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两种双歧杆菌的细胞外蛋白质组揭示了对低铁条件的不同适应策略。

The extracellular proteome of two Bifidobacterium species reveals different adaptation strategies to low iron conditions.

作者信息

Vazquez-Gutierrez Pamela, Stevens Marc J A, Gehrig Peter, Barkow-Oesterreicher Simon, Lacroix Christophe, Chassard Christophe

机构信息

Laboratory of Food Biotechnology, ETH Zurich, Institute of Food, Nutrition and Health, Schmelzbergstrasse 7, 8092, Zurich, Switzerland.

Functional Genomics Center Zurich, Winterthurerstrasse 190, 8057, Zurich, Switzerland.

出版信息

BMC Genomics. 2017 Jan 6;18(1):41. doi: 10.1186/s12864-016-3472-x.

Abstract

BACKGROUND

Bifidobacteria are among the first anaerobic bacteria colonizing the gut. Bifidobacteria require iron for growth and their iron-sequestration mechanisms are important for their fitness and possibly inhibit enteropathogens. Here we used combined genomic and proteomic analyses to characterize adaptations to low iron conditions of B. kashiwanohense PV20-2 and B. pseudolongum PV8-2, 2 strains isolated from the feces of iron-deficient African infants and selected for their high iron-sequestering ability.

RESULTS

Analyses of the genome contents revealed evolutionary adaptation to low iron conditions. A ferric and a ferrous iron operon encoding binding proteins and transporters were found in both strains. Remarkably, the ferric iron operon of B. pseudolongum PV8-2 is not found in other B. pseudolongum strains and likely acquired via horizontal gene transfer. The genome B. kashiwanohense PV20-2 harbors a unique region encoding genes putatively involved in siderophore production. Additionally, the secretomes of the two strains grown under low-iron conditions were analyzed using a combined genomic-proteomic approach. A ferric iron transporter was found in the secretome of B. pseudolongum PV8-2, while ferrous binding proteins were detected in the secretome of B. kashiwanohense PV20-2, suggesting different strategies to take up iron in the strains. In addition, proteins such as elongation factors, a glyceraldehyde-3-phosphate dehydrogenase, and the stress proteins GroEL and DnaK were identified in both secretomes. These proteins have been previously associated with adhesion of lactobacilli to epithelial cells.

CONCLUSION

Analyses of the genome and secretome of B. kashiwanohense PV20-2 and B. pseudolongum PV8-2 revealed different adaptations to low iron conditions and identified extracellular proteins for iron transport. The identified extracellular proteins might be involved in competition for iron in the gastrointestinal tract.

摘要

背景

双歧杆菌是最早定殖于肠道的厌氧菌之一。双歧杆菌生长需要铁,其铁螯合机制对其适应性很重要,并且可能抑制肠道病原体。在此,我们使用基因组和蛋白质组联合分析来表征柏氏双歧杆菌PV20 - 2和假长双歧杆菌PV8 - 2对低铁条件的适应性,这两种菌株是从缺铁非洲婴儿粪便中分离出来的,因其高铁螯合能力而被挑选出来。

结果

对基因组内容的分析揭示了对低铁条件的进化适应性。在两种菌株中均发现了编码结合蛋白和转运蛋白的铁离子和亚铁离子操纵子。值得注意的是,假长双歧杆菌PV8 - 2的铁离子操纵子在其他假长双歧杆菌菌株中未发现,可能是通过水平基因转移获得的。柏氏双歧杆菌PV20 - 2的基因组含有一个独特区域,编码可能参与铁载体产生的基因。此外,使用基因组 - 蛋白质组联合方法分析了在低铁条件下生长的两种菌株的分泌蛋白组。在假长双歧杆菌PV8 - 2的分泌蛋白组中发现了一种铁离子转运蛋白,而在柏氏双歧杆菌PV20 - 2的分泌蛋白组中检测到了亚铁结合蛋白,这表明两种菌株吸收铁的策略不同。此外,在两种分泌蛋白组中均鉴定出了诸如延伸因子、甘油醛 - 3 - 磷酸脱氢酶以及应激蛋白GroEL和DnaK等蛋白质。这些蛋白质先前已与乳酸杆菌对上皮细胞的粘附相关联。

结论

对柏氏双歧杆菌PV20 - 2和假长双歧杆菌PV8 - 2的基因组和分泌蛋白组分析揭示了对低铁条件的不同适应性,并鉴定出了用于铁转运的细胞外蛋白。所鉴定的细胞外蛋白可能参与胃肠道中铁的竞争。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d60/5219805/51cde2fd6473/12864_2016_3472_Fig1_HTML.jpg

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