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绿色木霉内切葡聚糖酶 III 在桑蚕幼虫中的表达及重组蛋白特性分析。

Expression of Trichoderma viride endoglucanase III in the larvae of silkworm, Bombyx mori L. and characteristic analysis of the recombinant protein.

机构信息

Key Laboratory of Animal Epidemic Etiology and Immunological Prevention of Ministry of Agriculture, Zhejiang University, Hangzhou, 310029, People's Republic of China.

出版信息

Mol Biol Rep. 2011 Aug;38(6):3897-902. doi: 10.1007/s11033-010-0505-4. Epub 2010 Nov 25.

Abstract

Endoglucanase is a part of cellulase which hydrolyzes cellulose into glucose. In this study, we cloned endoglucanase III (EG III) gene from Trichoderma viride strain AS 3.3711 using a PCR-based exon splicing method, and expressed EG III recombinant protein in both silkworm BmN cell line and silkworm larvae with an improved Bac-to-Bac/BmNPV mutant baculovirus expression system, which lacks the chiA and v-cath genes of Bombyx mori nucleopolyhedrovirus (BmNPV). The result showed that around 45 kDa protein was visualized in BmN cells at 48 h after the second generation recombinant mBacmid/BmNPV/EG III baculovirus infection. The enzymes from recombinant baculoviruses infected silkworms exhibited significant maximum enzyme activity at the environmental condition of pH 8.0 and temperature 50°C, and increased 20.94 and 19.13% compared with that from blank mBacmid/BmNPV baculoviruses infected silkworms and normal silkworms, respectively. It was stable at pH range from 5.0 to 9.0 and at temperature range from 40 to 60°C. It provided a possibility to generate transgenic silkworms expressing bio-active cellulase, which can catabolize dietary fibers more efficiently, and it might be of great significance for sericulture industry.

摘要

内切葡聚糖酶是纤维素酶的一部分,它将纤维素水解成葡萄糖。本研究采用基于 PCR 的外显子拼接法,从绿色木霉 AS 3.3711 菌株中克隆内切葡聚糖酶 III(EG III)基因,并利用改良的 Bac-to-Bac/BmNPV 突变杆状病毒表达系统在蚕 BmN 细胞系和家蚕幼虫中表达 EG III 重组蛋白,该系统缺失家蚕核型多角体病毒(BmNPV)的 chiA 和 v-cath 基因。结果显示,在第二代重组 mBacmid/BmNPV/EG III 杆状病毒感染后 48 h,BmN 细胞中可观察到约 45 kDa 的蛋白。重组杆状病毒感染家蚕产生的酶在 pH 8.0 和温度 50°C 的环境条件下表现出显著的最大酶活性,与空白 mBacmid/BmNPV 杆状病毒感染家蚕和正常家蚕相比,分别提高了 20.94%和 19.13%。它在 pH 5.0 到 9.0 和温度 40 到 60°C 的范围内稳定。它为生产表达生物活性纤维素酶的转基因家蚕提供了可能性,这种酶可以更有效地代谢膳食纤维,这对于养蚕业可能具有重要意义。

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