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Amylases in the Human Vagina

机译:人类阴道中的淀粉酶

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Dominance of Lactobacillus species in vaginal communities is a hallmark of healthy conditions in the female genital tract. Key nutrients for lactobacilli include sugars produced when glycogen is degraded by α-amylase in the vagina. While α-amylase activity has been demonstrated in vaginal fluids, it is unclear whether α-amylases are produced solely by the host, bacteria in the vagina, or both. We screened cervicovaginal mucus from 23 reproductive-age women, characterized the species composition of vaginal communities, measured vaginal pH, and determined levels of amylase activity, glycogen, and lactic acid. Based on differences in these measured variables, one sample from each of four individual donors was selected for metagenomic and proteomic analyses. Of eight putative bacterial amylases identified in the assembled bacterial metagenomes, we detected four in vaginal fluids. These amylases were produced by various bacteria in different vaginal communities. Moreover, no two communities were the same in terms of which bacteria were producing amylases. Although we detected bacterial amylases in vaginal fluids, there was no clear association between the bacterial species that was dominant in a community and the level of amylase activity. This association was likely masked by the presence of human α-amylase, which was also detected in vaginal fluids. Finally, the levels of amylase activity and glycogen were only weakly associated. Our findings show, for the first time, that multiple amylases from both bacterial and human origins can be present simultaneously in the vagina. This work also suggests that the link between glycogen, amylase, and Lactobacillus in the vagina is complex. IMPORTANCE In this study, we show that multiple bacteria in the vaginal community produce amylases that hydrolyze glycogen into simpler sugars (i.e., maltose and maltotriose). These sugars serve as “common goods” that sustain bacterial populations in vaginal communities. Given the temporal changes that are observed in the human vaginal microbiome, we expect the kinds of bacterial amylases produced will also vary over time. These differences influence the pool of resources that are broadly shared and shape the species composition of the vaginal bacterial community.
机译:阴道社区中乳酸杆菌种类的优势是女性生殖道中健康状况的标志。乳杆菌的主要营养素包括当糖原在阴道中的α-淀粉酶降解时产生的糖。虽然已经在阴道液中证明α-淀粉酶活性,但目前尚不清楚α-淀粉酶是否仅由阴道中的宿主,细菌或两者均产生。我们从23名生殖年龄妇女筛查了宫颈病粘液,其特征在于阴道社区的物种组成,测得的阴道pH,并测定淀粉酶活性,糖原和乳酸水平。基于这些测量变量的差异,选择来自四种单独供体中的每一个的一种样品用于偏见和蛋白质组学分析。在组装的细菌偏心蛋白中鉴定的八个推定的细菌淀粉酶,我们在阴道液中检测到四个。这些淀粉酶由不同阴道群落的各种细菌产生。此外,在没有两种群体中没有两种群体产生淀粉酶。虽然我们在阴道液中检测到细菌淀粉酶,但在群落中显着的细菌种类和淀粉酶活性水平之间没有明显的关联。这种关联可能通过人α-淀粉酶的存在掩盖,其在阴道液中也检测到。最后,淀粉酶活性和糖原的水平仅为弱相关。我们的研究结果首次显示,来自两种细菌和人类起源的多个淀粉酶可以同时存在于阴道中。这项工作还表明糖原,淀粉酶和阴道中的乳杆菌之间的联系是复杂的。本研究的重要性,我们表明阴道群落中的多种细菌产生水解糖原成更简单的糖(即麦芽糖和麦芽酮)的淀粉酶。这些糖作为“常见的商品”,其维持阴道社区中的细菌群体。鉴于人类阴道微生物组中观察到的时间变化,我们预计所产生的细菌淀粉酶也会随着时间的变化而变化。这些差异影响了广泛共享和塑造了阴道细菌群落的物种组成的资源库。

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