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Cloning Sequence Analysis and Characterization of the Genes Involved in Isoprimeverose Metabolism in Lactobacillus pentosus

机译:戊糖乳杆菌中同工酶代谢的相关基因的克隆序列分析和表征

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摘要

Two genes, xylP and xylQ, from the xylose regulon of Lactobacillus pentosus were cloned and sequenced. Together with the repressor gene of the regulon, xylR, the xylPQ genes form an operon which is inducible by xylose and which is transcribed from a promoter located 145 bp upstream of xylP. A putative xylR binding site (xylO) and a cre-like element, mediating CcpA-dependent catabolite repression, were found in the promoter region. L. pentosus mutants in which both xylP and xylQ (LPE1) or only xylQ (LPE2) was inactivated retained the ability to ferment xylose but were impaired in their ability to ferment isoprimeverose (α-d-xylopyranosyl-(1,6)-d-glucopyranose). Disruption of xylQ resulted specifically in the loss of a membrane-associated α-xylosidase activity when LPE1 or LPE2 cells were grown on xylose. In the membrane fraction of wild-type bacteria, α-xylosidase could catalyze the hydrolysis of isoprimeverose and p-nitrophenyl-α-d-xylopyranoside with apparent Km and Vmax values of 0.2 mM and 446 nmol/min/mg of protein, and 1.3 mM and 54 nmol/min/mg of protein, respectively. The enzyme could also hydrolyze the α-xylosidic linkage in xyloglucan oligosaccharides, but neither methyl-α-d-xylopyranoside nor α-glucosides were substrates. Glucose repressed the synthesis of α-xylosidase fivefold, and 80% of this repression was released in an L. pentosus ΔccpA mutant. The α-xylosidase gene was also expressed in the absence of xylose when xylR was disrupted.
机译:克隆和测序了来自戊糖乳杆菌的木糖调节子的两个基因xylP和xylQ。 xylPQ基因与调节子的阻遏基因xylR一起形成操纵子,该操纵子可由木糖诱导,并从位于xylP上游145 bp的启动子上转录。一个推定的xylR结合位点(xylO)和一个cre样元件,介导CcpA依赖性分解代谢物阻遏,发现在启动子区域。 xylP和xylQ(LPE1)或仅xylQ(LPE2)都被灭活的戊糖乳杆菌突变体保留了发酵木糖的能力,但发酵异伯苏糖(α-d-木吡喃糖基-(1,6)-d的能力受到了损害。 -吡喃葡萄糖)。当LPE1或LPE2细胞在木糖上生长时,xylQ的破坏会特别导致与膜相关的α-木糖苷酶活性的丧失。在野生型细菌的膜级分中,α-木糖苷酶可以催化异伯菊糖和对硝基苯基-α-d-吡喃吡喃果糖苷的水解,其Km和 V 最大值分别为0.2 mM和446 nmol / min / mg蛋白质,分别为1.3 mM和54 nmol / min / mg蛋白质。该酶还可以水解木葡聚糖寡糖中的α-木糖苷键,但是甲基-α-d-木吡喃糖苷和α-葡萄糖苷都不是底物。葡萄糖将α-木糖苷酶的合成抑制了五倍,这种抑制的80%在 L中释放。戊糖ΔccpA突变体。当 xylR 被破坏时,在没有木糖的情况下也表达α-木糖苷酶基因。

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