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The thiol groups of mouse immunoglobulin A. Incomplete formation of the C alpha 1-domain disulphide bridge.

机译:小鼠免疫球蛋白A的巯基。Calpha 1域二硫键桥的不完全形成。

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摘要

The BALB/c IgA (immunoglobulin A) myeloma protein M167 contained on average 5.7 free SH groups per IgA dimer. These groups were preponderantly on the heavy chains and comprised two distinct populations: 3.3 exposed SH groups per dimer in the Fc region, and 2.4 buried SH groups per dimer in the Fd region, detectable o only after denaturation. To locate the cysteine residues involved, labelled peptides were purified from thermolysin digests of radioalkylated IgA by high-performance liquid chromatography. From the amino acid compositions of the peptides, the exposed thiol groups were assigned to Cys-307 in the C alpha 2 domain, which thus existed in the reduced form to an extent exceeding 80%. This residue may allow attachment of secretory component to dimer IgA in the mouse to proceed via thiol-disulphide exchange. The buried thiol groups were assigned to Cys-150 and Cys-208, in the C alpha 1 domain, each being in the reduced form to the extent of approx. 30%. This pair of residues would normally give rise to the characteristic intradomain disulphide bridge. It appears that disulphide formation is not a crucial event during folding of the C alpha 1 domain in IgA biosynthesis. The sequence in the region 140-151 was re-investigated, and residue 142 was shown to be serine, not cysteine, helping explain the lack of heavy-chain-light chain bonding in BALB/c mouse IgA. A disulphide-bond model for mouse IgA is proposed on the basis of these assignments and other features of the mouse alpha-chain sequence.
机译:BALB / c IgA(免疫球蛋白A)骨髓瘤蛋白M167每个IgA二聚体平均含有5.7个游离SH基团。这些基团主要位于重链上,包括两个不同的种群:Fc区每个二聚体3.3个暴露的SH基团,Fd区每个二聚体2.4个掩埋的SH基团,只有在变性后才能检测到。为了定位所涉及的半胱氨酸残基,通过高效液相色谱法从放射性烷基化IgA的嗜热菌蛋白酶消化物中纯化标记的肽。从肽的氨基酸组成中,暴露的硫醇基团被分配到C alpha 2结构域中的Cys-307,因此其以还原形式存在的比例超过80%。该残基可以使分泌成分附着于小鼠中的二聚体IgA,以通过硫醇-二硫化物交换进行。在C alpha 1结构域中,将掩埋的硫醇基团分配给Cys-150和Cys-208,每个基团都以还原形式存在,大约为1。 30%。这对残基通常会引起特征性域内二硫键。似乎在IgA生物合成中折叠C alpha 1结构域期间,二硫化物的形成不是关键事件。重新研究了区域140-151中的序列,显示残基142是丝氨酸,而不是半胱氨酸,这有助于解释BALB / c小鼠IgA中缺乏重链-轻链键合。基于这些分配和小鼠α-链序列的其他特征,提出了小鼠IgA的二硫键模型。

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