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洛斯鲁埃尔多斯酸性矿山排水形成区微生物群落中酯酶的宏基因组挖掘

Metagenomic Mining for Esterases in the Microbial Community of Los Rueldos Acid Mine Drainage Formation.

作者信息

Vidal Paula, Martínez-Martínez Mónica, Fernandez-Lopez Laura, Roda Sergi, Méndez-García Celia, Golyshina Olga V, Guallar Víctor, Peláez Ana I, Ferrer Manuel

机构信息

Institute of Catalysis, Department of Applied Biocatalysis, Consejo Superior de Investigaciones Científicas, Madrid, Spain.

Department of Life Sciences, Barcelona Supercomputing Center, Barcelona, Spain.

出版信息

Front Microbiol. 2022 May 19;13:868839. doi: 10.3389/fmicb.2022.868839. eCollection 2022.

Abstract

Acid mine drainage (AMD) systems are extremely acidic and are metal-rich formations inhabited by relatively low-complexity communities of acidophiles whose enzymes remain mostly uncharacterized. Indeed, enzymes from only a few AMD sites have been studied. The low number of available cultured representatives and genome sequences of acidophiles inhabiting AMDs makes it difficult to assess the potential of these environments for enzyme bioprospecting. In this study, using naïve and metagenomic approaches, we retrieved 16 esterases from the α/β-hydrolase fold superfamily with the closest match from uncultured acidophilic , and , and other inhabiting the Los Rueldos site, which is a unique AMD formation in northwestern Spain with a pH of ∼2. Within this set, only two polypeptides showed high homology (99.4%), while for the rest, the pairwise identities ranged between 4 and 44.9%, suggesting that the diversity of active polypeptides was dominated not by a particular type of protein or highly similar clusters of proteins, but by diverse non-redundant sequences. The enzymes exhibited amino acid sequence identities ranging from 39 to 99% relative to homologous proteins in public databases, including those from other AMDs, thus indicating the potential novelty of proteins associated with a specialized acidophilic community. Ten of the 16 hydrolases were successfully expressed in . The pH for optimal activity ranged from 7.0 to 9.0, with the enzymes retaining 33-68% of their activities at pH 5.5, which was consistent with the relative frequencies of acid residues (from 54 to 67%). The enzymes were the most active at 30-65°C, retaining 20-61% of their activity under the thermal conditions characterizing Los Rueldos (13.8 ± 0.6°C). The analysis of the substrate specificity revealed the capacity of six hydrolases to efficiently degrade (up to 1,652 ± 75 U/g at pH 8.0 and 30°C) acrylic- and terephthalic-like [including bis(2-hydroxyethyl)-terephthalate, BHET] esters, and these enzymes could potentially be of use for developing plastic degradation strategies yet to be explored. Our assessment uncovers the novelty and potential biotechnological interest of enzymes present in the microbial populations that inhibit the Los Rueldos AMD system.

摘要

酸性矿山排水(AMD)系统的酸性极强,富含金属,其嗜酸性微生物群落的复杂性相对较低,这些微生物的酶大多未被鉴定。实际上,仅对少数AMD位点的酶进行过研究。由于栖息在AMD中的嗜酸性微生物的可培养代表物和基因组序列数量较少,因此难以评估这些环境在酶生物勘探方面的潜力。在本研究中,我们采用原始方法和宏基因组方法,从α/β-水解酶折叠超家族中检索到16种酯酶,与来自未培养的嗜酸性菌、嗜酸热硫化叶菌以及栖息在洛斯鲁埃尔多斯矿点的其他嗜酸菌的酯酶最为匹配,洛斯鲁埃尔多斯矿点位于西班牙西北部,是一种独特的AMD地层,pH值约为2。在这组酯酶中,只有两种多肽显示出高度同源性(99.4%),而其余的两两之间的同一性在4%至44.9%之间,这表明活性多肽的多样性并非由特定类型的蛋白质或高度相似的蛋白质簇主导,而是由多样的非冗余序列主导。相对于公共数据库中的同源蛋白,包括来自其他AMD的同源蛋白,这些酶的氨基酸序列同一性在39%至99%之间,这表明与特定嗜酸性群落相关的蛋白质具有潜在的新颖性。16种水解酶中有10种在大肠杆菌中成功表达。最佳活性的pH范围为7.0至9.0,这些酶在pH 5.5时保留其活性的33%至68%,这与酸性残基的相对频率(从54%至67%)一致。这些酶在30至65°C时活性最高,在表征洛斯鲁埃尔多斯矿点的热条件(13.8±0.6°C)下保留其活性的20%至61%。底物特异性分析表明,六种水解酶能够有效降解(在pH 8.0和30°C时高达1652±75 U/g)丙烯酸类和对苯二甲酸类[包括双(2-羟乙基)对苯二甲酸酯,BHET]酯,这些酶可能可用于开发尚未探索的塑料降解策略。我们的评估揭示了抑制洛斯鲁埃尔多斯AMD系统的微生物种群中存在的酶的新颖性和潜在的生物技术价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d1b/9162777/ca0a7acfcca1/fmicb-13-868839-g001.jpg

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