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口腔病原体福赛坦纳菌对不同 MurNAc 来源的利用及内膜转运蛋白 AmpG 的作用。

Utilization of different MurNAc sources by the oral pathogen Tannerella forsythia and role of the inner membrane transporter AmpG.

机构信息

Department of NanoBiotechnology, NanoGlycobiology unit, Universität für Bodenkultur Wien, Vienna, Austria.

Department of Chemistry, Institute of Biochemistry, Universität für Bodenkultur Wien, Vienna, Austria.

出版信息

BMC Microbiol. 2020 Nov 17;20(1):352. doi: 10.1186/s12866-020-02006-z.

Abstract

BACKGROUND

The Gram-negative oral pathogen Tannerella forsythia strictly depends on the external supply of the essential bacterial cell wall sugar N-acetylmuramic acid (MurNAc) for survival because of the lack of the common MurNAc biosynthesis enzymes MurA/MurB. The bacterium thrives in a polymicrobial biofilm consortium and, thus, it is plausible that it procures MurNAc from MurNAc-containing peptidoglycan (PGN) fragments (muropeptides) released from cohabiting bacteria during natural PGN turnover or cell death. There is indirect evidence that in T. forsythia, an AmpG-like permease (Tanf_08365) is involved in cytoplasmic muropeptide uptake. In E. coli, AmpG is specific for the import of N-acetylglucosamine (GlcNAc)-anhydroMurNAc(-peptides) which are common PGN turnover products, with the disaccharide portion as a minimal requirement. Currently, it is unclear which natural, complex MurNAc sources T. forsythia can utilize and which role AmpG plays therein.

RESULTS

We performed a screen of various putative MurNAc sources for T. forsythia mimicking the situation in the natural habitat and compared bacterial growth and cell morphology of the wild-type and a mutant lacking AmpG (T. forsythia ΔampG). We showed that supernatants of the oral biofilm bacteria Porphyromonas gingivalis and Fusobacterium nucleatum, and of E. coli ΔampG, as well as isolated PGN and defined PGN fragments obtained after enzymatic digestion, namely GlcNAc-anhydroMurNAc(-peptides) and GlcNAc-MurNAc(-peptides), could sustain growth of T. forsythia wild-type, while T. forsythia ΔampG suffered from growth inhibition. In supernatants of T. forsythia ΔampG, the presence of GlcNAc-anhMurNAc and, unexpectedly, also GlcNAc-MurNAc was revealed by tandem mass spectrometry analysis, indicating that both disaccharides are substrates of AmpG. The importance of AmpG in the utilization of PGN fragments as MurNAc source was substantiated by a significant ampG upregulation in T. forsythia cells cultivated with PGN, as determined by quantitative real-time PCR. Further, our results indicate that PGN-degrading amidase, lytic transglycosylase and muramidase activities in a T. forsythia cell extract are involved in PGN scavenging.

CONCLUSION

T. forsythia metabolizes intact PGN as well as muropeptides released from various bacteria and the bacterium's inner membrane transporter AmpG is essential for growth on these MurNAc sources, and, contrary to the situation in E. coli, imports both, GlcNAc-anhMurNAc and GlcNAc-MurNAc fragments.

摘要

背景

革兰氏阴性口腔病原体坦纳氏梭菌严格依赖外部供应必需的细菌细胞壁糖 N-乙酰胞壁酸 (MurNAc) 才能生存,因为它缺乏常见的 MurNAc 生物合成酶 MurA/MurB。该细菌在微生物生物膜联合体中茁壮成长,因此,它有可能从共生细菌在自然肽聚糖 (PGN) 周转或细胞死亡过程中释放的含有 MurNAc 的肽聚糖 (PGN) 片段(肽聚糖)中获取 MurNAc。有间接证据表明,在 T. forsythia 中,一种 AmpG 样渗透酶 (Tanf_08365) 参与细胞质肽聚糖摄取。在大肠杆菌中,AmpG 特异性用于导入 N-乙酰葡萄糖胺 (GlcNAc)-无水 MurNAc(-肽),这是常见的 PGN 周转产物,双糖部分是最小要求。目前,尚不清楚 T. forsythia 可以利用哪些天然复杂的 MurNAc 来源,以及 AmpG 在其中扮演什么角色。

结果

我们对各种假定的 MurNAc 来源进行了筛选,以模拟自然栖息地中的情况,并比较了野生型和缺乏 AmpG 的突变体 (T. forsythia ΔampG) 的细菌生长和细胞形态。我们表明,口腔生物膜细菌牙龈卟啉单胞菌和核梭杆菌的上清液以及大肠杆菌 ΔampG,以及分离的 PGN 和通过酶消化获得的定义的 PGN 片段,即 GlcNAc-anhydroMurNAc(-肽)和 GlcNAc-MurNAc(-肽),可以维持 T. forsythia 野生型的生长,而 T. forsythia ΔampG 则受到生长抑制。在 T. forsythia ΔampG 的上清液中,通过串联质谱分析揭示了 GlcNAc-anhMurNAc 的存在,并且出乎意料的是还存在 GlcNAc-MurNAc,表明这两种二糖都是 AmpG 的底物。通过定量实时 PCR 确定,在 T. forsythia 细胞用 PGN 培养时,ampG 的显著上调证实了 AmpG 在利用 PGN 片段作为 MurNAc 来源方面的重要性。此外,我们的结果表明,T. forsythia 细胞提取物中的 PGN 脱酰胺酶、裂解转糖基酶和胞壁质酶活性参与了 PGN 的清除。

结论

T. forsythia 代谢完整的 PGN 以及来自各种细菌的肽聚糖片段,并且细菌的内膜转运蛋白 AmpG 对于在这些 MurNAc 来源上的生长至关重要,与大肠杆菌中的情况相反,它同时导入 GlcNAc-anhMurNAc 和 GlcNAc-MurNAc 片段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60a9/7670621/036d40ecd2f6/12866_2020_2006_Fig1_HTML.jpg

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