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免疫球蛋白A(IgA)和免疫球蛋白M(IgM)的生物合成。聚合反应对J链和二硫键交换酶的需求。

Biosynthesis of immunoglobulin A (IgA) and immunoglobulin M (IgM). Requirement for J chain and a disulphide-exchanging enzyme for polymerization.

作者信息

Della Corte E, Parkhouse R M

出版信息

Biochem J. 1973 Nov;136(3):597-606. doi: 10.1042/bj1360597.

Abstract

Mouse myeloma cells secreting 19S IgM (immunoglobulin M) (MOPC 104E and TEPC 183) or monomer and polymer IgA (immunoglobulin A) (MOPC 315) were incubated with radioactive leucine and the intracellular and secreted immunoglobulins and immunoglobulin subunits were prepared by preparative sucrose-density-gradient centrifugation. Samples were reduced in the presence or absence of isolated J chain, passed over Sephadex G-25 and then incubated at 37 degrees C for 30min with or without a source of disulphide-interchange enzyme. The extent of reassembly of reduced subunits was then evaluated by electrophoresis in polyacrylamide gels. Provided that J chain and the disulphide-interchange enzyme were supplied, both IgM and IgA could be assembled from their respective subunits, obtained by reductive cleavage of polymeric forms. Under similar conditions, assembly of polymeric forms from intracellular or secreted 7S monomer subunits also occurred. Under these conditions polymerization was total, there being no residue of the monomeric form. Reassembly did not occur in the absence of either J chain or the enzyme. All of the J chain released from IgM by reductive cleavage was incorporated back into the reassembled polymer. The J chain is therefore likely to be an essential structural requirement for polymeric immunoglobulins. A variety of controls ruled out non-specific interactions, and further suggested that the amino acid sequence of polypeptide chains determines the specificity of polymerization. The fact that intracellular IgA and IgM monomer subunits known to be deficient in galactose and fucose can be completely polymerized suggests that the addition of carbohydrate does not control polymerization.

摘要

将分泌19S IgM(免疫球蛋白M)的小鼠骨髓瘤细胞(MOPC 104E和TEPC 183)或单体及多聚体IgA(免疫球蛋白A)(MOPC 315)与放射性亮氨酸一起孵育,然后通过制备性蔗糖密度梯度离心法制备细胞内和分泌的免疫球蛋白及免疫球蛋白亚基。样品在有或无分离的J链存在的情况下进行还原,通过葡聚糖G - 25柱,然后在37℃下与或不与二硫键交换酶来源一起孵育30分钟。然后通过聚丙烯酰胺凝胶电泳评估还原亚基的重新组装程度。只要提供J链和二硫键交换酶,IgM和IgA都可以从通过还原裂解多聚体形式获得的各自亚基组装而成。在类似条件下,也会从细胞内或分泌的7S单体亚基组装多聚体形式。在这些条件下聚合是完全的,没有单体形式的残留。在没有J链或酶的情况下不会发生重新组装。通过还原裂解从IgM释放的所有J链都重新掺入到重新组装的聚合物中。因此,J链可能是多聚免疫球蛋白必不可少的结构要求。各种对照排除了非特异性相互作用,进一步表明多肽链的氨基酸序列决定了聚合的特异性。已知缺乏半乳糖和岩藻糖(岩藻糖)的细胞内IgA和IgM单体亚基能够完全聚合这一事实表明,碳水化合物的添加并不控制聚合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f64/1165994/ac696c7ea544/biochemj00593-0165-a.jpg

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