Magnin T, Lord M, Yudkin M D
Department of Biochemistry, University of Oxford, United Kingdom.
J Bacteriol. 1997 Jun;179(12):3922-7. doi: 10.1128/jb.179.12.3922-3927.1997.
sigmaF, the first compartment-specific transcription factor in sporulating Bacillus subtilis, is negatively regulated by an anti-sigma factor, SpoIIAB. SpoIIAB has an alternative binding partner, SpoIIAA. To see whether (as has been proposed) SpoIIAB's binding preference for SpoIIAA or sigmaF depends on the nature of the adenine nucleotide present, we used surface plasmon resonance to measure the dissociation constants of the three complexes SpoIIAA-SpoIIAB-ADP, sigmaF-SpoIIAB-ADP, and sigmaF-SpoIIAB-ATP. The results suggested that SpoIIAB's choice of binding partner is unlikely to depend on the ATP/ADP ratio in the cell. The intracellular concentrations of sigmaF, SpoIIAB, SpoIIAA, and SpoIIAA-phosphate (SpoIIAA-P) were measured by quantitative immunoblotting between 0 and 3 h after the beginning of sporulation (t0 to t3). sigmaF and SpoIIAB were barely detectable at t0, but their concentrations increased in parallel to reach maxima at about t1.5. SpoIIAA-P increased steadily to a maximum at t3, but nonphosphorylated SpoIIAA was detectable only from t1.5, reached a maximum at t2.5, and then declined. Kinetic studies of the phosphorylation of SpoIIAA catalyzed by SpoIIAB suggested that the reaction was limited by a very slow release of one of the products (SpoIIAA-P or ADP) from SpoIIAB, with a turnover of about once per 20 min. This remarkable kinetic property provides an unexpected mechanism for the regulation of sigmaF. We propose that when SpoIIE (which dephosphorylates SpoIIAA-P) is active at the same time as SpoIIAB, SpoIIAA cycles repeatedly between the phosphorylated and nonphosphorylated forms. This cycling sequesters SpoIIAB in a long-lived complex and prevents it from inhibiting sigmaF.
σF是枯草芽孢杆菌孢子形成过程中第一个具有区室特异性的转录因子,它受到抗σ因子SpoIIAB的负调控。SpoIIAB有一个替代结合伴侣SpoIIAA。为了探究(正如所提出的那样)SpoIIAB对SpoIIAA或σF的结合偏好是否取决于存在的腺嘌呤核苷酸的性质,我们使用表面等离子体共振来测量三种复合物SpoIIAA - SpoIIAB - ADP、σF - SpoIIAB - ADP和σF - SpoIIAB - ATP的解离常数。结果表明,SpoIIAB对结合伴侣的选择不太可能取决于细胞内的ATP/ADP比值。通过定量免疫印迹法在孢子形成开始后0至3小时(t0至t3)测量了σF、SpoIIAB、SpoIIAA和磷酸化SpoIIAA(SpoIIAA - P)的细胞内浓度。在t0时几乎检测不到σF和SpoIIAB,但它们的浓度平行增加,在约t1.5时达到最大值。SpoIIAA - P在t3时稳定增加至最大值,但非磷酸化的SpoIIAA仅从t1.5开始可检测到,在t2.5时达到最大值,然后下降。对SpoIIAB催化SpoIIAA磷酸化的动力学研究表明,该反应受SpoIIAB释放其中一种产物(SpoIIAA - P或ADP)的速度非常缓慢的限制,周转次数约为每20分钟一次。这种显著的动力学特性为σF的调控提供了一种意想不到的机制。我们提出,当SpoIIE(使SpoIIAA - P去磷酸化)与SpoIIAB同时活跃时,SpoIIAA在磷酸化和非磷酸化形式之间反复循环。这种循环将SpoIIAB隔离在一个长寿复合物中,并阻止其抑制σF。