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嗜热甲酸甲烷杆菌Z-245中甲酸脱氢酶(fdhCAB)操纵子的生长及底物依赖性转录

Growth- and substrate-dependent transcription of the formate dehydrogenase (fdhCAB) operon in Methanobacterium thermoformicicum Z-245.

作者信息

Nölling J, Reeve J N

机构信息

Department of Microbiology, The Ohio State University, Columbus 43210, USA.

出版信息

J Bacteriol. 1997 Feb;179(3):899-908. doi: 10.1128/jb.179.3.899-908.1997.

Abstract

The formate dehydrogenase-encoding fdhCAB operon and flanking genes have been cloned and sequenced from Methanobacterium thermoformicicum Z-245. fdh transcription was shown to be initiated 21 bp upstream from fdhC, although most fdh transcripts terminated or were processed between fdhC and fdhA. The resulting fdhC, fdhAB, and fdhCAB transcripts were present at all growth stages in cells growing on formate but were barely detectable during early exponential growth on H2 plus CO2. The levels of the fdh transcripts did, however, increase dramatically in cells growing on H2 plus CO2, coincident with the decrease in the growth rate and the onset of constant methanogenesis that occurred when culture densities reached an optical density at 600 nm of approximately 0.5. The mth transcript that encodes the H2-dependent methenyl-H4 MPT reductase (MTH) and the frh and mvh transcripts that encode the coenzyme F420-reducing (FRH) and nonreducing (MVH) hydrogenases, respectively, were also present in cells growing on formate, consistent with the synthesis of three hydrogenases, MTH, FRH, and MVH, in the absence of exogenously supplied H2. Reducing the H2 supply to M. thermoformicicum cells growing on H2 plus CO2 reduced the growth rate and CH4 production but increased frh and fdh transcription and also increased transcription of the mtd, mer, and mcr genes that encode enzymes that catalyze steps 4, 5, and 7, respectively, in the pathway of CO2 reduction to CH4. Reducing the H2 supply to a level insufficient for growth resulted in the disappearance of all methane gene transcripts except the mcr transcript, which increased. Regions flanking the fdhCAB operon in M. thermoformicicum Z-245 were used as probes to clone the homologous region from the Methanobacterium thermoautotrophicum deltaH genome. Sequencing revealed the presence of very similar genes except that the genome of M. thermoautotrophicum, a methanogen incapable of growth on formate, lacked the fdhCAB operon.

摘要

已从嗜热甲酸甲烷杆菌Z - 245中克隆并测序了编码甲酸脱氢酶的fdhCAB操纵子及其侧翼基因。fdh转录起始于fdhC上游21 bp处,不过大多数fdh转录本在fdhC和fdhA之间终止或进行了加工。产生的fdhC、fdhAB和fdhCAB转录本在以甲酸为碳源生长的细胞的所有生长阶段均存在,但在以H₂加CO₂为碳源的指数生长早期几乎检测不到。然而,在以H₂加CO₂为碳源生长的细胞中,fdh转录本水平会急剧增加,这与生长速率的下降以及当培养物密度达到600 nm处光密度约为0.5时甲烷生成速率恒定的起始阶段相吻合。编码依赖H₂的亚甲基 - H₄MPT还原酶(MTH)的mth转录本以及分别编码辅酶F₄₂₀还原型(FRH)和非还原型(MVH)氢化酶的frh和mvh转录本,在以甲酸为碳源生长的细胞中也存在,这与在无外源供应H₂的情况下合成三种氢化酶MTH、FRH和MVH相一致。减少在H₂加CO₂环境中生长的嗜热甲酸甲烷杆菌细胞的H₂供应,会降低生长速率和CH₄产量,但会增加frh和fdh转录,同时也会增加分别编码催化CO₂还原为CH₄途径中第4、5和7步反应的酶的mtd、mer和mcr基因的转录。将H₂供应减少到不足以支持生长的水平,会导致除mcr转录本增加外所有甲烷基因转录本消失。嗜热甲酸甲烷杆菌Z - 245中fdhCAB操纵子的侧翼区域被用作探针,从嗜热自养甲烷杆菌δH基因组中克隆同源区域。测序显示存在非常相似的基因,只是嗜热自养甲烷杆菌(一种不能以甲酸为碳源生长的产甲烷菌)的基因组缺乏fdhCAB操纵子。

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