列延迟。延迟梯度明显,离染色体复制起点oriC较远的原噬菌体比离oriC较近的原噬菌体显示出更长的延迟。然而,这种总体梯度也有例外。讨论了SGS(-)原噬菌体观察到的延迟差异的可能解释。