Cotman C W, Banker G, Churchill L, Taylor D
J Cell Biol. 1974 Nov;63(2 Pt 1):441-55. doi: 10.1083/jcb.63.2.441.
Most synapses in the central nervous system exhibit a prominent electron-opaque specialization of the postsynaptic plasma membrane called the postsynaptic density (PSD). We have developed a procedure for the isolation of PSDs which is based on their buoyant density and their insolubility in N-lauroyl sarcosinate. Treatment of synaptic membranes with this detergent solubilizes most plasma membranes and detaches PSDs from the plasma membrane so that they can be purified on a density gradient. Isolated PSDs appear structurally intact and exhibit those properties which characterize them in tissue. The isolated PSDs are of the size, shape, and electron opacity of those seen in tissue; they stain with both ethanolic phosphotungstic acid and bismuth iodide-uranyl lead and the fraction contains cyclic 3',5'-phosphodiesterase activity. Quantitative electron microscope analysis of the PSD fraction gives an estimated purity of better than 85%. Inasmuch as the PSD is associated primarily with dendritic excitatory synapses, our PSD fraction represents the distinctive plasma membrane specialization of this specific synaptic type in isolation.
中枢神经系统中的大多数突触在突触后质膜上呈现出一种显著的电子致密特化结构,称为突触后致密物(PSD)。我们基于PSD的浮力密度及其在月桂酰肌氨酸钠中的不溶性,开发了一种分离PSD的方法。用这种去污剂处理突触膜可溶解大多数质膜,并使PSD与质膜分离,从而可以在密度梯度上进行纯化。分离得到的PSD在结构上保持完整,并表现出其在组织中的特征性质。分离得到的PSD具有在组织中所见的大小、形状和电子密度;它们能用乙醇磷钨酸和碘化铋 - 铀酰铅染色,并且该组分含有环3',5'-磷酸二酯酶活性。对PSD组分进行定量电子显微镜分析,估计纯度超过85%。由于PSD主要与树突兴奋性突触相关,我们的PSD组分单独代表了这种特定突触类型独特的质膜特化结构。