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We found that the hfq::cat mutant strain produced minicells at high frequency. Minicell production by the mutant strain was more prominent in poor media and in the stationary phase than in rich media and in the exponentially growing phase. The amount of the cell division protein FtsZ increased up to two- to threefold of the wild-type cells in the hfq::cat mutant in the stationary phase, while such differences were not observed in the exponentially growing phase. Increased ftsZ mRNA levels were also observed in the hfq::cat mutant in the stationary phase. These results suggest a negative regulatory role of the DNA-, RNA-binding protein Hfq in cell division in the stationary phase.  相似文献   

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Glucose is a carbon source that is capable of modulating the level of cyclic AMP (cAMP)-regulated genes. In the present study, we found that the stability of ompA mRNA was reduced in Escherichia coli when glucose (40 mM) was present in Luria-Bertani (LB) medium. This effect was associated with a low level of cAMP induced by the glucose. The results were confirmed with an adenylyl cyclase mutant with low levels of cAMP that are not modulated by glucose. Northern blot and Western blot analyses revealed that the host factor I (Hfq) (both mRNA and protein) levels were downregulated in the presence of cAMP. Furthermore, we showed that a complex of cAMP receptor protein (CRP) and cAMP binds to a specific P3(hfq) promoter region of hfq and regulates hfq expression. The regulation of the hfq gene was confirmed in vivo using an hfq-deficient mutant transformed with an exogenous hfq gene containing the promoter. These results demonstrated that expression of hfq was repressed by the CRP-cAMP complex. The presence of glucose resulted in increased Hfq protein levels, which decreased ompA mRNA stability. An additional experiment showed that cAMP also increased the stability of fur mRNA. Taken together, these results suggested that the repression of Hfq by cAMP may contribute to the stability of other mRNA in E. coli.  相似文献   

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Hfq(host factor for RNA phage QB replicase)蛋白是一个全局性调节因子,广泛参与细菌生长、趋化、毒力、耐药及应对外界选择压力等方面的调节,但在肺炎克雷伯菌(Klebsiella pneumoniae,KP)中的功能尚不清楚。本研究从临床病例中分离到59株KP,将其hfq基因与11例常见临床感染菌株hfq基因〔从美国国立生物技术信息中心(National Center for Biotechnology Information, NCBI)数据库下载〕进行了比较。所有hfq基因经EMBOSS Transeq翻译成氨基酸序列,用MAFFT软件进行多序列比对,并通过NCBI数据库中的保守结构域预测Hfq蛋白结构域。分别采用ESPript3.0、Phyre2分析Hfq蛋白的二、三级结构。59株KP中仅3株hfq基因的5个密码子位点存在差异,而其蛋白质氨基酸序列完全一致。KP与大肠埃希菌、阴沟肠杆菌、痢疾志贺菌之间,Hfq蛋白的氨基酸序列相似度较高,主要区别在C末端上;与金黄色葡萄球菌、产单核细胞李斯特菌相比,KP Hfq蛋白在N末端和C末端上差别较大;所有菌株C末端均呈酸性。三级结构预测提示68(66.67%)个氨基酸与模板序列一致, 较为保守的功能结构为54-VYKHAI-59序列。采用CRISPR/Cas9同源重组技术敲除KP的hfq基因,并对其进行药物敏感性测试,结果显示,基因敲除菌株对抗生素的耐药性较野生株有显著下降(P<0.05),差异有统计学意义,提示KP的Hfq蛋白氨基酸序列非常保守,可能参与了KP的耐药调节。  相似文献   

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目的:建立RNA免疫共沉淀方法,为鼠疫耶尔森菌Hfq蛋白相关非编码小RNA(sRNA)提供体内验证方法。方法:首先在RNA结合蛋白Hfq下游加入Flag标签,用Flag标签抗体进行免疫共沉淀,获得蛋白-RNA复合物,然后从沉淀的蛋白-RNA复合物中分离得到纯化的RNA;通过Western印迹检测各步骤Hfq蛋白的表达,再利用Northern印迹检测目的sRNA--RyhB1和RyhB2。结果:构建了带有Flag标签的RNA结合蛋白Hfq的载体,此载体转导入hfq缺失株后与鼠疫菌野生株的生长曲线无明显差异;通过RNA-蛋白免疫共沉淀技术鉴定出已知与鼠疫菌Hfq蛋白结合的2个sRNA--RyhB1和RyhB2。结论:建立了利用RNA-蛋白免疫共沉淀鉴定与鼠疫菌Hfq蛋白结合的sRNA的技术,为细菌sRNA的验证、功能研究和体内蛋白质与RNA相互作用研究提供了有利工具。  相似文献   

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Mutation of gltB (encoding glutamate oxoglutarate amidotransferase or GOGAT) in RU2307 increased the intracellular Gln:Glu ratio and inhibited amino acid transport via Aap and Bra. The mechanism probably involves global post-translational inhibition independent of Ntr. Transport was separately restored by increased gene expression of Aap or heterologous transporters. Likewise, second site suppressor mutations in the RNA chaperone Hfq elevated transport by Aap and Bra by increasing mRNA levels. Microarrays showed Hfq regulates 34 ABC transporter genes, including aap, bra and opp. The genes coding for integral membrane proteins and ABC subunits aapQMP braDEFGC were more strongly elevated in the hfq mutants than solute-binding proteins (aapJ braC). aapQMP and braDEFG are immediately downstream of stem-loops, indicating Hfq attenuates downstream translation and stability of mRNA, explaining differential expression of ABC genes. RU2307 nodulated peas and bacteria grew down infection threads, but bacteroid development was arrested and N(2) was not fixed. This probably results from an inability to synthesize or transport amino acids. However, GOGAT and GOGAT/AldA double mutants carrying suppressor mutations that increased amino acid uptake fixed N(2) on pea plants. Thus de novo ammonium assimilation into amino acids is unnecessary in bacteroids demonstrating sufficient amino acids are supplied by plants.  相似文献   

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