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Differential regulation by ppGpp versus pppGpp in Escherichia coli

机译:ppGpp与pppGpp在大肠杆菌中的差异调节

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Both ppGpp and pppGpp are thought to function collectively as second messengers for many complex cellular responses to nutritional stress throughout biology. There are few indications that their regulatory effects might be different; however, this question has been largely unexplored for lack of an ability to experimentally manipulate the relative abundance of ppGpp and pppGpp. Here, we achieve preferential accumulation of either ppGpp or pppGpp with Escherichia coli strains through induction of different Streptococcal (p)ppGpp synthetase fragments. In addition, expression of E. coli GppA, a pppGpp 5-gamma phosphate hydrolase that converts pppGpp to ppGpp, is manipulated to fine tune differential accumulation of ppGpp and pppGpp. In vivo and in vitro experiments show that pppGpp is less potent than ppGpp with respect to regulation of growth rate, RNA/DNA ratios, ribosomal RNA P1 promoter transcription inhibition, threonine operon promoter activation and RpoS induction. To provide further insights into regulation by (p)ppGpp, we have also determined crystal structures of E. coli RNA polymerase-**70 holoenzyme with ppGpp and pppGpp. We find that both nucleotides bind to a site at the interface between beta and omega subunits.
机译:ppGpp和pppGpp都被认为在整个生物学中共同充当第二信使,以应对许多复杂的细胞对营养压力的细胞反应。几乎没有迹象表明它们的监管作用可能有所不同;然而,由于缺乏实验性地控制ppGpp和pppGpp相对丰度的能力,这个问题尚未得到充分探讨。在这里,我们通过诱导不同的链球菌(p)ppGpp合成酶片段,实现了ppGpp或pppGpp与大肠杆菌菌株的优先积累。另外,操纵大肠杆菌GppA(一种将pppGpp转换为ppGpp的pppGpp5-γ磷酸水解酶)的表达以微调ppGpp和pppGpp的差异积累。体内和体外实验表明,就生长速率,RNA / DNA比例,核糖体RNA P1启动子转录抑制,苏氨酸操纵子启动子激活和RpoS诱导调控而言,pppGpp的效力不如ppGpp。为了进一步了解(p)ppGpp的调控作用,我们还确定了带有ppGpp和pppGpp的大肠杆菌RNA聚合酶** 70全酶的晶体结构。我们发现这两个核苷酸都结合到β和ω亚基之间的接口上的站点。

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