首页> 美国卫生研究院文献>other >A Highly Active Endo-Levanase BT1760 of a Dominant Mammalian Gut Commensal Bacteroides thetaiotaomicron Cleaves Not Only Various Bacterial Levans but Also Levan of Timothy Grass
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A Highly Active Endo-Levanase BT1760 of a Dominant Mammalian Gut Commensal Bacteroides thetaiotaomicron Cleaves Not Only Various Bacterial Levans but Also Levan of Timothy Grass

机译:占主导地位的哺乳动物肠道内共拟杆菌的高度活跃的内切糖酶BT1760 thetaiotaomicron不仅切割各种细菌莱文而且提摩西草的莱文

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摘要

Bacteroides thetaiotaomicron, an abundant commensal of the human gut, degrades numerous complex carbohydrates. Recently, it was reported to grow on a β-2,6-linked polyfructan levan produced by Zymomonas mobilis degrading the polymer into fructooligosaccharides (FOS) with a cell surface bound endo-levanase BT1760. The FOS are consumed by B. thetaiotaomicron, but also by other gut bacteria, including health-promoting bifidobacteria and lactobacilli. Here we characterize biochemical properties of BT1760, including the activity of BT1760 on six bacterial levans synthesized by the levansucrase Lsc3 of Pseudomonas syringae pv. tomato, its mutant Asp300Asn, levansucrases of Zymomonas mobilis, Erwinia herbicola, Halomonas smyrnensis as well as on levan isolated from timothy grass. For the first time a plant levan is shown as a perfect substrate for an endo-fructanase of a human gut bacterium. BT1760 degraded levans to FOS with degree of polymerization from 2 to 13. At optimal reaction conditions up to 1 g of FOS were produced per 1 mg of BT1760 protein. Low molecular weight (<60 kDa) levans, including timothy grass levan and levan synthesized from sucrose by the Lsc3Asp300Asn, were degraded most rapidly whilst levan produced by Lsc3 from raffinose least rapidly. BT1760 catalyzed finely at human body temperature (37°C) and in moderately acidic environment (pH 5–6) that is typical for the gut lumen. According to differential scanning fluorimetry, the Tm of the endo-levanase was 51.5°C. All tested levans were sufficiently stable in acidic conditions (pH 2.0) simulating the gastric environment. Therefore, levans of both bacterial and plant origin may serve as a prebiotic fiber for B. thetaiotaomicron and contribute to short-chain fatty acids synthesis by gut microbiota. In the genome of Bacteroides xylanisolvens of human origin a putative levan degradation locus was disclosed.
机译:拟杆菌是人类肠道的一种代名词,它降解许多复杂的碳水化合物。近来,据报道其在由运动发酵单胞菌(Zymomonas mobilis)产生的β-2,6-连接的聚果聚糖levan上生长,该聚合物将其降解为具有细胞表面结合的内切葡聚糖酶BT1760的低聚果糖(FOS)。 FOS被thetaiotaomicron细菌所消耗,但也被其他肠道细菌所吸收,包括促进健康的双歧杆菌和乳杆菌。在这里,我们表征了BT1760的生化特性,包括BT1760对由丁香假单胞菌pv的蔗糖酶Lsc3合成的六个细菌levan的活性。番茄,其突变体Asp300Asn,运动发酵单胞菌,欧文氏草,盐单胞菌的沙门氏菌以及从提摩西草中分离的沙门氏菌。首次将植物levan展示为人类肠道细菌内切果糖酶的理想底物。 BT1760将左旋聚糖降解为FOS,聚合度为2至13。在最佳反应条件下,每1毫克BT1760蛋白可生产1克FOS。低分子量(<60 kDa)的Levan,包括提摩西草levan和Lsc3Asp300Asn从蔗糖合成的levan,降解最快,而Lsc3从棉子糖生产的levan降解最快。 BT1760在人体温度(37°C)和中等酸性环境(pH 5-6)内腔中很典型地被催化。根据差示扫描荧光法,内切葡聚糖酶的Tm为51.5℃。在模拟胃环境的酸性条件(pH 2.0)下,所有测试的左旋脂肪都足够稳定。因此,细菌和植物来源的levan可以作为thetaiotaomicron的益生元纤维,并有助于肠道菌群合成短链脂肪酸。在人类来源的拟杆菌细菌的基因组中,公开了推定的莱万降解位点。

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