Magnan David, Joshi Mohan C, Barker Anna K, Visser Bryan J, Bates David
Integrative Molecular and Biomedical Sciences, Baylor College of Medicine, Houston, TX 77030, USA.
Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Curr Biol. 2015 Aug 17;25(16):2143-9. doi: 10.1016/j.cub.2015.06.058. Epub 2015 Aug 6.
Although it has been recognized for several decades that chromosome structure regulates the capacity of replication origins to initiate, very little is known about how or if cells actively regulate structure to direct initiation. We report that a localized inducible protein tether between the chromosome and cell membrane in E. coli cells imparts a rapid and complete block to replication initiation. Tethers, composed of a trans-membrane and transcription repressor fusion protein bound to an array of operator sequences, can be placed up to 1 Mb from the origin with no loss of penetrance. Tether-induced initiation blocking has no effect on elongation at pre-existing replication forks and does not cause cell or DNA damage. Whole-genome and site-specific fluorescent DNA labeling in tethered cells indicates that global nucleoid structure and chromosome organization are disrupted. Gene expression patterns, assayed by RNA sequencing, show that tethering induces global supercoiling changes, which are likely incompatible with replication initiation. Parallels between tether-induced initiation blocking and rifampicin treatment and the role of programmed changes in chromosome structure in replication control are discussed.
尽管几十年来人们已经认识到染色体结构调节复制起点启动的能力,但对于细胞如何或是否主动调节结构以指导启动却知之甚少。我们报告称,大肠杆菌细胞中染色体与细胞膜之间的局部诱导蛋白系链会对复制起始造成快速且完全的阻断。由与一系列操纵序列结合的跨膜和转录抑制融合蛋白组成的系链,可放置在距起点达1兆碱基处,且穿透率无损失。系链诱导的起始阻断对已存在的复制叉处的延伸没有影响,也不会导致细胞或DNA损伤。系链细胞中的全基因组和位点特异性荧光DNA标记表明,整体类核结构和染色体组织被破坏。通过RNA测序分析的基因表达模式表明,系链诱导了整体超螺旋变化,这可能与复制起始不相容。讨论了系链诱导的起始阻断与利福平处理之间的相似之处以及染色体结构的程序性变化在复制控制中的作用。