Viale A M, Kobayashi H, Akazawa T
Research Institute for Biochemical Regulation, School of Agriculture, Nagoya University, Japan.
J Bacteriol. 1989 May;171(5):2391-400. doi: 10.1128/jb.171.5.2391-2400.1989.
Two sets of genes for the large and small subunits of ribulose 1,5-bisphosphate carboxylase/oxygenase (RuBisCO) were detected in the photosynthetic purple sulfur bacterium Chromatium vinosum by hybridization analysis with RuBisCO gene probes, cloned by using the lambda Fix vector, and designated rbcL-rbcS and rbcA-rbcB. rbcL and rbcA encode the large subunits, and rbcS and rbcB encode the small subunits. rbcL-rbcS was the same as that reported previously (A. M. Viale, H. Kobayashi, T. Takabe, and T. Akazawa, FEBS Lett. 192:283-288, 1985). A DNA fragment bearing rbcA-rbcB was subcloned in plasmid vectors and sequenced. We found that rbcB was located 177 base pairs downstream of the rbcA coding region, and both genes were preceded by plausible procaryotic ribosome-binding sites. rbcA and rbcD encoded polypeptides of 472 and 118 amino acids, respectively. Edman degradation analysis of the subunits of RuBisCO isolated from C. vinosum showed that rbcA-rbcB encoded the enzyme present in this bacterium. The large- and small-subunit polypeptides were posttranslationally processed to remove 2 and 1 amino acid residues from their N-termini, respectively. Among hetero-oligomeric RuBisCOs, the C. vinosum large subunit exhibited higher homology to that from cyanobacteria, eucaryotic algae, and higher plants (71.6 to 74.2%) than to that from the chemolithotrophic bacterium Alcaligenes eutrophus (56.6%). A similar situation has been observed for the C. vinosum small subunit, although the homology among small subunits from different organisms was lower than that among the large subunits.
通过用核糖二磷酸羧化酶/加氧酶(RuBisCO)基因探针进行杂交分析,在光合紫色硫细菌嗜硫色杆菌中检测到了两组分别用于RuBisCO大亚基和小亚基的基因。这些基因探针是使用λFix载体克隆的,分别命名为rbcL - rbcS和rbcA - rbcB。rbcL和rbcA编码大亚基,rbcS和rbcB编码小亚基。rbcL - rbcS与之前报道的相同(A.M. 维亚莱、小林浩、高部隆和赤泽敏,《欧洲生物化学学会联合会快报》192:283 - 288,1985)。携带rbcA - rbcB的DNA片段被亚克隆到质粒载体中并进行测序。我们发现rbcB位于rbcA编码区下游177个碱基对处,并且两个基因之前都有合理的原核生物核糖体结合位点。rbcA和rbcD分别编码472和118个氨基酸的多肽。对从嗜硫色杆菌中分离出的RuBisCO亚基进行的埃德曼降解分析表明,rbcA - rbcB编码了该细菌中存在的酶。大亚基和小亚基多肽在翻译后分别从其N端去除了2个和1个氨基酸残基。在异源寡聚RuBisCO中,嗜硫色杆菌的大亚基与蓝细菌、真核藻类和高等植物的大亚基相比,具有更高的同源性(71.6%至74.2%),而与化能自养细菌嗜碱产碱杆菌的大亚基同源性较低(56.6%)。嗜硫色杆菌的小亚基也观察到了类似情况,尽管不同生物体的小亚基之间的同源性低于大亚基之间的同源性。