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Expression biotinylation and purification of a biotin-domain peptide from the biotin carboxy carrier protein of Escherichia coli acetyl-CoA carboxylase.

机译:从大肠杆菌乙酰辅酶A羧化酶的生物素羧基载体蛋白表达生物素化和纯化生物素域肽。

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摘要

A protein segment consisting of the C-terminal 87 residues of the biotin carboxy carrier protein from Escherichia coli acetyl-CoA carboxylase was overexpressed in E. coli. The expressed biotin-domain peptide can be fully biotinylated by coexpression with a plasmid that overproduces E. coli biotin ligase. The extent of biotinylation was limited in vivo, but could be taken to completion in cell lysates on addition of ATP and biotin. We used the coexpression of biotin ligase and acceptor protein to label the biotin-domain peptide in vitro with [3H]biotin, which greatly facilitated development of a purification procedure. The apo (unbiotinylated) form of the protein was prepared by induction of biotin-domain expression in a strain lacking the biotin-ligase-overproduction plasmid. The apo domain could be separated from the biotinylated protein by ion-exchange chromatography or non-denaturing PAGE, and was converted into the biotinylated form of the peptide on addition of purified biotin ligase. The identify of the purified biotin-domain peptide was confirmed by N-terminal sequence analysis, amino acid analysis and m.s. The domain was readily produced and purified in sufficient quantities for n.m.r. structural analysis.
机译:在大肠杆菌中过表达由大肠杆菌乙酰辅酶A羧化酶的生物素羧基载体蛋白的C末端87个残基组成的蛋白质区段。通过与过量产生大肠杆菌生物素连接酶的质粒共表达,可以将表达的生物素结构域肽完全生物素化。生物素化的程度在体内受到限制,但是可以在加入ATP和生物素的细胞裂解物中完全溶解。我们使用生物素连接酶和受体蛋白的共表达在体外用[3H]生物素标记生物素结构域肽,这极大地促进了纯化程序的开发。通过在缺乏生物素-连接酶过量产生质粒的菌株中诱导生物素结构域表达来制备蛋白质的载脂蛋白(非生物素化)形式。可通过离子交换色谱或非变性PAGE将apo结构域与生物素化的蛋白质分离,并通过添加纯化的生物素连接酶将其转化为肽的生物素化形式。纯化的生物素结构域肽的鉴定通过N端序列分析,氨基酸分析和MS。该结构域很容易产生,并以n.m.r.足够的量纯化。结构分析。

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