Fernández Martínez Lorena, Bishop Amy, Parkes Lindsay, Del Sol Ricardo, Salerno Paola, Sevcikova Beatrica, Mazurakova Vladislava, Kormanec January, Dyson Paul
Institute of Life Science, School of Medicine, Swansea University, Singleton Park, Swansea SA28PP, UK.
Mol Microbiol. 2009 Mar;71(5):1250-62. doi: 10.1111/j.1365-2958.2009.06599.x. Epub 2009 Jan 19.
As free-living non-motile saprophytes, Streptomyces need to adapt to a wide range of environmental conditions and this is reflected by an enormous diversity of regulatory proteins encoded by, for example, the genome of the model streptomycete Streptomyces coelicolor. In this organism, we have identified a new osmoregulation gene, osaC, encoding a member of a novel family of regulatory proteins. Members of the family have a predicted domain composition consisting of an N-terminal kinase domain related to anti-sigma factors, sensory Pas and Gaf domains, and a C-terminal phosphatase domain. osaC is linked to the response regulator gene osaB; expression analysis of the latter revealed that it is induced after osmotic stress in a sigma(B)-dependent manner. OsaC is required to return osaB and sigB expression back to constitutive levels after osmotic stress. From analysis of the activities of OsaC(DeltaPho), lacking the C-terminal phosphatase domain, and OsaC(N92A), with a substitution of a critical asparagine residue in the kinase domain, we infer that this N-terminal domain functions as a sigma(B) anti-sigma factor. Indeed, co-purification experiments indicate association of OsaC and sigma(B). These results support a model for post-osmotic stress modulation of sigma(B) activity by OsaC.
作为自由生活的无运动能力腐生菌,链霉菌需要适应广泛的环境条件,这一点体现在例如模式链霉菌天蓝色链霉菌基因组所编码的大量多样的调控蛋白上。在这种生物体中,我们鉴定出了一个新的渗透调节基因osaC,它编码一种新型调控蛋白家族的成员。该家族成员具有预测的结构域组成,包括一个与抗σ因子相关的N端激酶结构域、感觉Pas和Gaf结构域,以及一个C端磷酸酶结构域。osaC与应答调节基因osaB相连;对后者的表达分析表明,它在渗透胁迫后以依赖σ(B)的方式被诱导。在渗透胁迫后,需要OsaC将osaB和sigB的表达恢复到组成型水平。通过对缺失C端磷酸酶结构域的OsaC(DeltaPho)和激酶结构域中关键天冬酰胺残基被取代的OsaC(N92A)的活性分析,我们推断这个N端结构域作为一个σ(B)抗σ因子发挥作用。事实上,共纯化实验表明OsaC和σ(B)存在关联。这些结果支持了一个由OsaC对渗透胁迫后σ(B)活性进行调节的模型。