Thompson L S, Beech P L, Real G, Henriques A O, Harry E J
Institute for the Biotechnology of Infectious Diseases, University of Technology, Sydney, NSW 2007, Australia.
J Bacteriol. 2006 Nov;188(21):7677-85. doi: 10.1128/JB.01072-06. Epub 2006 Aug 25.
During spore formation in Bacillus subtilis, cell division occurs at the cell pole and is believed to require essentially the same division machinery as vegetative division. Intriguingly, although the cell division protein DivIB is not required for vegetative division at low temperatures, it is essential for efficient sporulation under these conditions. We show here that at low temperatures in the absence of DivIB, formation of the polar septum during sporulation is delayed and less efficient. Furthermore, the polar septa that are complete are abnormally thick, containing more peptidoglycan than a normal polar septum. These results show that DivIB is specifically required for the efficient and correct formation of a polar septum. This suggests that DivIB is required for the modification of sporulation septal peptidoglycan, raising the possibility that DivIB either regulates hydrolysis of polar septal peptidoglycan or is a hydrolase itself. We also show that, despite the significant number of completed polar septa that form in this mutant, it is unable to undergo engulfment. Instead, hydrolysis of the peptidoglycan within the polar septum, which occurs during the early stages of engulfment, is incomplete, producing a similar phenotype to that of mutants defective in the production of sporulation-specific septal peptidoglycan hydrolases. We propose a role for DivIB in sporulation-specific peptidoglycan remodelling or its regulation during polar septation and engulfment.
在枯草芽孢杆菌形成孢子的过程中,细胞分裂发生在细胞极,据信其所需的分裂机制与营养细胞分裂基本相同。有趣的是,尽管细胞分裂蛋白DivIB在低温下对营养细胞分裂并非必需,但在这些条件下对高效孢子形成却是必不可少的。我们在此表明,在低温且缺乏DivIB的情况下,孢子形成过程中极隔膜的形成会延迟且效率较低。此外,完整形成的极隔膜异常增厚,其肽聚糖含量比正常极隔膜更多。这些结果表明,DivIB是高效且正确形成极隔膜所特需的。这表明DivIB是孢子形成隔膜肽聚糖修饰所必需的,这增加了DivIB要么调节极隔膜肽聚糖水解要么本身就是一种水解酶的可能性。我们还表明,尽管该突变体中形成了大量完整的极隔膜,但它无法进行吞噬作用。相反,在吞噬作用早期发生的极隔膜内肽聚糖的水解并不完全,产生了与孢子形成特异性隔膜肽聚糖水解酶产生缺陷的突变体类似的表型。我们提出DivIB在孢子形成特异性肽聚糖重塑或其在极隔膜形成和吞噬过程中的调节中发挥作用。