Sabater Carlos, Molinero Natalia, Ferrer Manuel, Bernardo Carmen María García, Delgado Susana, Margolles Abelardo
Department of Microbiology and Biochemistry of Dairy Products, Instituto de Productos Lácteos de Asturias (IPLA), Consejo Superior de Investigaciones Científicas (CSIC), Paseo Río Linares S/N, 33300 Villaviciosa, Spain.
Instituto de Investigación Sanitaria del Principado de Asturias (ISPA), 33011 Oviedo, Spain.
Microorganisms. 2021 Oct 21;9(11):2201. doi: 10.3390/microorganisms9112201.
Gallbladder metagenome involves a wide range of unidentified sequences comprising the so-called metagenomic dark matter. Therefore, this study aimed to characterise three gallbladder metagenomes and a fosmid library with an emphasis on metagenomic dark matter fraction. For this purpose, a novel data analysis strategy based on the combination of remote homology and molecular modelling has been proposed. According to the results obtained, several protein functional domains were annotated in the metagenomic dark matter fraction including acetyltransferases, outer membrane transporter proteins, membrane assembly factors, DNA repair and recombination proteins and response regulator phosphatases. In addition, one deacetylase involved in mycothiol biosynthesis was found in the metagenomic dark matter fraction of the fosmid library. This enzyme may exert a protective effect in Actinobacteria against bile components exposure, in agreement with the presence of multiple antibiotic and multidrug resistance genes. Potential mechanisms of action of this novel deacetylase were elucidated by molecular simulations, highlighting the role of histidine and aspartic acid residues. Computational pipelines presented in this work may be of special interest to discover novel microbial enzymes which had not been previously characterised.
胆囊宏基因组包含大量未鉴定的序列,其中包括所谓的宏基因组暗物质。因此,本研究旨在对三个胆囊宏基因组和一个fosmid文库进行表征,重点关注宏基因组暗物质部分。为此,提出了一种基于远程同源性和分子建模相结合的新型数据分析策略。根据所得结果,在宏基因组暗物质部分注释了几个蛋白质功能域,包括乙酰转移酶、外膜转运蛋白、膜组装因子、DNA修复和重组蛋白以及应答调节磷酸酶。此外,在fosmid文库的宏基因组暗物质部分发现了一种参与硫醇生物合成的脱乙酰酶。这种酶可能在放线菌中对胆汁成分暴露发挥保护作用,这与多种抗生素和多药耐药基因的存在一致。通过分子模拟阐明了这种新型脱乙酰酶的潜在作用机制,突出了组氨酸和天冬氨酸残基的作用。本研究中提出的计算流程对于发现以前未表征的新型微生物酶可能具有特殊意义。