酶金细胞化学研究进展综述。

Scanning microscopy. Supplement Pub Date : 1989-01-01
I Londoño, P A Coulombe, M Bendayan
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引用次数: 0

摘要

最初是为核酸的原位定位而开发的,酶金方法已经扩展到检测多种生物分子。酶金方法基于酶与其底物之间存在的高度特异性相互作用,可用于包埋前和包埋后的标记过程。必须确定最佳保存所研究的每种特定基质的固定和包埋条件。另一方面,在胶体金颗粒上吸附纯化酶所需的条件应根据每种蛋白质的生化特性来确定。标记方案必须考虑到酶活性的最佳条件。酶-金复合物已被证明保留了其生化特性,并且通过各种对照实验评估了所获得的每种标记的特异性。最初应用于核酸的演示,该方法已扩展到各种底物的超微结构定位,特别是最近的糖缀合物和磷脂。事实上,在包埋前和包埋后标记方案中应用的各种糖苷酶-金复合物和磷脂酶-金复合物确实特异性地标记了质膜以及各种定义的亚细胞区室。此外,标记强度的形态计量学评估揭示了室间结合位点数量的差异。考虑到它的多功能性、简单性和效率,酶金技术为在细胞和亚细胞水平上定位各种生物分子提供了一种非常有价值的细胞化学工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brief review on progresses in enzyme-gold cytochemistry.

Initially developed for the in situ localization of nucleic acids, the enzyme-gold approach has been extended to the detection of a large variety of biological molecules. The enzyme-gold approach, based on the highly specific interaction existing between an enzyme and its substrate, can be used both in pre-embedding and post-embedding labeling procedures. Fixation and embedding conditions for the best preservation of each particular substrate under study have to be defined. On the other hand, conditions required to adsorb purified enzymes on colloidal gold particles should be determined according to the biochemical properties of each protein. Labeling protocols must be performed taking into consideration the optimal conditions for the enzymatic activity. The enzyme-gold complexes have been shown to retain their biochemical properties and the specificity of each labeling obtained has been assessed through various control experiments. Initially applied for the demonstration of nucleic acids, the approach has been extended to the ultrastructural localization of various substrates, and in particular, more recently, glycoconjugates and phospholipids. Indeed, various glycosidase-gold complexes and a phospholipase-gold complex, applied in pre- and post-embedding labeling protocols, did specifically label plasma membranes as well as various defined subcellular compartments. In addition, the morphometrical evaluation of labeling intensities revealed differences in amounts of binding sites between compartments. Considering its versatility, simplicity and efficiency, the enzyme-gold technique provides an alternative, very valuable cytochemical tool for the localization of a variety of biological molecules at the cellular and subcellular level.

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