Veinot-Drebot L M, Johnston G C, Singer R A
Department of Biochemistry, Dalhousie University, Halifax, Nova Scotia, Canada.
J Bacteriol. 1991 Apr;173(8):2556-61. doi: 10.1128/jb.173.8.2556-2561.1991.
Septum formation in the mitotic cell cycle of the budding yeast Saccharomyces cerevisiae occurs by conversion of the chitin ring, laid down at bud formation, into the primary septum. We show here that under certain conditions this septation is dependent on the newly identified RSF1 gene. However, cells harboring the rsf1-1 mutation accumulated in a postcytokinesis state, with delayed conversion of the chitin-rich annulus into the primary septum. This rsf1-1-mediated inhibition of septum formation only occurred under conditions of biosynthetic stress and was correlated with biosynthetically mediated inhibition of the cell-cycle regulatory step START. The RSF1 gene is distinct from the CHS2 chitin synthase gene that is responsible for septation, and thus RSF1 most likely encodes a regulator of chitin synthesis. We hypothesize that RSF1 activity facilitates septum formation during times of biosynthetic stress, to allow efficient septation even under these conditions.
在出芽酵母酿酒酵母的有丝分裂细胞周期中,隔膜的形成是通过将在芽形成时沉积的几丁质环转化为初级隔膜来实现的。我们在此表明,在某些条件下,这种隔膜形成依赖于新鉴定的RSF1基因。然而,携带rsf1-1突变的细胞在胞质分裂后状态下积累,富含几丁质的环向初级隔膜的转化延迟。这种rsf1-1介导的隔膜形成抑制仅在生物合成应激条件下发生,并且与生物合成介导的细胞周期调控步骤START的抑制相关。RSF1基因与负责隔膜形成的CHS2几丁质合酶基因不同,因此RSF1很可能编码一种几丁质合成调节因子。我们推测,RSF1活性在生物合成应激期间促进隔膜形成,以便即使在这些条件下也能实现高效的隔膜形成。