Balslev Y, Hansen G H
Department A, Panum Institute, University of Copenhagen, Denmark.
Histochem J. 1989 Aug;21(8):449-54. doi: 10.1007/BF01845794.
Recombinant protein G (RPG) was conjugated to colloidal gold particles and used for immunocytochemistry. In this report, the preparation of RPG-gold conjugates (RPGG) and the application of these conjugates in spot blot tests and in double immunolabelling are described. The immunolabelling was performed on ultracryosections of pig small intestine using antibodies directed against aminopeptidase N and sucrase-isomaltase. The labelling efficiency of RPGG was compared to that of protein A-gold conjugates (PAG) in different compartments of the enterocyte. Quantification showed that the labelling intensity was dependent on the size of the marker as well as on the kind of protein used for complex formation. The distributions for RPGG and PAG were respectively: for the 12 nm particles, 10.3 and 6.2 particles/micron of length of microvillar membrane, 3.5 and 1.0 particles/micron2 of Golgi profile and 5.9 and 2.0 particles/micron2 of multivesicular body profile; and for the 6 nm particles, 49.6 and 15.7 particles/micron of length of microvillar membrane, 24.4 and 5.0 particles/micron2 of Golgi profile and 25.4 and 3.4 particles/micron2 of multivesicular body profile. Controls showed very little non-specific gold labelling (less than 0.02 gold particles/micron2 of section).
重组蛋白G(RPG)与胶体金颗粒偶联,并用于免疫细胞化学。在本报告中,描述了RPG-金偶联物(RPGG)的制备及其在斑点印迹试验和双重免疫标记中的应用。使用针对氨肽酶N和蔗糖酶-异麦芽糖酶的抗体,对猪小肠的超薄冰冻切片进行免疫标记。在肠细胞的不同区室中,将RPGG的标记效率与蛋白A-金偶联物(PAG)的标记效率进行了比较。定量分析表明,标记强度取决于标记物的大小以及用于形成复合物的蛋白质种类。RPGG和PAG的分布分别为:对于12nm颗粒,微绒毛膜每微米长度有10.3和6.2个颗粒,高尔基体轮廓每平方微米有3.5和1.0个颗粒,多囊泡体轮廓每平方微米有5.9和2.0个颗粒;对于6nm颗粒,微绒毛膜每微米长度有49.6和15.7个颗粒,高尔基体轮廓每平方微米有24.4和5.0个颗粒,多囊泡体轮廓每平方微米有25.4和3.4个颗粒。对照显示非特异性金标记非常少(每平方微米切片少于0.02个金颗粒)。