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A mechanism for cell cycle regulation of sporulation initiation in Bacillus subtilis.

机译:枯草芽孢杆菌中孢子形成起始的细胞周期调控机制。

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Coordination of DNA replication with cellular development is a crucial problem in most living organisms. Bacillus subtilis cells switch from vegetative growth to sporulation when starved. Sporulation normally occurs in cells that have stopped replicating DNA and have two completed chromosomes: one destined for the prespore and the other for the mother cell. It has long been recognized that there is a sensitive period in the cell cycle during which the initiation of spore development can be triggered, presumably to allow for the generation of exactly two complete chromosomes. However, the mechanism responsible for this has remained unclear. Here we show that the sda gene, previously identified as a checkpoint factor preventing sporulation in response to DNA damage, exerts cell cycle control over the initiation of sporulation. Expression of sda occurs in a pulsatile manner, with a burst of expression each cell cycle at the onset of DNA replication. Up-regulation of the intrinsically unstable Sda protein, which is dependent on the active form of the DNA replication initiator protein, DnaA, transiently inhibits the initiation of sporulation. This regulation avoids the generation of spore formers with replicating chromosomes, which would result in diploid or polyploid spores that we show have reduced viability.
机译:在大多数活生物体中,DNA复制与细胞发育的协调是一个关键问题。饥饿时,枯草芽孢杆菌细胞从营养生长转变为孢子形成。孢子形成通常发生在已经停止复制DNA并具有两条完整染色体的细胞中:一条发给孢子,另一条发给母细胞。早已认识到,在细胞周期中存在一个敏感时期,在此期间可以触发孢子发育的开始,大概是为了允许恰好产生两个完整的染色体。但是,对此负责的机制仍不清楚。在这里,我们显示了sda基因,先前被确定为防止因DNA损伤而引起孢子形成的检查点因素,它对孢子形成的启动施加了细胞周期控制。 sda的表达以搏动的方式发生,在DNA复制开始时,每个细胞周期都会爆发表达。内在不稳定的Sda蛋白的上调依赖于DNA复制起始蛋白DnaA的活性形式,可瞬时抑制孢子形成的启动。该规定避免了具有复制染色体的孢子形成物的产生,这将导致我们显示的二倍体或多倍体孢子活力降低。

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