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利用序列特异性抗体证实多药转运蛋白P-糖蛋白的细胞质定位和双结构域结构。

Cytoplasmic orientation and two-domain structure of the multidrug transporter, P-glycoprotein, demonstrated with sequence-specific antibodies.

作者信息

Yoshimura A, Kuwazuru Y, Sumizawa T, Ichikawa M, Ikeda S, Uda T, Akiyama S

机构信息

Cancer Research Institute, Faculty of Medicine, Kagoshima University, Japan.

出版信息

J Biol Chem. 1989 Sep 25;264(27):16282-91.

PMID:2476441
Abstract

The predicted cytoplasmic orientation and two-domain structure of the multidrug efflux pump P-glycoprotein were demonstrated with sequence-specific antibodies. We synthesized peptides corresponding to amino acid residues, Glu393-Lys408 (anti-P) and Leu1206-Thr1226 (anti-C) in P-glycoprotein from human mdr1 cDNA and used these peptides to produce polyclonal antibodies. From the primary structure of P-glycoprotein, and anti-C antibody is expected to recognize another position, Leu561-Thr581, in the duplicate structure of P-glycoprotein, but anti-P recognizes only one site. These antibodies bind to multidrug-resistant cells (KB-C2) with permeabilized plasma membrane but do not bind to nonpermeabilized KB-C2 cells or parental KB cells, supporting the predicted cytoplasmic orientation of these sequences. With immunoblotting of the membrane fractions from KB-C2 cells, a major 140-kDa polypeptide of the P-glycoprotein was detected with both anti-P and anti-C. Two minor polypeptides with molecular mass of 95 and 55 kDa were also detected. When membrane vesicles were digested mildly with trypsin, the amount of these two polypeptides increased. Anti-P detected only the 95-kDa polypeptide, and anti-C detected both 95- and 55-kDa polypeptides. Achromobacter lyticus protease I (lysyl endopeptidase) and Staphylococcus aureus V8 protease also produced two polypeptides with similar molecular weights. Absorption into lectin-agarose beads and labeling with [3H]glucosamine indicated that the 95-kDa polypeptide was glycosylated but that the 55-kDa polypeptide was not. These two polypeptides as well as P-glycoprotein were photoaffinity-labeled with a calcium channel blocker, [3H]azidopine, but most of the label was found in the 55-kDa polypeptide. The yield of labeled fragments from membrane vesicles photolabeled after digestion with trypsin was similar to that from membrane vesicles digested with trypsin after photolabeling. These data indicate 1) that the 95-kDa polypeptide is the fragment corresponding to the amino-terminal half of P-glycoprotein containing sugar chains; 2) that the 55-kDa polypeptide is the carboxyl-terminal half which was mainly labeled with [3H]azidopine; and 3) that P-glycoprotein has a relatively rigid structure with a small number of protease-sensitive sites and its global structure is not destroyed by tryptic cleavage.

摘要

利用序列特异性抗体证实了多药外排泵P-糖蛋白的预测胞质取向和双结构域结构。我们从人mdr1 cDNA合成了与P-糖蛋白中氨基酸残基Glu393-Lys408(抗-P)和Leu1206-Thr1226(抗-C)相对应的肽,并使用这些肽制备多克隆抗体。根据P-糖蛋白的一级结构,预计抗-C抗体可识别P-糖蛋白重复结构中的另一个位置Leu561-Thr581,但抗-P仅识别一个位点。这些抗体与质膜通透的多药耐药细胞(KB-C2)结合,但不与未通透的KB-C2细胞或亲代KB细胞结合,支持了这些序列预测的胞质取向。通过对KB-C2细胞膜组分的免疫印迹分析,抗-P和抗-C均检测到P-糖蛋白的一条主要140 kDa多肽。还检测到两条分子量分别为95 kDa和55 kDa的次要多肽。当用胰蛋白酶温和消化膜囊泡时,这两条多肽的量增加。抗-P仅检测到95 kDa多肽,抗-C检测到95 kDa和55 kDa多肽。嗜麦芽窄食单胞菌蛋白酶I(赖氨酰内肽酶)和金黄色葡萄球菌V8蛋白酶也产生了两条分子量相似的多肽。凝集素-琼脂糖珠吸收和[3H]葡糖胺标记表明,95 kDa多肽被糖基化,而55 kDa多肽未被糖基化。这两条多肽以及P-糖蛋白均用钙通道阻滞剂[3H]叠氮平进行光亲和标记,但大部分标记物存在于55 kDa多肽中。胰蛋白酶消化后光标记的膜囊泡产生的标记片段产量与光标记后胰蛋白酶消化的膜囊泡相似。这些数据表明:1)95 kDa多肽是对应于含糖链的P-糖蛋白氨基末端一半的片段;2)55 kDa多肽是羧基末端一半,主要被[3H]叠氮平标记;3)P-糖蛋白具有相对刚性的结构,有少量蛋白酶敏感位点,其整体结构不会因胰蛋白酶切割而被破坏。

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