Turnbough C L, Kerr K H, Funderburg W R, Donahue J P, Powell F E
J Biol Chem. 1987 Jul 25;262(21):10239-45.
The pyrF gene of Escherichia coli K12, which encodes the pyrimidine biosynthetic enzyme orotidine-5'-monophosphate (OMP) decarboxylase, is part of an operon that includes a downstream gene designated orfF. The orfF gene product is a small polypeptide of unknown function. The nucleotide sequence of a 1549-base pair chromosomal fragment containing this operon was determined. An open reading frame capable of encoding the 27-kDa OMP decarboxylase subunit was identified and shown to be the pyrF structural gene by purifying and characterizing OMP decarboxylase. The subunit molecular weight (Mr = 26,350), amino-terminal amino acid sequence, and amino acid composition of the polypeptide predicted from the nucleotide sequence are in excellent agreement with those properties determined for the purified enzyme. The orfF structural gene was tentatively identified and apparently encodes an 11,396-dalton polypeptide. The orfF translational initiation codon overlaps the pyrF termination codon, which may indicate translational coupling in the expression of these genes. The pyrF promoter was mapped by primer extension of in vivo transcripts. The primary transcriptional initiation site is 51 base pairs upstream of the pyrF structural gene. The level of pyrF transcription and OMP decarboxylase synthesis was found to be coordinately derepressed by pyrimidine limitation, indicating that regulation of pyrF gene expression occurs at the transcriptional level. Inspection of the nucleotide sequence indicates that pyrF gene expression is not regulated by an attenuation control mechanism similar to that described for the pyrBI operon or pyrE gene. Finally, we compared the amino acid sequences of the OMP decarboxylases from E. coli, Saccharomyces cerevisiae, Neurospora crassa, and Ehrlich ascites cells to identify conserved regions.
大肠杆菌K12的pyrF基因编码嘧啶生物合成酶乳清苷-5'-单磷酸(OMP)脱羧酶,它是一个操纵子的一部分,该操纵子包含一个下游基因,命名为orfF。orfF基因产物是一种功能未知的小多肽。测定了包含该操纵子的一个1549碱基对染色体片段的核苷酸序列。通过纯化和鉴定OMP脱羧酶,确定了一个能够编码27-kDa OMP脱羧酶亚基的开放阅读框,并证明它是pyrF结构基因。从核苷酸序列预测的该多肽的亚基分子量(Mr = 26,350)、氨基末端氨基酸序列和氨基酸组成与纯化酶的这些特性高度一致。初步鉴定了orfF结构基因,它显然编码一种11,396道尔顿的多肽。orfF翻译起始密码子与pyrF终止密码子重叠,这可能表明这些基因表达中的翻译偶联。通过体内转录本的引物延伸对pyrF启动子进行了定位。主要转录起始位点在pyrF结构基因上游51个碱基对处。发现pyrF转录水平和OMP脱羧酶合成水平在嘧啶限制下协同去阻遏,表明pyrF基因表达的调控发生在转录水平。对核苷酸序列的检查表明,pyrF基因表达不受类似于pyrBI操纵子或pyrE基因所描述的衰减控制机制的调控。最后,我们比较了大肠杆菌、酿酒酵母、粗糙脉孢菌和艾氏腹水癌细胞中OMP脱羧酶的氨基酸序列,以确定保守区域。