Pratt L A, Silhavy T J
Department of Molecular Biology, Princeton University, NJ 08544, USA.
Mol Microbiol. 1998 Sep;29(5):1225-36. doi: 10.1046/j.1365-2958.1998.01007.x.
RpoS, an alternative primary sigma factor, has been shown to be regulated at multiple levels, including transcription, translation and protein stability. Here, we present evidence that suggests that RpoS is regulated at yet another level by the product of the crl gene. The crl gene was first thought to encode the major curlin subunit of curli (curli are surface structures that are induced by growth into stationary phase under conditions of low osmolarity and low temperature). Later, it was determined that crl actually contributes in a positive fashion to stimulate transcription of csgBA, the true locus encoding for the major subunit of curli. RpoS is also required for normal stationary-phase induction of csgBA. We found that lesions in crl, like lesions in rpoS, cause increased transcription of ompF during stationary phase. Taken together, these observations prompted us to analyse the effects of crl on an additional RpoS-regulated phenomenon. We found that a crl null allele influences expression of RpoS-regulated genes in a fashion similar to an rpoS null allele. Genetic evidence suggests that crl and rpoS function in a single pathway and that Crl functions upstream, or in concert with, RpoS. Although the effects of Crl on RpoS-regulated genes is entirely dependent on the integrity of RpoS, the presence of a crl null allele does not decrease the level of RpoS protein. Thus, we propose that Crl stimulates the activity of the RpoS regulon by stimulating RpoS activity during stationary phase.
RpoS是一种替代性的主要σ因子,已被证明在多个水平受到调控,包括转录、翻译和蛋白质稳定性。在此,我们提供的证据表明,RpoS在另一个水平上受到crl基因产物的调控。crl基因最初被认为编码卷曲菌毛的主要卷曲菌素亚基(卷曲菌毛是在低渗透压和低温条件下生长进入稳定期时诱导产生的表面结构)。后来确定,crl实际上以正向方式促进csgBA的转录,csgBA是编码卷曲菌毛主要亚基的真正基因座。RpoS也是csgBA正常稳定期诱导所必需的。我们发现,crl中的损伤,就像rpoS中的损伤一样,会导致稳定期ompF转录增加。综合这些观察结果,促使我们分析crl对另一种RpoS调控现象的影响。我们发现,crl无效等位基因以类似于rpoS无效等位基因的方式影响RpoS调控基因的表达。遗传证据表明,crl和rpoS在单一途径中发挥作用,且Crl在RpoS上游发挥作用或与RpoS协同发挥作用。尽管Crl对RpoS调控基因的影响完全依赖于RpoS的完整性,但crl无效等位基因的存在并不会降低RpoS蛋白的水平。因此,我们提出Crl通过在稳定期刺激RpoS活性来刺激RpoS调节子的活性。