Barnes E M, Bhattacharyya P
J Supramol Struct. 1977;6(3):333-44. doi: 10.1002/jss.400060306.
Membrane vesicles were prepared from Azotobacter vinelandii spheroplasts by lysis in either potassium phosphate (pH 7.0) or Tris1-acetate (pH 7.8) buffers. These 2 types of preparations differ considerably in their properties: 1) Examination by scanning electron microscopy reveals that the Pi vesicles consist primarily of closed structures 0.6-0.8 micrometer in diameter with a rough or particulate surface similar to that of spheroplasts. The Tris vesicles are significantly smaller, 0.1-0.3 micrometer in diameter, and have a much smoother surface structure. 2) Antisera from rabbits immunized with A. vinelandii lipopolysaccharide antigen will agglutinate Pi vesicles but not Tris vesicles. 3) Tris vesicles have a fourfold higher specific activity of latent H+-ATPase than Pi vesicles. After exposure to Triton X-100 similar ATPase activities are observed for both types of vesicles. 4) Pi vesicles transport calcium in the presence of ATP or lactate at less than 30% of the rats observed for Tris vesicles. 5) Tris vesicles have less than 22% of the transport capacity of Pi vesicles for accumulation of labeled sucrose and less than 3% of the capacity for valinomycin-induced uptake of rubidium observed during respiration. 6) Quinacrine fluorescence intensity is reduced by 30% during lactate oxidation and 20% during ATP hydrolysis by Tris vesicles. Under similar conditions, fluorescence in Pi vesicles is quenched by only 7% and less than 2%, respectively. These findings suggest that Pi vesicles have the normal orientation of the intact cell whereas Tris vesicles have an inverted topology.
通过在磷酸钾(pH 7.0)或Tris-乙酸盐(pH 7.8)缓冲液中裂解,从棕色固氮菌原生质体中制备膜泡。这两种类型的制剂在性质上有很大差异:1)扫描电子显微镜检查显示,Pi膜泡主要由直径为0.6 - 0.8微米的封闭结构组成,其表面粗糙或呈颗粒状,类似于原生质体的表面。Tris膜泡明显较小,直径为0.1 - 0.3微米,表面结构更光滑。2)用棕色固氮菌脂多糖抗原免疫的兔抗血清会凝集Pi膜泡,但不会凝集Tris膜泡。3)Tris膜泡的潜在H⁺-ATPase比活性比Pi膜泡高四倍。在暴露于Triton X-100后,两种类型的膜泡观察到类似的ATPase活性。4)在ATP或乳酸存在下,Pi膜泡运输钙的能力不到Tris膜泡观察值的30%。5)Tris膜泡积累标记蔗糖的运输能力不到Pi膜泡的22%,在呼吸过程中缬氨霉素诱导的铷摄取能力不到Pi膜泡的3%。6)Tris膜泡在乳酸氧化过程中喹吖因荧光强度降低30%,在ATP水解过程中降低20%。在类似条件下,Pi膜泡中的荧光分别仅淬灭7%和不到2%。这些发现表明,Pi膜泡具有完整细胞的正常取向,而Tris膜泡具有反向拓扑结构。