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大肠杆菌的磷酸核糖焦磷酸合成酶。纯化酶的性质及prs基因的一级结构

Phosphoribosylpyrophosphate synthetase of Escherichia coli. Properties of the purified enzyme and primary structure of the prs gene.

作者信息

Hove-Jensen B, Harlow K W, King C J, Switzer R L

出版信息

J Biol Chem. 1986 May 25;261(15):6765-71.

PMID:3009477
Abstract

Phosphoribosylpyrophosphate (P-Rib-PP) synthetase of Escherichia coli has been purified to near homogeneity from a strain harboring the prs gene, encoding P-Rib-PP synthetase, on a multicopy plasmid. Analysis of the enzyme showed that it required inorganic phosphate for activity and for stability. Magnesium ions were required both as a complex with the substrate ATP and as a free cation. P-Rib-PP synthetase activity was inhibited strongly by ADP. Kinetic analysis indicated multiple sites of action of ADP. In addition apparent substrate inhibition was exerted by ribose 5-phosphate in the presence of ADP. The nucleotide sequence of the E. coli prs gene has been determined and the coding segment established. The deduced amino acid sequence of P-Rib-PP synthetase contained 314 amino acid residues and the molecular weight was calculated as 34,060. The initiation site of transcription was determined. This site was preceded by well conserved -10 and -35 consensus sequences (pdT-dA-dG-dA-dA-dT and pdT-dT-dG-dA-dT-dG, respectively). The transcription initiation site preceded the potential translation initiation site by 302 nucleotides. Transcription terminated approximately 35 nucleotides downstream from the UAA translation stop codon, within a Thy-rich region following an inverted repeat sequence, indicative of an rho-independent transcription terminator.

摘要

已从一个在多拷贝质粒上携带编码磷酸核糖焦磷酸(P-Rib-PP)合成酶的prs基因的菌株中,将大肠杆菌的磷酸核糖焦磷酸合成酶纯化至接近均一的状态。对该酶的分析表明,它的活性和稳定性都需要无机磷酸盐。镁离子既需要与底物ATP形成复合物,也需要作为游离阳离子。P-Rib-PP合成酶的活性受到ADP的强烈抑制。动力学分析表明ADP有多个作用位点。此外,在ADP存在的情况下,5-磷酸核糖会产生明显的底物抑制作用。已确定了大肠杆菌prs基因的核苷酸序列并确定了编码区段。推导的P-Rib-PP合成酶氨基酸序列包含314个氨基酸残基,计算出的分子量为34,060。确定了转录起始位点。该位点之前有保守性很好的-10和-35共有序列(分别为pdT-dA-dG-dA-dA-dT和pdT-dT-dG-dA-dT-dG)。转录起始位点比潜在的翻译起始位点靠前302个核苷酸。转录在UAA翻译终止密码子下游约35个核苷酸处终止,位于一个富含胸腺嘧啶的区域内,该区域在一个反向重复序列之后,表明这是一个不依赖ρ因子的转录终止子。

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