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Role of the Bacillus subtilis gsiA gene in regulation of early sporulation gene expression.

机译:枯草芽孢杆菌gsiA基因在早期孢子形成基因表达调控中的作用。

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摘要

The Bacillus subtilis gsiA operon was induced rapidly, but transiently, as cells entered the stationary phase in nutrient broth medium. A mutation at the gsiC locus caused sporulation to be defective and expression of gsiA to be elevated and prolonged. The sporulation defect in this strain was apparently due to persistent expression of gsiA, since a gsiA null mutation restored sporulation to wild-type levels. Detailed mapping experiments revealed that the gsiC82 mutation lies within the kinA gene, which encodes the histidine protein kinase member of a two-component regulatory system. Since mutations in this gene caused a substantial blockage in expression of spoIIA, spoIIG, and spoIID genes, it seems that accumulation of a product of the gsiA operon interferes with sporulation by blocking the completion of stage II. It apparently does so by inhibiting or counteracting the activity of KinA.
机译:当细胞在营养肉汤培养基中进入固定相时,枯草芽孢杆菌gsiA操纵子被快速诱导,但被短暂诱导。 gsiC基因座处的突变导致孢子形成缺陷,gsiA的表达升高和延长。该菌株中的孢子形成缺陷显然归因于gsiA的持续表达,因为gsiA无效突变将孢子形成恢复为野生型水平。详细的作图实验表明,gsiC82突变位于kinA基因内,该基因编码两组分调节系统中的组氨酸蛋白激酶成员。由于该基因的突变导致spoIIA,spoIIG和spoIID基因的表达受到实质性阻碍,因此似乎gsiA操纵子产物的积累会通过阻断II期的完成而干扰孢子形成。显然,它是通过抑制或抵消KinA的活性来实现的。

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