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大肠杆菌的31P核磁共振和冷冻断裂电子显微镜研究。II. 脂多糖和脂多糖 - 磷脂复合物

31P nuclear magnetic resonance and freeze-fracture electron microscopy studies on Escherichia coli. II. Lipopolysaccharide and lipopolysaccharide-phospholipid complexes.

作者信息

van Alphen L, Verkleij A, Burnell E, Lugtenberg B

出版信息

Biochim Biophys Acta. 1980 Apr 24;597(3):502-17. doi: 10.1016/0005-2736(80)90223-0.

Abstract
  1. Freeze-fracture electron microscopy and 31P-NMR spectroscopy on native and electrodialyzed lipopolysaccharide from Escherichia coli K12 cells, both above and below the phase transition temperature, are described. 2. Freeze-fracture electron microscopy of native lipopolysaccharide shows ribbon-like structures below (0 and 22 degrees C) and large vesicles above (37 degrees C) the phase transition temperature. Electrodialyzed lipopolysaccharide (sodium salt) occurs in ribbon-like structures at 0, 22 and 37 degrees C if sodium lipopolysaccharide is hydrated in water. If sodium lipopolysaccharide is hydrated in Tris-HCL/NaCl buffer these ribbon-like structures occur only below the phase transition temperature. Above the phase transition temperature stacked sheets are observed. Moreover, in the latter case, the fracture planes contain particles and pits. Upon etching, sodium lipopolysaccharide when hydrated in water appears to form rods and when hydrated in buffer appears to form mainly stacked lamellae both above (37 degrees C) and below (0 degrees C) the phase transition temperature. 3. High resolution 31P-NMR spectra show that the chemical shifts of the phosphorus atoms in native lipopolysaccharide differ from those in electrodialyzed lipopolysaccharide, probably due to conformational and compositional (the disappearance of ions and (poly)electrolytes) changes. The 31P-NMR spectra of native lipopolysaccharide dispersed in Tris-HCL/NaCl buffer are very broad at 20 and at 40 degrees C indicating little motion. At 22 degrees C electrodialyzed lipopolysaccharide also gives a broad spectrum; at 40 degrees C the spectrum is narrower, indicating more motion, and two peaks are visible. After dispersion in H2o and subsequent addition of buffer, the spectrum of electrodialyzed lipopolysaccharide is narrow both at 20 and 40 degrees C, which can be correlated with the rods observed in freeze etching. After treatment with Ca2+, electrodialyzed lipopolysaccharide shows a very broad spectrum at 40 degrees C probably due to immobilization of the lipopolysaccharide. 4. Freeze-fracture electron microscopy and 31P-NMR spectroscopy of liposomes consisting of native lipopolysaccharide and total phospholipids indicate that the phospholipids and the lipopolysaccharide are mainly organized in bilayers. Lipopolysaccharide in such liposomes undergoes more motion than in the absence of phospholipids. Ca2+ does not influence this behaviour.
摘要
  1. 本文描述了对来自大肠杆菌K12细胞的天然和电渗析脂多糖在高于和低于相变温度时进行的冷冻断裂电子显微镜和31P - NMR光谱分析。2. 天然脂多糖的冷冻断裂电子显微镜显示,在低于(0和22摄氏度)相变温度时呈现带状结构,在高于(37摄氏度)相变温度时呈现大囊泡。如果脂多糖钠盐在水中水合,电渗析脂多糖(钠盐)在0、22和37摄氏度时呈带状结构。如果脂多糖钠盐在Tris - HCL/NaCl缓冲液中水合,这些带状结构仅在低于相变温度时出现。在高于相变温度时观察到堆叠的片层。此外,在后一种情况下,断裂面含有颗粒和凹坑。蚀刻后,脂多糖钠盐在水中水合时似乎形成棒状,在缓冲液中水合时在高于(37摄氏度)和低于(0摄氏度)相变温度时似乎主要形成堆叠的薄片。3. 高分辨率31P - NMR光谱表明,天然脂多糖中磷原子的化学位移与电渗析脂多糖中的不同,这可能是由于构象和组成(离子和(聚)电解质的消失)变化。分散在Tris - HCL/NaCl缓冲液中的天然脂多糖在20和40摄氏度时的31P - NMR光谱非常宽,表明运动很少。在22摄氏度时,电渗析脂多糖也给出宽谱;在40摄氏度时,谱较窄,表明运动更多,并且可见两个峰。在分散于H2o中并随后加入缓冲液后,电渗析脂多糖在20和40摄氏度时的谱都很窄,这与冷冻蚀刻中观察到的棒状结构相关。用Ca2+处理后,电渗析脂多糖在40摄氏度时显示出非常宽的谱,可能是由于脂多糖的固定化。4. 由天然脂多糖和总磷脂组成的脂质体进行的冷冻断裂电子显微镜和31P - NMR光谱分析表明,磷脂和脂多糖主要以双层形式组织。这种脂质体中的脂多糖比不存在磷脂时运动更多。Ca2+不影响这种行为。

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