Marquis Kathleen A, Burton Briana M, Nollmann Marcelo, Ptacin Jerod L, Bustamante Carlos, Ben-Yehuda Sigal, Rudner David Z
Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.
Genes Dev. 2008 Jul 1;22(13):1786-95. doi: 10.1101/gad.1684008.
The FtsK/SpoIIIE family of DNA transporters are responsible for translocating missegregated chromosomes after the completion of cell division. An extreme example of this post-cytokinetic DNA segregation occurs during spore formation in the bacterium Bacillus subtilis, where SpoIIIE pumps three-quarters of the chromosome (>3 megabases) into one of the two daughter cells. Here, we investigate the fate of the proteins associated with the translocated DNA. Taking advantage of several unique features of Bacillus sporulation, we demonstrate that RNA polymerase, transcription factors, and chromosome remodeling proteins are stripped off the DNA during translocation of the chromosome into the forespore compartment. Furthermore, we show that in vitro the soluble ATPase domain of SpoIIIE can displace RNA polymerase bound to DNA, suggesting that SpoIIIE alone is capable of this wire-stripping activity. Our data suggest that the bulk of the forespore chromosome is translocated naked into the forespore compartment. We propose that the translocation-stripping activity of SpoIIIE plays a key role in reprogramming developmental gene expression in the forespore.
FtsK/SpoIIIE家族的DNA转运蛋白负责在细胞分裂完成后转运错误分离的染色体。这种细胞分裂后DNA分离的极端例子发生在枯草芽孢杆菌的孢子形成过程中,其中SpoIIIE将四分之三的染色体(>3兆碱基)泵入两个子细胞之一。在这里,我们研究与转运的DNA相关的蛋白质的命运。利用枯草芽孢杆菌孢子形成的几个独特特征,我们证明RNA聚合酶、转录因子和染色体重塑蛋白在染色体转运到前芽孢区室的过程中从DNA上被剥离。此外,我们表明在体外,SpoIIIE的可溶性ATP酶结构域可以取代与DNA结合的RNA聚合酶,这表明仅SpoIIIE就具有这种剥离活性。我们的数据表明,大部分前芽孢染色体以裸露状态转运到前芽孢区室。我们提出,SpoIIIE的转运剥离活性在前芽孢发育基因表达的重编程中起关键作用。