Cimmino Lorenzo, Schmid Adrien W, Holliger Christof, Maillard Julien
Laboratory for Environmental Biotechnology, Institute for Environmental Engineering, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Protein Core Facility, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Front Microbiol. 2022 Feb 23;13:838026. doi: 10.3389/fmicb.2022.838026. eCollection 2022.
Organohalide respiration (OHR) is a bacterial anaerobic process that uses halogenated compounds, e.g., tetrachloroethene (PCE), as terminal electron acceptors. Our model organisms are strain PER-K23, an obligate OHR bacterium (OHRB), and strain TCE1, a bacterium with a versatile metabolism. The key enzyme is the PCE reductive dehalogenase (PceA) that is encoded in the highly conserved gene cluster () in both above-mentioned strains, and in other Firmicutes OHRB. To date, the functions of PceA and PceT, a dedicated molecular chaperone for the maturation of PceA, are well defined. However, the role of PceB and PceC are still not elucidated. We present a multilevel study aiming at deciphering the stoichiometry of individual gene products. The investigation was assessed at RNA level by reverse transcription and (quantitative) polymerase chain reaction, while at protein level, proteomic analyses based on parallel reaction monitoring were performed to quantify the Pce proteins in cell-free extracts as well as in soluble and membrane fractions of both strains using heavy-labeled reference peptides. At RNA level, our results confirmed the co-transcription of all genes, while the quantitative analysis revealed a relative stoichiometry of the gene transcripts of , and at ~ 1.0:3.0:0.1:0.1 in . This trend was not observed in strain TCE1, where no substantial difference was measured for the four genes. At proteomic level, an apparent 2:1 stoichiometry of PceA and PceB was obtained in the membrane fraction, and a low abundance of PceC in comparison to the other two proteins. In the soluble fraction, a 1:1 stoichiometry of PceA and PceT was identified. In summary, we show that the gene cluster is transcribed as an operon with, however, a level of transcription that differs for individual genes, an observation that could be explained by post-transcriptional events. Despite challenges in the quantification of integral membrane proteins such as PceB and PceC, the similar abundance of PceA and PceB invites to consider them as forming a membrane-bound PceAB protein complex, which, in contrast to the proposed model, seems to be devoid of PceC.
有机卤呼吸作用(OHR)是一种细菌厌氧过程,该过程利用卤代化合物,例如四氯乙烯(PCE)作为末端电子受体。我们的模式生物是菌株PER-K23,一种专性有机卤呼吸细菌(OHRB),以及菌株TCE1,一种具有多种代谢功能的细菌。关键酶是PCE还原脱卤酶(PceA),它在上述两种菌株以及其他厚壁菌门OHRB的高度保守基因簇()中编码。迄今为止,PceA和PceT(一种用于PceA成熟的专用分子伴侣)的功能已得到明确界定。然而,PceB和PceC的作用仍未阐明。我们开展了一项多层次研究,旨在解读各个基因产物的化学计量。该研究在RNA水平通过逆转录和(定量)聚合酶链反应进行评估,而在蛋白质水平,基于平行反应监测的蛋白质组学分析用于使用重标记参考肽对无细胞提取物以及两种菌株的可溶性和膜部分中的Pce蛋白进行定量。在RNA水平,我们的结果证实了所有基因的共转录,而定量分析显示在菌株PER-K23中,基因转录本、和的相对化学计量约为1.0:3.0:0.1:0.1。在菌株TCE1中未观察到这种趋势,该菌株中这四个基因未检测到实质性差异。在蛋白质组水平,在膜部分获得了PceA和PceB明显的2:1化学计量,并且与其他两种蛋白质相比,PceC的丰度较低。在可溶性部分,鉴定出PceA和PceT的1:1化学计量。总之,我们表明基因簇作为一个操纵子转录,然而,各个基因的转录水平不同,这一观察结果可以通过转录后事件来解释。尽管在定量诸如PceB和PceC等整合膜蛋白方面存在挑战,但PceA和PceB的相似丰度促使人们认为它们形成了一种膜结合的PceAB蛋白复合物,与提出的模型相反,该复合物似乎不含PceC。