Autoregulation of the Master Regulator Spo0A Controls Cell‐Fate Decisions in Bacillus subtilis

枯草芽孢杆菌 生物 自动调节 调节器 细胞生物学 主调节器 微生物学 细菌 生物化学 转录因子 遗传学 基因 血压 内分泌学
作者
Brenda Zarazúa‐Osorio,Priyanka Srivastava,Anuradha Marathe,Sidra Zahid,Masaya Fujita
出处
期刊:Molecular Microbiology [Wiley]
被引量:2
标识
DOI:10.1111/mmi.15341
摘要

Spo0A in Bacillus subtilis is activated by phosphorylation (Spo0A~P) upon starvation and differentially controls a set of genes involved in biofilm formation and sporulation. The spo0A gene is transcribed by two distinct promoters, a σA-recognized upstream promoter Pv during growth, and a σH-recognized downstream promoter Ps during starvation, and appears to be autoregulated by four Spo0A~P binding sites (0A1-4 boxes) localized between two promoters. However, the autoregulatory mechanisms and their impact on differentiation remain elusive. Here, we determined the relative affinity of Spo0A~P for each 0A box and dissected each promoter in combination with the systematic 0A box mutations. The data revealed that (1) the Pv and Ps promoters are on and off, respectively, under nutrient-rich conditions without Spo0A~P, (2) the Ps promoter is activated by first 0A3 and then 0A1 during early starvation with low Spo0A~P, (3) during later starvation with high Spo0A~P, the Pv promoter is repressed by first 0A1 and then 0A2 and 0A4, and (4) during prolonged starvation, both promoters are silenced by all 0A boxes with very high Spo0A~P. Our results indicate that the autoregulation of spo0A is one of the key determinants to achieve a developmental increase in Spo0A~P, leading to a temporal window for entry into biofilm formation or sporulation.
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