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A Novel Extracellular Metallopeptidase Domain Shared by Animal Host-Associated Mutualistic and Pathogenic Microbes

机译:与动物宿主相关的互致病原微生物共享的新型胞外金属肽酶域

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摘要

The mucosal microbiota is recognised as an important factor for our health, with many disease states linked to imbalances in the normal community structure. Hence, there is considerable interest in identifying the molecular basis of human-microbe interactions. In this work we investigated the capacity of microbes to thrive on mucosal surfaces, either as mutualists, commensals or pathogens, using comparative genomics to identify co-occurring molecular traits. We identified a novel domain we named M60-like/PF13402 (new Pfam entry PF13402), which was detected mainly among proteins from animal host mucosa-associated prokaryotic and eukaryotic microbes ranging from mutualists to pathogens. Lateral gene transfers between distantly related microbes explained their shared M60-like/PF13402 domain. The novel domain is characterised by a zinc-metallopeptidase-like motif and is distantly related to known viral enhancin zinc-metallopeptidases. Signal peptides and/or cell surface anchoring features were detected in most microbial M60-like/PF13402 domain-containing proteins, indicating that these proteins target an extracellular substrate. A significant subset of these putative peptidases was further characterised by the presence of associated domains belonging to carbohydrate-binding module family 5/12, 32 and 51 and other glycan-binding domains, suggesting that these novel proteases are targeted to complex glycoproteins such as mucins. An in vitro mucinase assay demonstrated degradation of mammalian mucins by a recombinant form of an M60-like/PF13402-containing protein from the gut mutualist Bacteroides thetaiotaomicron. This study reveals that M60-like domains are peptidases targeting host glycoproteins. These peptidases likely play an important role in successful colonisation of both vertebrate mucosal surfaces and the invertebrate digestive tract by both mutualistic and pathogenic microbes. Moreover, 141 entries across various peptidase families described in the MEROPS database were also identified with carbohydrate-binding modules defining a new functional context for these glycan-binding domains and providing opportunities to engineer proteases targeting specific glycoproteins for both biomedical and industrial applications.
机译:粘膜微生物群被认为是我们健康的重要因素,许多疾病与正常社区结构的失衡有关。因此,在确定人-微生物相互作用的分子基础方面有相当大的兴趣。在这项工作中,我们使用比较基因组学来确定共同存在的分子特征,从而研究了微生物在粘膜表面上繁殖的能力,包括共生,共生或病原体。我们确定了一个新的域,我们将其命名为M60-like / PF13402(新的Pfam条目PF13402),该域主要在动物宿主与黏膜相关的原核和真核微生物的蛋白质中被检测到,从微生物到病原体。远缘微生物之间的横向基因转移解释了它们共有的M60-like / PF13402结构域。该新域的特征在于锌-金属肽酶样基序,并且与已知的病毒enhancin锌-金属肽酶密切相关。在大多数含微生物M60 / PF13402结构域的蛋白中检测到信号肽和/或细胞表面锚定特征,表明这些蛋白靶向细胞外底物。这些推定的肽酶的重要子集的特征还在于存在与碳水化合物结合模块家族5 / 12、32和51相关的结构域以及其他聚糖结合结构域,这表明这些新型蛋白酶靶向复杂的糖蛋白,例如粘蛋白。体外粘蛋白酶测定法证明了来自肠道互惠细菌拟杆菌(Theactotaides thetaiotaomicron)的M60样/ PF13402蛋白质的重组形式可降解哺乳动物粘蛋白。这项研究表明,M60样域是靶向宿主糖蛋白的肽酶。这些肽酶可能在互生性和致病性微生物对脊椎动物粘膜表面和无脊椎动物消化道的成功定殖中起重要作用。此外,还利用碳水化合物结合模块鉴定了MEROPS数据库中描述的各种肽酶家族的141个条目,该模块为这些聚糖结合域定义了新的功能背景,并为生物医学和工业应用提供了针对特定糖蛋白的蛋白酶工程化机会。

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