Cloeckaert A, Verger J M, Grayon M, Vizcaíno N
Laboratoire de Pathologie Infectieuse et Immunologie, Institut National de la Recherche Agronomique, Nouzilly, France.
FEMS Microbiol Lett. 1996 Nov 15;145(1):1-8. doi: 10.1111/j.1574-6968.1996.tb08547.x.
The major outer membrane proteins (OMPs) of Brucella spp. were initially identified in the early 1980s by selective extraction techniques and classified according to their apparent molecular mass as 36-38 kDa OMPs or group 2 porin proteins and 31-34 kDa and 25-27 kDa OMPs which belong to the group 3 proteins. Variation in apparent molecular mass is essentially due to association with peptidoglycan subunits of different sizes. Two genes, omp2a and omp2b, which are closely linked in the Brucella genome, and which share a great degree of homology (> 85%), encode the 36 kDa porin proteins, now named Omp2a and Omp2b proteins respectively. Two genes code for the group 3 OMPs and are named omp25 and omp31. The predicted amino acid sequences of omp25 and omp31 share 34% identity. Furthermore, all Brucella major OMPs share amino acid sequence homology with the major OMPs RopA or RopB of Rhizobium leguminosarum, which supports the close genetic relationship of brucellae with members of the alpha-2 subdivision of the class Proteobacteria. Another characteristic common to the major OMPs of R. leguminosarum and Brucella is that they are tightly, probably covalently, associated with the peptidoglycan. The major OMP genes display diversity among Brucella species, biovars and strains allowing their differentiation, and the polymorphic markers identified have brought new insights into the evolutionary development of the genus Brucella, antigenic variability of brucellae, and future prospects in the field of vaccine development.
布鲁氏菌属的主要外膜蛋白(OMPs)最初是在20世纪80年代初通过选择性提取技术鉴定出来的,并根据其表观分子量分类为36 - 38 kDa的OMPs或第2组孔蛋白蛋白,以及属于第3组蛋白的31 - 34 kDa和25 - 27 kDa的OMPs。表观分子量的变化主要是由于与不同大小的肽聚糖亚基结合。omp2a和omp2b这两个基因在布鲁氏菌基因组中紧密相连,且具有高度同源性(> 85%),分别编码36 kDa的孔蛋白,现分别命名为Omp2a和Omp2b蛋白。有两个基因编码第3组OMPs,分别命名为omp25和omp31。omp25和omp31的预测氨基酸序列具有34%的同一性。此外,所有布鲁氏菌主要OMPs与豆科根瘤菌的主要OMPs RopA或RopB具有氨基酸序列同源性,这支持了布鲁氏菌与变形菌纲α-2亚群成员的密切遗传关系。豆科根瘤菌和布鲁氏菌主要OMPs的另一个共同特征是它们与肽聚糖紧密结合,可能是共价结合。主要OMP基因在布鲁氏菌的种、生物变种和菌株之间表现出多样性,这使得它们能够被区分,所鉴定的多态性标记为布鲁氏菌属的进化发展、布鲁氏菌的抗原变异性以及疫苗开发领域的未来前景带来了新的见解。