Department for Product Safety, German Federal Institute of Risk Assessment (BfR), Berlin, Germany.
FEMS Microbiol Ecol. 2014 Apr;88(1):129-39. doi: 10.1111/1574-6941.12276. Epub 2014 Jan 21.
Polycyclic aromatic hydrocarbons (PAHs) are some of the most widespread xenobiotic pollutants, with the potentially carcinogenic high-molecular-weight representatives being of particular interest. However, while in eukaryotes, the cytochrome P450 (CYP)-mediated activation of benzo[a]pyrene (B[a]P) has become a model for metabolism-mediated carcinogenesis, the oxidative degradation of B[a]P by microorganisms is less well studied. This should be reason for concern as the human organ most exposed to environmental PAHs is the skin, which at the same time is habitat to a most diverse population of microbial commensals. Yet, nothing is known about the skin's microbiome potential to metabolise B[a]P. This study now reports on the isolation of 21 B[a]P-degrading microorganisms from human skin, 10 of which were characterised further. All isolates were able to degrade B[a]P as sole source of carbon and energy, and degradation was found to be complete in at least four isolates. Substrate metabolism involved two transcripts that encode a putative DszA/NtaA-like monooxygenase and a NifH-like reductase, respectively. Analysis of the 16S-rRNA genes showed that the B[a]P-degrading isolates comprise Gram(+) as well as Gram(-) skin commensals, with Micrococci being predominant. Moreover, microbial B[a]P-degradation was detected on all volunteers probed, indicating it to be a universal feature of the skin's microbiome.
多环芳烃(PAHs)是最广泛的外源性污染物之一,其中具有潜在致癌性的高分子量代表物尤其受到关注。然而,虽然在真核生物中,细胞色素 P450(CYP)介导的苯并[a]芘(B[a]P)激活已成为代谢介导致癌作用的模型,但微生物对 B[a]P 的氧化降解研究较少。这是有理由引起关注的,因为人类器官中最容易接触环境 PAHs 的是皮肤,而皮肤同时也是微生物共生体最多样化的栖息地。然而,目前尚不清楚皮肤微生物组代谢 B[a]P 的潜力。本研究报告了从人体皮肤中分离出的 21 种 B[a]P 降解微生物,其中 10 种进一步进行了特征描述。所有分离株都能够以 B[a]P 作为唯一的碳源和能源进行降解,至少有 4 个分离株的降解是完全的。底物代谢涉及两个分别编码推定的 DszA/NtaA 样单加氧酶和 NifH 样还原酶的转录本。16S-rRNA 基因分析表明,B[a]P 降解分离株包括革兰氏阳性和革兰氏阴性皮肤共生菌,其中微球菌居多。此外,所有受检志愿者的皮肤上都检测到微生物 B[a]P 降解,表明这是皮肤微生物组的普遍特征。