Donohue T J, McEwan A G, Kaplan S
J Bacteriol. 1986 Nov;168(2):962-72. doi: 10.1128/jb.168.2.962-972.1986.
The Rhodobacter sphaeroides cytochrome c2 functions as a mobile electron carrier in both aerobic and photosynthetic electron transport chains. Synthetic deoxyoligonucleotide probes, based on the known amino acid sequence of this protein (Mr 14,000), were used to identify and clone the cytochrome c2 structural gene (cycA). DNA sequence analysis of the cycA gene indicated the presence of a typical procaryotic 21-residue signal sequence, suggesting that this periplasmic protein is synthesized in vivo as a precursor. Synthesis of an immunoreactive cytochrome c2 precursor protein (Mr 15,500) was observed in vitro when plasmids containing the cycA gene were used as templates in an R. sphaeroides coupled transcription-translation system. Approximately 500 base pairs of DNA upstream of the cycA gene was sufficient to allow expression of this gene product in vitro. Northern blot analysis with an internal cycA-specific probe identified at least two possibly monocistronic transcripts present in both different cellular levels and relative stoichiometries in steady-state cells grown under different physiological conditions. The ratio of the small (740-nucleotide) and large (920-nucleotide) cycA-specific mRNA species was dependent on cultural conditions but was not affected by light intensity under photosynthetic conditions. Our results suggest that the increase in the cellular level of the cytochrome c2 protein found in photosynthetic cells was due, in part, to increased transcription of the single-copy cyc operon.
球形红细菌细胞色素c2在有氧和光合电子传递链中均作为移动电子载体发挥作用。基于该蛋白质已知氨基酸序列(分子量14,000)合成的脱氧寡核苷酸探针,用于鉴定和克隆细胞色素c2结构基因(cycA)。cycA基因的DNA序列分析表明存在典型的原核21个残基信号序列,这表明这种周质蛋白在体内以前体形式合成。当含有cycA基因的质粒在球形红细菌偶联转录-翻译系统中用作模板时,在体外观察到免疫反应性细胞色素c2前体蛋白(分子量15,500)的合成。cycA基因上游约500个碱基对的DNA足以在体外表达该基因产物。用cycA内部特异性探针进行的Northern印迹分析确定,在不同生理条件下生长的稳态细胞中,至少存在两种可能的单顺反子转录本,它们在不同细胞水平和相对化学计量中都存在。小(740个核苷酸)和大(920个核苷酸)的cycA特异性mRNA种类的比例取决于培养条件,但在光合条件下不受光照强度影响。我们的结果表明,光合细胞中细胞色素c2蛋白细胞水平的增加部分归因于单拷贝cyc操纵子转录的增加。