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双功能RelA/SpoT同源物中相对活性位点之间的构象拮抗作用在严谨反应过程中调节(p)ppGpp代谢[校正后] 。

Conformational antagonism between opposing active sites in a bifunctional RelA/SpoT homolog modulates (p)ppGpp metabolism during the stringent response [corrected].

作者信息

Hogg Tanis, Mechold Undine, Malke Horst, Cashel Mike, Hilgenfeld Rolf

机构信息

Laboratory of Molecular Genetics, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Cell. 2004 Apr 2;117(1):57-68. doi: 10.1016/s0092-8674(04)00260-0.

Abstract

Enzymes of the Rel/Spo family enable bacteria to survive prolonged periods of nutrient limitation by producing an intracellular signaling alarmone, (p)ppGpp, which triggers the so-called stringent response. Both the synthesis of (p)ppGpp from ATP and GDP(GTP), and its hydrolysis to GDP(GTP) and pyrophosphate, are catalyzed by Rel/Spo proteins. The 2.1 A crystal structure of the bifunctional catalytic fragment of the Rel/Spo homolog from Streptococcus dysgalactiae subsp. equisimilis, Rel(Seq), reveals two conformations of the enzyme corresponding to known reciprocal activity states: (p)ppGpp-hydrolase-OFF/(p)ppGpp-synthetase-ON and hydrolase-ON/synthetase-OFF. The hydrolase and synthetase domains bear remarkable similarities to the catalytic domains of the cyclic phosphodiesterase and nucleotidyltransferase superfamilies, respectively. The active sites, separated by more than 30 A, contain bound nucleotides including an unusual (p)ppGpp derivative, GDP-2':3'-cyclic monophosphate. Reciprocal regulation of the antagonistic catalytic activities, suggested by the structure, is supported by mutagenesis experiments and appears to involve ligand-induced signal transmission between the two active sites.

摘要

Rel/Spo家族的酶使细菌能够通过产生一种细胞内信号警报素(p)ppGpp来在长期营养限制条件下存活,该警报素触发所谓的严谨反应。从ATP和GDP(GTP)合成(p)ppGpp以及将其水解为GDP(GTP)和焦磷酸,均由Rel/Spo蛋白催化。来自马链球菌兽疫亚种的Rel/Spo同源物的双功能催化片段Rel(Seq)的2.1埃晶体结构揭示了该酶的两种构象,分别对应于已知的相互活性状态:(p)ppGpp水解酶关闭/(p)ppGpp合成酶开启以及水解酶开启/合成酶关闭。水解酶结构域和合成酶结构域分别与环磷酸二酯酶和核苷酸转移酶超家族的催化结构域具有显著相似性。活性位点相隔超过30埃,包含结合的核苷酸,其中包括一种不寻常的(p)ppGpp衍生物,即GDP - 2':3'-环一磷酸。结构表明的拮抗催化活性的相互调节得到了诱变实验的支持,并且似乎涉及两个活性位点之间的配体诱导信号传递。

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