Departamento de Genética y Microbiología, Área de Genética (Unidad Asociada al IQFR-CSIC), Facultad de Biología, Universidad de Murcia, Murcia, Spain.
Environ Microbiol. 2014 Aug;16(8):2475-90. doi: 10.1111/1462-2920.12386. Epub 2014 Feb 20.
Extracytoplasmic function (ECF) σ factors are critical players in signal transduction networks involved in bacterial response to environmental changes. The Myxococcus xanthus genome reveals ∼45 putative ECF-σ factors, but for the overwhelming majority, the specific signals or mechanisms for selective activation and regulation remain unknown. One well-studied ECF-σ, CarQ, binds to its anti-σ, CarR, and is inactive in the dark but drives its own expression from promoter P(QRS) on illumination. This requires the CarD/CarG complex, the integration host factor (IHF) and a specific CarD-binding site upstream of P(QRS). Here, we show that DdvS, a previously uncharacterized ECF-σ, activates its own expression in a CarD/CarG-dependent manner but is inhibited when specifically bound to the N-terminal zinc-binding anti-σ domain of its cognate anti-σ, DdvA. Interestingly, we find that the autoregulatory action of 11 other ECF-σ factors studied here depends totally or partially on CarD/CarG but not IHF. In silico analysis revealed possible CarD-binding sites that may be involved in direct regulation by CarD/CarG of target promoter activity. CarD/CarG-linked ECF-σ regulation likely recurs in other myxobacteria with CarD/CarG orthologous pairs and could underlie, at least in part, the global regulatory effect of the complex on M. xanthus gene expression.
细胞外功能 (ECF) σ 因子是参与细菌对外界环境变化响应的信号转导网络中的关键参与者。粘细菌 Myxococcus xanthus 的基因组揭示了约 45 个假定的 ECF-σ 因子,但对于绝大多数因子来说,其特异性信号或选择性激活和调节的机制仍不清楚。一个研究得很好的 ECF-σ 因子 CarQ 与它的反-σ 因子 CarR 结合,在黑暗中是无活性的,但在光照下可以从启动子 P(QRS) 驱动其自身的表达。这需要 CarD/CarG 复合物、整合宿主因子 (IHF) 和 P(QRS) 上游的特定 CarD 结合位点。在这里,我们表明,以前未被表征的 ECF-σ 因子 DdvS 以 CarD/CarG 依赖的方式激活其自身的表达,但当被其同源反-σ 因子 DdvA 的 N 端锌结合反-σ 结构域特异性结合时会受到抑制。有趣的是,我们发现,在这里研究的 11 个其他 ECF-σ 因子的自身调节作用完全或部分依赖于 CarD/CarG,但不依赖于 IHF。计算机分析显示,可能存在 CarD 结合位点,可能参与 CarD/CarG 对靶启动子活性的直接调节。CarD/CarG 连接的 ECF-σ 因子调节可能在具有 CarD/CarG 同源对的其他粘细菌中重现,并且至少部分地可以解释该复合物对 M. xanthus 基因表达的全局调控作用。