Vesanto E, Varmanen P, Steele J L, Palva A
Agricultural Research Centre of Finland, Food Research Institute, Jokioinen.
Eur J Biochem. 1994 Sep 15;224(3):991-7. doi: 10.1111/j.1432-1033.1994.00991.x.
An aminopeptidase C gene (pepC) was detected by nucleic acid hybridization from an industrially important Lactobacillus helveticus strain. Three hybridization positive clones were isolated from a gene library of this L. helveticus strain, and one of them was characterized in more detail. Deletion mapping localized the hybridization positivity into a 2.8-kb fragment, which also encoded aminopeptidase activity. This fragment was sequenced and two open reading frames (ORF1 and 2) of 1347 and 840 base pairs were identified. The ORF1 was preceded by a typical prokaryotic promoter region, and an inverted repeat structure with delta G of -49.0 kJ mol-1 was found downstream of the coding region. The deduced amino acid sequence of ORF1, with an encoding capacity for a 51.4-kDa protein, was shown to share 48.3% and 98.0% identities with the PepC proteins from Lactococcus lactis and L. helveticus CNRZ32, respectively, thus confirming that ORF1 codes for an aminopeptidase C. mRNA size analyses revealed 1.7-kb and 2.7-kb transcripts in Northern blot with the pepC-specific probe. A further analysis with the pepC- and ORF2-specific probes showed that downstream ORF2 is co-transcribed with the pepC gene at the exponential phase of growth whereas, at the stationary growth phase, transcripts derived from the pepC promoter were below the detection limit, and the ORF2 was expressed by its own promoter. The 5' end mapping of the pepC transcripts with primer extension revealed one transcription start site suggesting a new position for the pepC promoter region when compared to that predicted for the L. helveticus CNRZ32 pepC gene. Expression of pepC was also studied in L. helveticus as the function of growth in a bioreactor study. Transcription of pepC was typical to exponential growth phase expression. The level of total thiol-aminopeptidase activity, however, remained nearly constant throughout the stationary growth phase.
通过核酸杂交从一株具有重要工业价值的瑞士乳杆菌中检测到一个氨肽酶C基因(pepC)。从该瑞士乳杆菌菌株的基因文库中分离出三个杂交阳性克隆,并对其中一个进行了更详细的表征。缺失定位将杂交阳性定位到一个2.8 kb的片段上,该片段也编码氨肽酶活性。对该片段进行测序,鉴定出两个分别为1347和840个碱基对的开放阅读框(ORF1和ORF2)。ORF1之前有一个典型的原核启动子区域,在编码区域下游发现了一个ΔG为-49.0 kJ mol-1的反向重复结构。ORF1推导的氨基酸序列编码一个51.4 kDa的蛋白质,与乳酸乳球菌和瑞士乳杆菌CNRZ32的PepC蛋白分别具有48.3%和98.0%的同一性,从而证实ORF1编码氨肽酶C。mRNA大小分析显示,在Northern印迹中,用pepC特异性探针检测到1.7 kb和2.7 kb的转录本。用pepC和ORF2特异性探针进一步分析表明,下游的ORF2在生长指数期与pepC基因共转录,而在稳定生长期,来自pepC启动子的转录本低于检测限,ORF2由其自身的启动子表达。用引物延伸法对pepC转录本的5'端进行定位,发现一个转录起始位点,与瑞士乳杆菌CNRZ32 pepC基因预测的启动子区域相比,该位点为pepC启动子区域提供了一个新的位置。在生物反应器研究中,还研究了pepC在瑞士乳杆菌中的表达与生长的关系。pepC的转录是典型的指数生长期表达。然而,在整个稳定生长期,总硫醇-氨肽酶活性水平几乎保持不变。