Wade J B, Coleman R A
Department of Physiology, University of Maryland School of Medicine, Baltimore 21201.
Proc Natl Acad Sci U S A. 1989 Apr;86(8):2723-7. doi: 10.1073/pnas.86.8.2723.
The apical surface of the toad urinary bladder is covered by an interconnected mesh of glycocalyx, which appears to attach to the plasma membrane bilayer. To evaluate the interrelationship between these extracellular elements and intramembrane structures, a strategy was devised to produce composite replicas that allow the simultaneous visualization of intramembrane particles by freeze-fracture while the glycocalyx mesh is replicated by rotary shadowing of the extracellular surface after freeze-drying. Evaluation of these composite replicas by electron microscopy reveals that contacts occur between extracellular filamentous elements and intramembrane particles. This structural organization may be important for stabilizing intramembrane components and for anchoring extracellular elements to the membrane.
蟾蜍膀胱的顶端表面覆盖着一层相互连接的糖萼网,该糖萼网似乎附着在质膜双层上。为了评估这些细胞外成分与膜内结构之间的相互关系,设计了一种策略来制作复合复制品,这种复制品可以通过冷冻断裂同时观察膜内颗粒,而糖萼网则在冻干后通过细胞外表面的旋转阴影法进行复制。通过电子显微镜对这些复合复制品进行评估,结果显示细胞外丝状成分与膜内颗粒之间存在接触。这种结构组织对于稳定膜内成分以及将细胞外成分锚定到膜上可能很重要。