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首页> 外文期刊>Biochemistry >A New Antigenic Epitope Appears in the Catalytic Subunit of Viscumin during Intracellular Transport
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A New Antigenic Epitope Appears in the Catalytic Subunit of Viscumin during Intracellular Transport

机译:一种新的抗原表位出现在Viscumin的催化亚基的细胞内运输过程中。

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The plant toxin viscumin (60 kD) consists of B-("binding") and A-("active") subunits joined by a disulfide bond. The B-subunit is a lectin interacting with galactose-containing glycolipids and glycoproteins of the cell suirface. The A-subunit possesses N-glycosidase activity which modifies 28S ribosomal RNA. This results in irreversible inhibition of protein synthesis. After binding and receptor-mediated endocytosis viscumin-containing vesicles are transported to endoplasmic reticulum where the A-(catalytic) subunit is subsequently translocated to cytosol. It is possible that translocation of A-subunit requires its unfolding. For identification of epitopes which might appear during such unfolding, we developed hybridomas producing monoclonal antibodies against denatured viscumin A-chain. Resistance of hybridoma cells to cytotoxic action of viscumin suggests antibody-toxin interaction inside these cells. TA7 hybridoma cells against an epitope which appears only in denatured viscumin are insensitive to the toxin. This suggests that antibody-toxin interaction occurs before transmembrane translocation of the catalytic A-chain into the cytoplasm. Consequently, toxin resistance of TA7 hybridoma cells implies the appearance of a new epitope in viscumin during its intracellular transportation inside of vesicles. Sixty five octapeptides have been synthesized and epitopes have been identified for monoclonal TA7 antibody and immune mouse serum by means of ELISA. Based on the epitopic mapping the peptide A96-ETHLFTGT-T105 was chemically synthesized and binding of this peptide to the monoclonal antibody TA7 and conformation of antigenic determinant (L100-FTGT-T105) was investigated by means of ~1H-NMR spectroscopy.
机译:植物毒素viscumin(60 kD)由通过二硫键连接的B-(“结合”)和A-(“活性”)亚基组成。 B亚基是一种凝集素,与细胞表面的含半乳糖的糖脂和糖蛋白相互作用。该A亚基具有修饰28S核糖体RNA的N-糖苷酶活性。这导致不可逆地抑制蛋白质合成。在结合和受体介导的内吞作用之后,含粘蛋白的囊泡被运输到内质网,在那里A-(催化)亚基随后易位到胞质溶胶。 A-亚基的易位可能需要其展开。为了鉴定在这种展开过程中可能出现的表位,我们开发了杂交瘤,产生针对变性的粘蛋白A链的单克隆抗体。杂交瘤细胞对粘菌素的细胞毒性作用的抗性提示这些细胞内部的抗体-毒素相互作用。 TA7杂交瘤细胞针对的抗原表位只在变性的粘蛋白中出现,对毒素不敏感。这表明抗体-毒素相互作用发生在催化性A链跨膜移位进入细胞质之前。因此,TA7杂交瘤细胞的抗毒素性暗示在粘菌素在囊泡内的细胞内转运过程中,新的抗原决定簇在粘菌素中出现。已经合成了六十五个八肽,并且已经通过ELISA鉴定了单克隆TA7抗体和免疫小鼠血清的表位。基于表位作图,化学合成了肽A96-ETHLFTGT-T105,并通过〜1H-NMR光谱研究了该肽与单克隆抗体TA7的结合以及抗原决定簇(L100-FTGT-T105)的构象。

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