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100-kD 包被囊泡蛋白:用单克隆抗体研究其分子异质性和细胞内分布

100-kD coated vesicle proteins: molecular heterogeneity and intracellular distribution studied with monoclonal antibodies.

作者信息

Robinson M S

出版信息

J Cell Biol. 1987 Apr;104(4):887-95. doi: 10.1083/jcb.104.4.887.

Abstract

Proteins with molecular weights of around 100,000 (designated 100K) are found in all coated vesicles. Five monoclonal antibodies have been raised against the major 100K proteins of bovine brain coated vesicles, which migrate on SDS gels as three closely spaced bands. One antibody stains the middle band (band B), two stain both upper and lower bands (bands A and C), and two stain the lower band (band C) only. Thus, the polypeptides in bands A and C are related (but not identical), a result confirmed by NH2-terminal sequencing. Other tissues were found to express proteins corresponding to, and co-migrating with, bands B and C but not band A. Only the two antibodies that recognize both A and C stained fixed and permeabilized tissue culture cells; they both showed a punctate pattern in the plane of the plasma membrane. Double labeling with anti-clathrin antibodies confirmed that the dots correspond to coated pits and vesicles. However, perinuclear staining seen with anti-clathrin, corresponding to Golgi-derived coated vesicles, was conspicuously absent with the two monoclonal antibodies. Affinity-purified polyclonal antisera against the 100K proteins, reported earlier, gave perinuclear as well as punctate staining; these included one antiserum which gave mainly perinuclear staining (Robinson, M. S., and B. M. F. Pearse, 1986, J. Cell Biol., 102:48-54). Thus, different 100K proteins appear to be found in different membrane compartments. Since the 100K proteins are thought to lie between clathrin and the membrane proteins of the vesicle, these results may help to explain how different membrane proteins can be sorted into coated vesicles in different parts of the cell.

摘要

在所有被膜小泡中都发现了分子量约为100,000的蛋白质(称为100K)。已经制备了五种针对牛脑被膜小泡主要100K蛋白质的单克隆抗体,这些蛋白质在SDS凝胶上迁移形成三条紧密相邻的条带。一种抗体标记中间条带(条带B),两种抗体标记上、下条带(条带A和C),另外两种抗体仅标记下条带(条带C)。因此,条带A和C中的多肽是相关的(但不相同),这一结果通过氨基末端测序得到证实。发现其他组织表达与条带B和C相对应且迁移位置相同的蛋白质,但不表达条带A的蛋白质。只有识别条带A和C的两种抗体能够标记固定并通透处理的组织培养细胞;它们在质膜平面上均呈现点状分布。用抗网格蛋白抗体进行双重标记证实,这些点对应于被膜小窝和小泡。然而,用抗网格蛋白抗体观察到的对应于高尔基体衍生被膜小泡的核周染色,在用这两种单克隆抗体时明显缺失。先前报道的针对100K蛋白质的亲和纯化多克隆抗血清呈现核周以及点状染色;其中一种抗血清主要呈现核周染色(罗宾逊,M. S.,和B. M. F. 皮尔斯,1986年,《细胞生物学杂志》,102:48 - 54)。因此,不同的100K蛋白质似乎存在于不同的膜区室中。由于100K蛋白质被认为位于网格蛋白和小泡的膜蛋白之间,这些结果可能有助于解释不同的膜蛋白如何在细胞的不同部位被分选到被膜小泡中。

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