Jones M C, Jenkins J M, Smith A G, Howe C J
Department of Biochemistry, University of Cambridge, UK.
Plant Mol Biol. 1994 Feb;24(3):435-48. doi: 10.1007/BF00024112.
The genes for 5-aminolevulinic acid dehydratase (ALAD) and uroporphyrinogen III synthase (UROS), two enzymes in the biosynthetic pathway for tetrapyrroles, were independently isolated from a plasmid-based genomic library of Anacystis nidulans R2 (also called Synechococcus sp. PCC7942), by their ability to complement Escherichia coli strains carrying mutations in the equivalent genes (hemB and hemD respectively). The identity of the genes was confirmed by comparing the appropriate enzyme activities in complemented and mutant strains. Subclones of the original plasmids that were also capable of complementing the mutants were sequenced. The inferred amino acid sequence of the cyanobacterial HemB protein indicates a significant difference in the metal cofactor requirement from the higher-plant enzymes, which was confirmed by overexpression and biochemical analysis. The organisation of the cyanobacterial hemD locus differs markedly from other prokaryotes. Two open reading frames were found immediately upstream of hemD. The product of one shows considerable similarity to published sequences from other organisms for uroporphyrinogen III methylase (UROM), an enzyme involved in the production of sirohaem and cobalamins (including vitamin B-12). The product of the other shows motifs which are similar to those found in proteins responsible for metabolic regulation in yeast and indicates that this family of transcription control proteins, which has previously been reported only from eukaryotes, is also represented in prokaryotes.
5-氨基乙酰丙酸脱水酶(ALAD)和尿卟啉原III合酶(UROS)是四吡咯生物合成途径中的两种酶,其基因是从基于质粒的集胞藻R2(也称为聚球藻属PCC7942)基因组文库中独立分离出来的,分离依据是它们能够互补携带相应基因突变(分别为hemB和hemD)的大肠杆菌菌株。通过比较互补菌株和突变菌株中的相应酶活性,证实了这些基因的身份。对同样能够互补突变体的原始质粒亚克隆进行了测序。蓝藻HemB蛋白的推断氨基酸序列表明,其对金属辅因子的需求与高等植物酶有显著差异,这一点通过过表达和生化分析得到了证实。蓝藻hemD基因座的组织与其他原核生物明显不同。在hemD的紧邻上游发现了两个开放阅读框。其中一个的产物与其他生物已发表的尿卟啉原III甲基转移酶(UROM)序列有相当大的相似性,UROM是一种参与生成硫胺素和钴胺素(包括维生素B-12)的酶。另一个的产物显示出与酵母中负责代谢调控的蛋白质中发现的基序相似,这表明这个以前仅在真核生物中报道过的转录控制蛋白家族在原核生物中也存在。