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有机卤呼吸菌株DCB-2对各种能量代谢的蛋白质组适应性。

Proteome adaptations of the organohalide-respiring strain DCB-2 to various energy metabolisms.

作者信息

Willemin Mathilde Stéphanie, Hamelin Romain, Armand Florence, Holliger Christof, Maillard Julien

机构信息

Laboratory for Environmental Biotechnology (LBE), Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

Proteomic Core Facility (PCF), Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Front Microbiol. 2023 Jan 17;14:1058127. doi: 10.3389/fmicb.2023.1058127. eCollection 2023.

Abstract

INTRODUCTION

was isolated for its ability to use organohalogens as terminal electron acceptors organohalide respiration (OHR). In contrast to obligate OHR bacteria, spp. show a highly versatile energy metabolism with the capacity to use different electron donors and acceptors and to grow fermentatively. genomes display numerous and apparently redundant members of redox enzyme families which confirm their metabolic potential. Nonetheless, the enzymes responsible for many metabolic traits are not yet identified.

METHODS

In the present work, we conducted an extended proteomic study by comparing the proteomes of strain DCB-2 cultivated in combinations of electron donors and acceptors, triggering five alternative respiratory metabolisms that include OHR, as well as fermentation. Tandem Mass Tag labelling proteomics allowed us to identify and quantify almost 60% of the predicted proteome of strain DCB-2 (2,796 proteins) in all six growth conditions. Raw data are available ProteomeXchange with identifier PXD030393.

RESULTS AND DISCUSSION

This dataset was analyzed in order to highlight the proteins that were significantly up-regulated in one or a subset of growth conditions and to identify possible key players in the different energy metabolisms. The addition of sodium sulfide as reducing agent in the medium - a very widespread practice in the cultivation of strictly anaerobic bacteria - triggered the expression of the dissimilatory sulfite reduction pathway in relatively less favorable conditions such as fermentative growth on pyruvate, respiration with H as electron donor and OHR conditions. The presence of H, CO and acetate in the medium induced several metabolic pathways involved in carbon metabolism including the Wood-Ljungdahl pathway and two pathways related to the fermentation of butyrate that rely on electron-bifurcating enzymes. While the predicted fumarate reductase appears to be constitutively expressed, a new lactate dehydrogenase and lactate transporters were identified. Finally, the OHR metabolism with 3-chloro-4-hydroxyphenylacetate as electron acceptor strongly induced proteins encoded in several reductive dehalogenase gene clusters, as well as four new proteins related to corrinoid metabolism. We believe that this extended proteomic database represents a new landmark in understanding the metabolic versatility of spp. and provides a solid basis for addressing future research questions.

摘要

引言

因其利用有机卤化物作为末端电子受体进行有机卤化物呼吸(OHR)的能力而被分离出来。与专性OHR细菌不同,[具体菌株名称]表现出高度多样的能量代谢,有能力利用不同的电子供体和受体并进行发酵生长。其基因组显示出氧化还原酶家族众多且明显冗余的成员,证实了它们的代谢潜力。尽管如此,许多代谢特征所涉及的酶尚未被鉴定出来。

方法

在本研究中,我们通过比较在电子供体和受体组合中培养的[菌株名称]DCB - 2的蛋白质组,进行了一项扩展的蛋白质组学研究,引发了包括OHR以及发酵在内的五种替代呼吸代谢。串联质量标签标记蛋白质组学使我们能够在所有六种生长条件下鉴定和定量[菌株名称]DCB - 2预测蛋白质组中近60%的蛋白质(2796种蛋白质)。原始数据可通过ProteomeXchange获取,标识符为PXD030393。

结果与讨论

对该数据集进行分析,以突出在一种或一组生长条件下显著上调的蛋白质,并确定不同能量代谢中可能的关键参与者。在培养基中添加硫化钠作为还原剂——这在严格厌氧细菌培养中是一种非常普遍的做法——在相对不利的条件下,如在丙酮酸上进行发酵生长、以氢气作为电子供体进行呼吸以及OHR条件下,引发了异化亚硫酸盐还原途径的表达。培养基中氢气、一氧化碳和乙酸盐的存在诱导了包括伍德 - Ljungdahl途径以及与丁酸盐发酵相关的两条依赖电子分叉酶的途径在内的几种参与碳代谢的途径。虽然预测的富马酸还原酶似乎是组成型表达,但鉴定出了一种新的乳酸脱氢酶和乳酸转运蛋白。最后,以3 - 氯 - 4 - 羟基苯乙酸作为电子受体的OHR代谢强烈诱导了几个还原脱卤酶基因簇中编码的蛋白质以及四种与类咕啉代谢相关的新蛋白质。我们认为,这个扩展的蛋白质组数据库代表了理解[菌株名称]代谢多样性的一个新里程碑,并为解决未来的研究问题提供了坚实的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed2d/9888536/736cd20a8881/fmicb-14-1058127-g001.jpg

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