Panté N, Bastos R, McMorrow I, Burke B, Aebi U
M. E. Müller Institute for Microscopy, Biozentrum, University of Basel, Switzerland.
J Cell Biol. 1994 Aug;126(3):603-17. doi: 10.1083/jcb.126.3.603.
We have used antibodies directed against a number of nuclear pore complex (NPC) proteins to determine their mutual interactions and location within the three-dimensional structure of the NPC. A monoclonal antibody, termed QE5, recognized three NPC polypeptides, p250, NUP153, and p62 on Western blots, and labeled the nuclear envelope of several cultured cell lines by immunofluorescence microscopy. These three polypeptides contained O-linked N-acetylglucosamine residues and were released from the NPC by detergent/high-salt treatment as discrete high molecular weight complexes. p250 was found in association with a novel 75 kD protein, NUP153 was released as a homo-oligomer of about 1 megadalton, and p62 was associated with polypeptides of 58 and 54 kD (previously reported by Finlay, D. R., E. Meier, P. Bradley, J. Horecka, and D. J. Forbes. 1991. J. Cell Biol. 114:169-183). p75, p58, and p54 were not galactosylated in vitro. Xenopus oocyte NEs were labeled with gold-conjugated QE5 and prepared for electron microscopy by quick freezing/freeze drying/rotary metal shadowing. This EM preparation method enabled us to more precisely localize the epitopes of this antibody to the cytoplasmic filaments and the nuclear basket of the NPC. Since QE5 recognizes three O-linked NPC glycoproteins, its labeling was compared with that of the lectin wheat germ agglutinin which recognizes O-linked N-acetylglucosamine moieties. The two probes were found to yield similar, although not identical, distributions of label. To identify the individual proteins with particular NPC components, we have used an anti-peptide antibody against NUP153 and a monospecific anti-p250 polyclonal antibody. Labeling with these two antibodies has documented that NUP153 is a constituent of the nuclear basket with at least one of its epitopes residing in its terminal ring, whereas p250 is a constituent of the cytoplasmic filaments.
我们使用了针对多种核孔复合体(NPC)蛋白的抗体,以确定它们在NPC三维结构中的相互作用和位置。一种名为QE5的单克隆抗体,在蛋白质免疫印迹法中识别三种NPC多肽,即p250、NUP153和p62,并通过免疫荧光显微镜标记了几种培养细胞系的核膜。这三种多肽含有O-连接的N-乙酰葡糖胺残基,并通过去污剂/高盐处理以离散的高分子量复合物形式从NPC中释放出来。发现p250与一种新的75kD蛋白相关联,NUP153以约1兆道尔顿的同型寡聚体形式释放,p62与58kD和54kD的多肽相关联(先前由Finlay, D. R., E. Meier, P. Bradley, J. Horecka, and D. J. Forbes. 1991. J. Cell Biol. 114:169-183报道)。p75、p58和p54在体外未被半乳糖基化。用金标QE5标记非洲爪蟾卵母细胞核被膜,并通过快速冷冻/冷冻干燥/旋转金属阴影法制备用于电子显微镜观察。这种电子显微镜制备方法使我们能够更精确地将该抗体的表位定位到NPC的细胞质细丝和核篮上。由于QE5识别三种O-连接的NPC糖蛋白,因此将其标记与识别O-连接的N-乙酰葡糖胺部分的凝集素麦胚凝集素的标记进行了比较。发现这两种探针产生的标记分布相似,但不完全相同。为了将单个蛋白质与特定的NPC成分进行鉴定,我们使用了针对NUP153的抗肽抗体和单特异性抗p250多克隆抗体。用这两种抗体进行标记证明,NUP153是核篮的一个组成部分,其至少一个表位位于其末端环中,而p250是细胞质细丝的一个组成部分。