Suppr超能文献

氧气限制调节大肠杆菌K-12中分解代谢、氢化酶、多药转运蛋白的pH调节以及包膜组成。

Oxygen limitation modulates pH regulation of catabolism and hydrogenases, multidrug transporters, and envelope composition in Escherichia coli K-12.

作者信息

Hayes Everett T, Wilks Jessica C, Sanfilippo Piero, Yohannes Elizabeth, Tate Daniel P, Jones Brian D, Radmacher Michael D, BonDurant Sandra S, Slonczewski Joan L

机构信息

Department of Biology, Kenyon College, Gambier, OH 43022, USA.

出版信息

BMC Microbiol. 2006 Oct 6;6:89. doi: 10.1186/1471-2180-6-89.

Abstract

BACKGROUND

In Escherichia coli, pH regulates genes for amino-acid and sugar catabolism, electron transport, oxidative stress, periplasmic and envelope proteins. Many pH-dependent genes are co-regulated by anaerobiosis, but the overall intersection of pH stress and oxygen limitation has not been investigated.

RESULTS

The pH dependence of gene expression was analyzed in oxygen-limited cultures of E. coli K-12 strain W3110. E. coli K-12 strain W3110 was cultured in closed tubes containing LBK broth buffered at pH 5.7, pH 7.0, and pH 8.5. Affymetrix array hybridization revealed pH-dependent expression of 1,384 genes and 610 intergenic regions. A core group of 251 genes showed pH responses similar to those in a previous study of cultures grown with aeration. The highly acid-induced gene yagU was shown to be required for extreme-acid resistance (survival at pH 2). Acid also up-regulated fimbriae (fimAC), periplasmic chaperones (hdeAB), cyclopropane fatty acid synthase (cfa), and the "constitutive" Na+/H+ antiporter (nhaB). Base up-regulated core genes for maltodextrin transport (lamB, mal), ATP synthase (atp), and DNA repair (recA, mutL). Other genes showed opposite pH responses with or without aeration, for example ETS components (cyo,nuo, sdh) and hydrogenases (hya, hyb, hyc, hyf, hyp). A hypF strain lacking all hydrogenase activity showed loss of extreme-acid resistance. Under oxygen limitation only, acid down-regulated ribosome synthesis (rpl,rpm, rps). Acid up-regulated the catabolism of sugar derivatives whose fermentation minimized acid production (gnd, gnt, srl), and also a cluster of 13 genes in the gadA region. Acid up-regulated drug transporters (mdtEF, mdtL), but down-regulated penicillin-binding proteins (dacACD, mreBC). Intergenic regions containing regulatory sRNAs were up-regulated by acid (ryeA, csrB, gadY, rybC).

CONCLUSION

pH regulates a core set of genes independently of oxygen, including yagU, fimbriae, periplasmic chaperones, and nhaB. Under oxygen limitation, however, pH regulation is reversed for genes encoding electron transport components and hydrogenases. Extreme-acid resistance requires yagU and hydrogenase production. Ribosome synthesis is down-regulated at low pH under oxygen limitation, possibly due to the restricted energy yield of catabolism. Under oxygen limitation, pH regulates metabolism and transport so as to maximize alternative catabolic options while minimizing acidification or alkalinization of the cytoplasm.

摘要

背景

在大肠杆菌中,pH值调节氨基酸和糖分解代谢、电子传递、氧化应激、周质和包膜蛋白的相关基因。许多pH依赖型基因受厌氧状态共同调控,但pH应激与氧限制的整体交叉情况尚未得到研究。

结果

分析了大肠杆菌K-12菌株W3110在氧限制培养条件下基因表达的pH依赖性。将大肠杆菌K-12菌株W3110培养在封闭管中,管内含有pH值分别为5.7、7.0和8.5的LBK缓冲肉汤。Affymetrix芯片杂交显示,1384个基因和610个基因间区域的表达具有pH依赖性。一组核心的251个基因表现出与之前通气培养研究中相似的pH响应。高度酸诱导基因yagU被证明是极端耐酸性(在pH 2下存活)所必需的。酸还上调了菌毛(fimAC)、周质伴侣蛋白(hdeAB)、环丙烷脂肪酸合酶(cfa)以及“组成型”Na+/H+反向转运蛋白(nhaB)。碱上调了麦芽糖糊精转运的核心基因(lamB、mal)、ATP合酶(atp)以及DNA修复基因(recA、mutL)。其他基因在有或无通气条件下表现出相反的pH响应,例如电子传递链组分(cyo、nuo、sdh)和氢化酶(hya、hyb、hyc、hyf、hyp)。一个缺乏所有氢化酶活性的hypF菌株表现出极端耐酸性的丧失。仅在氧限制条件下,酸下调核糖体合成(rpl、rpm、rps)。酸上调了其发酵使产酸最小化的糖衍生物的分解代谢(gnd、gnt、srl),以及gadA区域的一组13个基因。酸上调药物转运蛋白(mdtEF、mdtL),但下调青霉素结合蛋白(dacACD、mreBC)。含有调控性小RNA的基因间区域被酸上调(ryeA、csrB、gadY、rybC)。

结论

pH值独立于氧调节一组核心基因,包括yagU、菌毛、周质伴侣蛋白和nhaB。然而,在氧限制条件下,编码电子传递链组分和氢化酶的基因的pH调节发生逆转。极端耐酸性需要yagU和氢化酶的产生。在氧限制条件下,低pH值会下调核糖体合成,这可能是由于分解代谢的能量产生受限。在氧限制条件下,pH值调节代谢和转运,以最大化替代分解代谢途径,同时最小化细胞质的酸化或碱化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b55/1626474/301fa8390819/1471-2180-6-89-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验