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核酮糖二磷酸羧化酶的玉米大亚基基因和小麦小亚基基因在大肠杆菌中的共表达。

Co-expression of both the maize large and wheat small subunit genes of ribulose-bisphosphate carboxylase in Escherichia coli.

作者信息

Gatenby A A, van der Vies S M, Rothstein S J

机构信息

Plant Breeding Institute, Cambridge.

出版信息

Eur J Biochem. 1987 Oct 1;168(1):227-31. doi: 10.1111/j.1432-1033.1987.tb13409.x.

Abstract

A cDNA clone for the precursor form of the small subunit of wheat ribulose-bisphosphate carboxylase has been modified to allow the expression in Escherichia coli of a mature form of small subunit that lacks the transit peptide. Synthesis of the protein is controlled by a lac promoter, and translation is initiated from a lacZ ribosome binding site, giving rise to a small subunit with several beta-galactosidase amino acids fused to its N-terminus. A plasmid has been constructed that enables both wheat small subunits and maize large subunits to be synthesized in the bacterial cell, but using different promoters to allow independent expression of the rbcS and rbcL genes. When the small subunit is synthesized in the absence of the large subunit, it is found in the soluble fraction but the polypeptide is unstable and has a half-life of less than 15 min. Its size on sucrose gradients indicates a monomeric or dimeric form. When large subunit synthesis is induced in cells containing the small subunit, both subunits are found predominantly in the insoluble fraction and are fully stable for more than 120 min, suggesting that aggregation of the subunits may occur. The two subunits do not assemble together to form an active holoenzyme in vivo, even when nascent large subunits ware synthesized in a pool of mature small subunits. This indicates that other factors may be required to mediate the assembly of the higher plant enzyme.

摘要

小麦核酮糖-1,5-二磷酸羧化酶小亚基前体形式的一个cDNA克隆已被改造,以便在大肠杆菌中表达缺少转运肽的成熟小亚基形式。蛋白质的合成由lac启动子控制,翻译从lacZ核糖体结合位点起始,产生一个在其N端融合了几个β-半乳糖苷酶氨基酸的小亚基。构建了一个质粒,使得小麦小亚基和玉米大亚基都能在细菌细胞中合成,但使用不同的启动子以允许rbcS和rbcL基因独立表达。当在没有大亚基的情况下合成小亚基时,它存在于可溶性部分,但该多肽不稳定,半衰期小于15分钟。其在蔗糖梯度上的大小表明为单体或二聚体形式。当在含有小亚基的细胞中诱导大亚基合成时,两个亚基主要存在于不溶性部分,并且在120多分钟内完全稳定,这表明亚基可能发生聚集。即使新生的大亚基在成熟小亚基池中合成,这两个亚基在体内也不会组装在一起形成有活性的全酶。这表明可能需要其他因子来介导高等植物酶的组装。

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