Department of Bacteriology, University of Wisconsin at Madison, Madison, WI 53706, USA.
Genes Dev. 2012 Dec 1;26(23):2634-46. doi: 10.1101/gad.204693.112.
Escherichia coli DksA is a transcription factor that binds to RNA polymerase (RNAP) without binding to DNA, destabilizing RNAP-promoter interactions, sensitizing RNAP to the global regulator ppGpp, and regulating transcription of several hundred target genes, including those encoding rRNA. Previously, we described promoter sequences and kinetic properties that account for DksA's promoter specificity, but how DksA exerts its effects on RNAP has remained unclear. To better understand DksA's mechanism of action, we incorporated benzoyl-phenylalanine at specific positions in DksA and mapped its cross-links to RNAP, constraining computational docking of the two proteins. The resulting evidence-based model of the DksA-RNAP complex as well as additional genetic and biochemical approaches confirmed that DksA binds to the RNAP secondary channel, defined the orientation of DksA in the channel, and predicted a network of DksA interactions with RNAP that includes the rim helices and the mobile trigger loop (TL) domain. Engineered cysteine substitutions in the TL and DksA coiled-coil tip generated a disulfide bond between them, and the interacting residues were absolutely required for DksA function. We suggest that DksA traps the TL in a conformation that destabilizes promoter complexes, an interaction explaining the requirement for the DksA tip and its effects on transcription.
大肠杆菌 DksA 是一种转录因子,它与 RNA 聚合酶(RNAP)结合而不与 DNA 结合,使 RNAP-启动子相互作用不稳定,使 RNAP 对全局调节剂 ppGpp 敏感,并调节数百个靶基因的转录,包括编码 rRNA 的基因。以前,我们描述了可以解释 DksA 启动子特异性的启动子序列和动力学特性,但 DksA 如何对 RNAP 发挥作用仍不清楚。为了更好地理解 DksA 的作用机制,我们在 DksA 中的特定位置掺入了苯甲酰苯丙氨酸,并将其交联映射到 RNAP 上,从而限制了这两种蛋白质的计算对接。由此产生的基于证据的 DksA-RNAP 复合物模型以及其他遗传和生化方法证实,DksA 结合到 RNAP 的二级通道,定义了 DksA 在通道中的取向,并预测了 DksA 与 RNAP 的相互作用网络,包括边缘螺旋和可移动触发环(TL)结构域。在 TL 和 DksA 卷曲螺旋尖端处设计的半胱氨酸取代产生了它们之间的二硫键,并且相互作用的残基绝对是 DksA 功能所必需的。我们认为,DksA 将 TL 捕获在一种使启动子复合物不稳定的构象中,这种相互作用解释了 DksA 尖端的要求及其对转录的影响。