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DksA在翻译水平上影响ppGpp对RpoS的诱导作用。

DksA affects ppGpp induction of RpoS at a translational level.

作者信息

Brown Larissa, Gentry Daniel, Elliott Thomas, Cashel Michael

机构信息

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

出版信息

J Bacteriol. 2002 Aug;184(16):4455-65. doi: 10.1128/JB.184.16.4455-4465.2002.

Abstract

The RpoS sigma factor (also called sigmaS or sigma38) is known to regulate at least 50 genes in response to environmental sources of stress or during entry into stationary phase. Regulation of RpoS abundance and activity is complex, with many factors participating at multiple levels. One factor is the nutritional stress signal ppGpp. The absence of ppGpp blocks or delays the induction of rpoS during entry into stationary phase. Artificially inducing ppGpp, without starvation, is known to induce rpoS during the log phase 25- to 50-fold. Induction of ppGpp is found to have only minor effects on rpoS transcript abundance or on RpoS protein stability; instead, the efficiency of rpoS mRNA translation is increased by ppGpp as judged by both RpoS pulse-labeling and promoter-independent effects on lacZ fusions. DksA is found to affect RpoS abundance in a manner related to ppGpp. Deleting dksA blocks rpoS induction by ppGpp. Overproduction of DksA induces rpoS but not ppGpp. Deleting dksA neither alters regulation of ppGpp in response to amino acid starvation nor nullifies the inhibitory effects of ppGpp on stable RNA synthesis. Although this suggests that dksA is epistatic to ppGpp, inducing ppGpp does not induce DksA. A dksA deletion does display a subset of the same multiple-amino-acid requirements found for ppGpp(0) mutants, but overproducing DksA does not satisfy ppGpp(0) requirements. Sequenced spontaneous extragenic suppressors of dksA polyauxotrophy are frequently the same T563P rpoB allele that suppresses a ppGpp(0) phenotype. We propose that DksA functions downstream of ppGpp but indirectly regulates rpoS induction.

摘要

RpoS 西格玛因子(也称为西格玛 S 或西格玛 38)已知可响应环境应激源或进入稳定期时调控至少 50 个基因。RpoS 丰度和活性的调控很复杂,有许多因素在多个层面发挥作用。一个因素是营养应激信号 ppGpp。ppGpp 的缺失会阻碍或延迟进入稳定期时 rpoS 的诱导。已知在对数期人工诱导 ppGpp(无需饥饿)可使 rpoS 诱导 25 至 50 倍。发现 ppGpp 的诱导对 rpoS 转录本丰度或 RpoS 蛋白稳定性影响较小;相反,通过 RpoS 脉冲标记和对 lacZ 融合体的非启动子依赖性效应判断,ppGpp 可提高 rpoS mRNA 的翻译效率。发现 DksA 以与 ppGpp 相关的方式影响 RpoS 丰度。删除 dksA 会阻碍 ppGpp 对 rpoS 的诱导。过量表达 DksA 可诱导 rpoS,但不会诱导 ppGpp。删除 dksA 既不会改变 ppGpp 对氨基酸饥饿的响应调控,也不会消除 ppGpp 对稳定 RNA 合成的抑制作用。尽管这表明 dksA 对 ppGpp 呈上位性,但诱导 ppGpp 并不会诱导 DksA。dksA 缺失确实表现出与 ppGpp(0) 突变体相同的部分多氨基酸需求,但过量表达 DksA 并不能满足 ppGpp(0) 的需求。dksA 多营养缺陷型的测序自发基因外抑制子通常是抑制 ppGpp(0) 表型的相同 T56³P rpoB 等位基因。我们提出 DksA 在 ppGpp 的下游起作用,但间接调控 rpoS 的诱导。

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