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首页> 外文期刊>The Journal of biological chemistry >Discovery of α-l-arabinopyranosidases from human gut microbiome expands the diversity within glycoside hydrolase family 42
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Discovery of α-l-arabinopyranosidases from human gut microbiome expands the diversity within glycoside hydrolase family 42

机译:从人肠道微生物组中发现α-1-阿拉伯吡喃糖苷酶扩大了糖苷水解酶家族中的多样性42

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Enzymes of the glycoside hydrolase family 42 (GH42) are widespread in bacteria of the human gut microbiome and play fundamental roles in the decomposition of both milk and plant oligosaccharides. All GH42 enzymes characterized so far have β-galactosidase activity. Here, we report the existence of a GH42 subfamily that is exclusively specific for α-l-arabinopyranoside and describe the first representative of this subfamily. We found that this enzyme (BlArap42B) from a probiotic Bifidobacterium species cannot hydrolyze β-galactosides. However, BlArap42B effectively hydrolyzed paeonolide and ginsenoside Rb2, plant glycosides containing an aromatic aglycone conjugated to α-l-arabinopyranosyl-(1,6)-β-d-glucopyranoside. Paeonolide, a natural glycoside from the roots of the plant genus Paeonia, is not hydrolyzed by classical GH42 β-galactosidases. X-ray crystallography revealed a unique Trp345-X12-Trp358 sequence motif at the BlArap42B active site, as compared with a Phe-X12-His motif in classical GH42 β-galactosidases. This analysis also indicated that the C6 position of galactose is blocked by the aromatic side chains, hence allowing accommodation only of Arap lacking this carbon. Automated docking of paeonolide revealed that it can fit into the BlArap42B active site. The Glcp moiety of paeonolide stacks onto the aromatic ring of the Trp252 at subsite +1 and C4-OH is hydrogen bonded with Asp249. Moreover, the aglycone stacks against Phe421 from the neighboring monomer in the BlArap42B trimer, forming a proposed subsite +2. These results further support the notion that evolution of metabolic specialization can be tracked at the structural level in key enzymes facilitating degradation of specific glycans in an ecological niche.
机译:糖苷水解酶家族42(GH42)的酶广泛存在于人类肠道微生物组的细菌中,并且在牛奶和植物低聚糖的分解中起着基本作用。到目前为止,所有已表征的GH42酶均具有β-半乳糖苷酶活性。在这里,我们报告了一个专门针对α-1-阿拉伯吡喃糖苷的GH42亚家族的存在,并描述了该亚家族的第一个代表。我们发现这种益生菌双歧杆菌物种的酶(B1Arap42B)无法水解β-半乳糖苷。然而,BlArap42B有效地水解了eon药苷和人参皂苷Rb2,这是一种植物糖苷,其中含有与α-1-阿拉伯吡喃糖基-(1,6)-β-d-吡喃葡萄糖苷结合的芳香族糖苷配基。 eon药苷是植物Pa药属根中的天然糖苷,不会被经典的GH42β-半乳糖苷酶水解。 X射线晶体学分析显示,与经典GH42β-半乳糖苷酶中的Phe-X12-His基序相比,BlaArap42B活性位点具有独特的Trp345-X12-Trp358序列基序。该分析还表明半乳糖的C6位置被芳族侧链封闭,因此仅允许容纳缺少该碳的Arap。 pa药的自动对接显示,它可以放入BlArap42B活性位点。 eon药的Glcp部分在亚位点+1处堆叠到Trp252的芳香环上,C4-OH与Asp249氢键结合。此外,糖苷配基从BlaArap42B三聚体中的相邻单体向Phe421堆叠,形成建议的亚位点+2。这些结果进一步支持了这样的观点,即可以在关键的酶的结构水平上追踪代谢专一性的演变,从而促进生态位中特定聚糖的降解。

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