Rutherford Steven T, Lemke Justin J, Vrentas Catherine E, Gaal Tamas, Ross Wilma, Gourse Richard L
Department of Bacteriology, University of Wisconsin-Madison, 420 Henry Mall, Madison, WI 53706, USA.
J Mol Biol. 2007 Mar 2;366(4):1243-57. doi: 10.1016/j.jmb.2006.12.013. Epub 2006 Dec 12.
Escherichia coli DksA, GreA, and GreB have similar structures and bind to the same location on RNA polymerase (RNAP), the secondary channel. We show that GreB can fulfil some roles of DksA in vitro, including shifting the promoter-open complex equilibrium in the dissociation direction, thus allowing rRNA promoters to respond to changes in the concentration of ppGpp and NTPs. However, unlike deletion of the dksA gene, deletion of greB had no effect on rRNA promoters in vivo. We show that the apparent affinities of DksA and GreB for RNAP are similar, but the cellular concentration of GreB is much lower than that of DksA. When over-expressed and in the absence of competing GreA, GreB almost completely complemented the loss of dksA in control of rRNA expression, indicating its inability to regulate rRNA transcription in vivo results primarily from its low concentration. In contrast to GreB, the apparent affinity of GreA for RNAP was weaker than that of DksA, GreA affected rRNA promoters only modestly in vitro and, even when over-expressed, GreA did not affect rRNA transcription in vivo. Thus, binding in the secondary channel is necessary but insufficient to explain the effect of DksA on rRNA transcription. Neither Gre factor was capable of fulfilling two other functions of DksA in transcription initiation: co-activation of amino acid biosynthetic gene promoters with ppGpp and compensation for the loss of the omega subunit of RNAP in the response of rRNA promoters to ppGpp. Our results provide important clues to the mechanisms of both negative and positive control of transcription initiation by DksA.
大肠杆菌的DksA、GreA和GreB具有相似的结构,并结合在RNA聚合酶(RNAP)的同一位置,即二级通道。我们发现,GreB在体外可以发挥DksA的一些作用,包括使启动子开放复合物平衡向解离方向移动,从而使rRNA启动子能够响应ppGpp和NTP浓度的变化。然而,与缺失dksA基因不同,缺失greB在体内对rRNA启动子没有影响。我们发现,DksA和GreB对RNAP的表观亲和力相似,但GreB的细胞浓度远低于DksA。当过量表达且不存在竞争性的GreA时,GreB几乎完全弥补了dksA缺失对rRNA表达的控制,表明其在体内无法调节rRNA转录主要是由于其浓度较低。与GreB相反,GreA对RNAP的表观亲和力弱于DksA,GreA在体外对rRNA启动子的影响较小,即使过量表达,GreA在体内也不影响rRNA转录。因此,结合在二级通道是必要的,但不足以解释DksA对rRNA转录的影响。两种Gre因子都不能在转录起始中发挥DksA的另外两个功能:与ppGpp共同激活氨基酸生物合成基因启动子以及在rRNA启动子对ppGpp的反应中补偿RNAP的ω亚基缺失。我们的结果为DksA对转录起始进行负调控和正调控的机制提供了重要线索。