Chapuis R M, Koshland M E
Biochemistry. 1975 Mar 25;14(6):1320-6. doi: 10.1021/bi00677a034.
The intersubunit linkage of polymeric IgA immunoglobulins was determined from studies of the products of reductive and cyanogen bromide cleavage. Under conditions of limited dithioerythritol reduction tetramer IgA molecules were cleaved to yield two monomers and a J chain containing dimer. The stability of the dimer and the conservation of the J chain disulfides indicated that the J chain joins two monomer subunits. Evidence confirming the J chain dimer clasp was obtained from the depolymerization of tetramer and dimer IgA by cyanogen bromide treatment. The cleavage studies also showed that (a) the S-S bonds directly joining the other subunits are located at the same penultimate alpha chain half-cystines that constitute the site of J chain attachment and (b) during limited reduction the monomer-monomer bonds undergo interchange to release subunits without a concomitant generation of alpha chain thiols. These linkage data provide strong support for the assembly of IgA and IgM polymers by sequential disulfide exchanges beginning with the formation of a J chain containing dimer.
通过对还原和溴化氰裂解产物的研究,确定了聚合型 IgA 免疫球蛋白的亚基间连接方式。在有限的二硫赤藓糖醇还原条件下,四聚体 IgA 分子被裂解,产生两个单体和一个含 J 链的二聚体。二聚体的稳定性和 J 链二硫键的保守性表明 J 链连接两个单体亚基。通过溴化氰处理使四聚体和二聚体 IgA 解聚,获得了证实 J 链二聚体扣合的证据。裂解研究还表明:(a) 直接连接其他亚基的 S-S 键位于构成 J 链附着位点的同一倒数第二个α链半胱氨酸处;(b) 在有限还原过程中,单体-单体键发生交换以释放亚基,同时不会伴随α链硫醇的生成。这些连接数据为 IgA 和 IgM 聚合物通过从含 J 链二聚体的形成开始的顺序二硫键交换进行组装提供了有力支持。