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Evidence that entry into sporulation in Bacillus subtilis is governed by a gradual increase in the level and activity of the master regulator Spo0A

机译:枯草芽孢杆菌进入孢子形成的证据是由主调节剂Spo0A的水平和活性逐渐增加所决定的

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摘要

The transcription factor Spo0A is a master regulator for entry into sporulation in the bacterium Bacillus subtilis, but it has been uncertain whether activation of Spo0A is sufficient to trigger development. Spo0A, a member of the response regulator family of gene-control proteins, is activated by phosphorylation via a multicomponent phosphorelay in response to conditions of nutrient limitation. We now report that sporulation can be triggered with high efficiency in cells in the exponential phase of growth in rich medium by artificial induction of the synthesis of any one of three histidine kinases that feed phosphoryl groups into the relay. We further show that the levels of Spo0A protein and activity increase gradually over the first 2 h of sporulation both under conditions of nutrient limitation and in response to induction of kinase synthesis. Evidence indicates that this gradual increase in Spo0A protein and activity plays a critical role in triggering sporulation and requires the action of the phosphorelay.
机译:转录因子Spo0A是进入枯草芽孢杆菌中的孢子形成的主要调控因子,但尚不确定Spo0A的激活是否足以触发发育。 Spo0A是基因控制蛋白的反应调节因子家族的成员,可通过多组分磷酰化作用来磷酸化,从而满足营养限制条件。我们现在报告,通过人工诱导将磷酸基团馈入继电器的三种组氨酸激酶中的任何一种的合成,可以在富培养基中的指数生长阶段以高效率触发细胞中的孢子形成。我们进一步表明,在营养限制条件下以及响应于激酶合成的诱导下,在孢子形成的最初2小时内,Spo0A蛋白的水平和活性逐渐增加。有证据表明,Spo0A蛋白和活性的这种逐渐增加在触发孢子形成中起关键作用,并且需要磷光体的作用。

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