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首页> 外文期刊>Current Microbiology: An International Journal >Identification of a broad-specificity xylosidase/arabinosidase importantfor xylooligosaccharide fermentation by the ruminal anaerobe Selenomonasruminantium GA192
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Identification of a broad-specificity xylosidase/arabinosidase importantfor xylooligosaccharide fermentation by the ruminal anaerobe Selenomonasruminantium GA192

机译:瘤胃厌氧性硒鼻反刍动物GA192鉴定对木寡糖发酵重要的广泛特异性木糖苷酶/阿拉伯糖苷酶

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摘要

Strains of Selenomonas ruminantium vary considerably in their capacity to ferment xylooligosaccharides. This ability ranges from strain GA192, which completely utilized xylose through xylotetraose and was able to ferment considerable quantities of larger oligosaccharides, to strain HD4, which used only the simple sugars present in the hydrolysate. The ability of S. ruminantium GA192 to utilize xylooligosaccharides was correlated with the presence of xylosidase and arabinosidase activities. The production of these activities appears to be regulated in response to carbon source used for growth. Both arabinosidase and xylosidase were induced by growth on xylose or xylooligosaccharides, but no activity was detected in glucose-or arabinose-grown cultures. A genetic locus from S. ruminantium GA192 was cloned into Escherichia coli JM83 that produced both xylosidase and arabinosidase activities. Analyses of crude extracts from the E. coli clone and S. ruminantium GA 192 by using native polyacrylamide gel electrophoresis and methylumbelliferyl substrates indicated that a single protein was responsible for both activities. The enzyme expressed in E. coli was capable of degrading xylooligosaccharides derived from xylan. DNA sequencing of the locus demonstrated the presence of an open reading frame that encodes for a protein of 61,174 molecular weight.
机译:反刍动物硒杆菌发酵木寡糖的能力差异很大。该能力范围从完全利用木糖到木四糖并能够发酵大量较大寡糖的GA192菌株到仅使用水解产物中存在的简单糖的HD4菌株。反刍类葡萄球菌GA192利用木糖寡糖的能力与木糖苷酶和阿拉伯糖苷酶活性的存在相关。这些活动的产生似乎受用于生长的碳源的调节。阿拉伯糖苷酶和木糖苷酶均由木糖或木寡糖上的生长诱导,但在葡萄糖或阿拉伯糖生长的培养物中未检测到活性。将反刍动物GA192的基因座克隆到同时产生木糖苷酶和阿拉伯糖苷酶活性的大肠杆菌JM83中。通过使用天然聚丙烯酰胺凝胶电泳和甲基伞形蛋白底物对大肠杆菌克隆和反刍类反刍动物GA 192的粗提物进行分析,结果表明单个蛋白质既负责这两种活性。在大肠杆菌中表达的酶能够降解源自木聚糖的木寡糖。该基因座的DNA测序表明存在一个开放阅读框,该阅读框编码分子量为61,174的蛋白质。

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