Kreutzer D L, Robertson D C
Infect Immun. 1979 Mar;23(3):819-28. doi: 10.1128/iai.23.3.819-828.1979.
The surface topography of whole cells and the chemical composition of cell envelopes of a smooth-intermediate strain (45/0) and a rough strain (45/20) of Brucella abortus was examined. Electron microscopy of whole cells and thin sections did not reveal any gross surface difference(s). Only minor quantitative differences were observed in total lipids, proteins, and the murein layer. However, the lipopolysaccharide composition of the two strains was quite different. Both phenol- and water-soluble lipopolysaccharide fractions were obtained from the strain of higher virulence (45/0), whereas only aqueous lipopolysaccharide could be isolated from the rough strain. In addition to being toxic, the phenol-soluble lipopolysaccharide may be a key virulence factor in intracellular survival of B. obortus within phagocytic cells.
对流产布鲁氏菌的一个光滑-中间型菌株(45/0)和一个粗糙型菌株(45/20)的全细胞表面形貌和细胞包膜的化学成分进行了检测。全细胞和超薄切片的电子显微镜检查未发现任何明显的表面差异。在总脂质、蛋白质和肽聚糖层中仅观察到微小的定量差异。然而,这两个菌株的脂多糖组成有很大不同。从高毒力菌株(45/0)中获得了酚溶性和水溶性脂多糖组分,而从粗糙型菌株中仅能分离出水溶性脂多糖。除具有毒性外,酚溶性脂多糖可能是流产布鲁氏菌在吞噬细胞内生存的关键毒力因子。