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来自深海栖热球菌的 GH57 家族直链淀粉/支链淀粉糊精酶:基因表达及重组酶的特性。

A GH57 family amylopullulanase from deep-sea Thermococcus siculi: expression of the gene and characterization of the recombinant enzyme.

机构信息

College of Marine Sciences, HuaiHai Institute of Technology, Lianyungang, 222005, People's Republic of China.

出版信息

Curr Microbiol. 2011 Jan;62(1):222-8. doi: 10.1007/s00284-010-9690-6. Epub 2010 Jul 1.

Abstract

The gene encoding a new extracellular amylopullulanase (type II pullulanase) was cloned from an extremely thermophilic anaerobic archaeon Thermococcus siculi strain HJ21 isolated previously from a deep-sea hydrothermal vent. The functional hydrolytic domain of the amylopullulanase (TsiApuN) and its MalE fusion protein (MTsiApuN) were expressed heterologously. The complete amylopullulanase (TsiApu) was also purified from fermentation broth of the strain. The pullulanase and amylase activities of the three enzymes were characterized. TsiApu had optimum temperature of 95°C for the both activities, while MTsiApuN and TsiApuN had a higher optimum temperature of 100°C. The residual total activities of MTsiApuN and TsiApuN were both 89% after incubation at 100°C for 1 h, while that of TsiApu was 70%. For all the three enzymes the optimum pHs for amylase and pullulanase activities were 5.0 and 6.0, respectively. By analyzing enzymatic properties of the three enzymes, this study suggests that the carboxy terminal region of TsiApu might interfere with the thermoactivity. The acidic thermoactive amylopullulanases MTsiApuN and TsiApuN could be further employed for industrial saccharification of starch.

摘要

从先前从深海热液喷口分离的极度嗜热厌氧古菌 Thermococcus siculi 菌株 HJ21 中克隆了一个编码新胞外支链淀粉酶/普鲁兰酶(II 型普鲁兰酶)的基因。该淀粉酶/普鲁兰酶的功能水解结构域(TsiApuN)及其 MalE 融合蛋白(MTsiApuN)被异源表达。该菌株发酵液中的完整淀粉酶/普鲁兰酶(TsiApu)也被纯化。对三种酶的普鲁兰酶和淀粉酶活性进行了表征。TsiApu 的两种活性的最适温度均为 95°C,而 MTsiApuN 和 TsiApuN 的最适温度则更高,为 100°C。在 100°C 孵育 1 小时后,MTsiApuN 和 TsiApuN 的残余总活性均为 89%,而 TsiApu 的残余总活性为 70%。对于所有三种酶,淀粉酶和普鲁兰酶活性的最适 pH 值分别为 5.0 和 6.0。通过分析三种酶的酶学性质,本研究表明 TsiApu 的羧基末端区域可能会干扰其热活性。酸性热活性的淀粉酶/普鲁兰酶 MTsiApuN 和 TsiApuN 可进一步用于淀粉的工业糖化。

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