首页> 外文期刊>Journal of applied microbiology >Cloning and expression of #alpha#-amylase from the hyperthermophilic archaeon Pyrococcus woesei in the moderately halophilic bacterium Halomonas elongata
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Cloning and expression of #alpha#-amylase from the hyperthermophilic archaeon Pyrococcus woesei in the moderately halophilic bacterium Halomonas elongata

机译:中度嗜盐细菌Halomonas elongata中超嗜热古细菌Pyrococcus woesei的#alpha#-淀粉酶的克隆和表达

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An extracellular #alpha#-amylase gene from the hyperthermophilic archaeon Pyrococcus woesei has been cloned and sequenced. The 1.4-kb protein-coding sequence is identical to that of the corresponding #alpha#-amylase gene of the closely related species P.furiosus. By using a shuttle cloning vector for halophilic bacteria, the P. woesei #alpha#-amylase was expressed in the moderate halophile Halomonas elongata, under the control of a native H. elongata promoter. The hyperthermophilic amylase activity expressed in the halophilic host was recovered completely in the crude membrane fraction of cell homogenates, suggesting the formation of inclusion bodies or that the secretion machinery of H. elongata may fail to recognize and release the pyrococcal #alpha#-amylase to the extracellular medium. However, thermal stability, metal ion interactions, optimal temperature and pH values for the crude and purified recombinant #alpha#-amylase were comparable with those of the native pyrococcal enzyme. The P. woesei amylase activity expressed in H. elongata was consistently detected in the cells upon growth on a wide range of NaCl concentrations (0.7-2.5 mol l~(-1)). To our knowledge, this is the first report on the expression of an archaeal gene (P. woesei #alpha#-amylase) in a moderate halophilic host which serves as a cell factory able to grow under extreme salt conditions and with very simple nutritional requirements.
机译:来自超嗜热古生火球菌的细胞外#α#-淀粉酶基因已被克隆并测序。 1.4-kb蛋白质编码序列与密切相关的物种P.furiosus的相应的#alpha#-淀粉酶基因相同。通过使用用于嗜盐细菌的穿梭克隆载体,在天然嗜血杆菌的启动子的控制下,中度嗜盐菌Halomonas elongata中表达了沃氏丙酸杆菌α-淀粉酶。嗜盐宿主中表达的高嗜热性淀粉酶活性已在细胞匀浆的粗膜部分中完全回收,这表明包涵体的形成或伸长的嗜血杆菌的分泌机制可能无法识别并释放焦球菌#alpha#-淀粉酶。细胞外培养基。然而,粗和纯化的重组α-α-淀粉酶的热稳定性,金属离子相互作用,最佳温度和pH值与天然焦球菌酶相当。在宽范围的NaCl浓度(0.7-2.5 mol l〜(-1))上生长后,在细胞中一致地检测到在伸长的H.atas中表达的woesei淀粉酶活性。据我们所知,这是关于中度嗜盐宿主中古细菌基因(P. woesei#alpha#-淀粉酶)表达的首次报道,该宿主可作为细胞工厂,能够在极端盐分条件下生长,并且营养要求非常简单。

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