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利用枯草芽孢杆菌ytkA和ywoF基因的启动子及信号肽编码序列进行mpd基因的重组表达与分泌

[Recombinant expression and secretion of mpd gene using the promoters and signal peptide-encoding sequences of ytkA and ywoF gene from Bacillus subtilis].

作者信息

Zhang Xiao-Zhou, Yan Xin, Cui Zhong-Li, Li Shun-Peng

机构信息

Key Laboratory for Microbiological Engineering of Agricultural Environment, Ministry of Agriculture, College of Life Science, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2006 Mar;22(2):249-56.

Abstract

A shuttle promoter-probe vector pNW33N-mpd was constructed with the E. coli-B. subtilis shuttle vector pNW33N and the mature mpd gene without it' s signal peptide-encoding sequence. The promoter fragments of B. subtilis ytkA and ywoF gene were cloned from plasmid pMPDP3 and pMPDP29 then generated the shuttle expression vector pNYTM and pNYWM. Expression vectors pNYTM and pNYWM were transformed into B. subtilis 1A751 to construct the expression strain 1A751 (pNYTM) and 1A751 (pNYTM), in these strains, under the control of the promoters and signal peptides of ytkA and ywoF gene, mpd gene was expressed and secreted with its biological activity; the result showed that the promoter of ytkA gene is much stronger than that of ywoF gene. Then a new shuttle expression-secretion vector pYNMK was constructed using the ytkA gene promoter and the signal peptide-encoding sequence of B. subtilis nprB gene, the expression of mpd gene achieved a higher level using the B. subtilis WB800 as the host, the methyl parathion hydrolase activity accumulated to a maximum level of 10.40 u/mL after 84 h of cultivation at the late stationary phase, which was 10.8-fold higher than the expression level of the original Plesiomonas strain M6, about 91.4% of the recombinant expression production was secreted into the culture medium.

摘要

利用大肠杆菌-枯草芽孢杆菌穿梭载体pNW33N和不含信号肽编码序列的成熟mpd基因构建了穿梭启动子-探针载体pNW33N-mpd。从质粒pMPDP3和pMPDP29中克隆枯草芽孢杆菌ytkA和ywoF基因的启动子片段,进而构建穿梭表达载体pNYTM和pNYWM。将表达载体pNYTM和pNYWM转化至枯草芽孢杆菌1A751中,构建表达菌株1A751(pNYTM)和1A751(pNYWM),在这些菌株中,mpd基因在ytkA和ywoF基因的启动子及信号肽控制下表达并分泌,且具有生物活性;结果表明,ytkA基因的启动子比ywoF基因的启动子更强。随后,利用ytkA基因启动子和枯草芽孢杆菌nprB基因的信号肽编码序列构建了新型穿梭表达-分泌载体pYNMK,以枯草芽孢杆菌WB800作为宿主时,mpd基因的表达水平更高,在稳定期后期培养84 h后,甲基对硫磷水解酶活性积累至最高水平10.40 u/mL,比原始嗜水气单胞菌菌株M6的表达水平高10.8倍,约91.4%的重组表达产物分泌至培养基中。

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