Chintalacharuvu Koteswara R, Yu Li J, Bhola Nishant, Kobayashi Kunihiko, Fernandez Christine Z, Morrison Sherie L
Department of Microbiology, Immunology and Molecular Genetics and Molecular Biology Institute, University of California, Los Angeles 90095, USA.
J Immunol. 2002 Nov 1;169(9):5072-7. doi: 10.4049/jimmunol.169.9.5072.
In humans, there are two subclasses of IgA, IgA1 and IgA2, with IgA2 existing as three allotypes, IgA2m(1), IgA2m(2) and IgA2(n). In IgA1, Cys(133) in C(H)1 forms the disulfide bond to the L chain. Our previous studies indicated that in IgA2 lacking Cys(133), a disulfide bond forms between the alpha-chain and the L chain when Cys(220) is followed by Arg(221), but not when Cys(220) is followed by Pro(221), suggesting that the Cys in C(H)1 might be involved in disulfide bonding to the L chain. However, here we show that covalent assembly of the H and L chains in IgA2(n) requires hinge-proximal Cys(241) and Cys(242) in C(H)2 and not Cys(196) or Cys(220) in C(H)1. Using pulse-chase experiments, we have demonstrated that wild-type IgA2(n) with Arg(221) and Cys(241) and Cys(242) assembles through a disulfide-bonded HL intermediate. In contrast, the major intermediate for IgA2 m(1) with Pro(221) assembly was H(2) even though both Cys(241) and Cys(242) were present. Only a small fraction of IgA2 m(1) assembles through disulfide-bonded HL. Overall, our studies indicate that for IgA2 covalent assembly of the H and L chains requires the hinge-proximal cysteines in C(H)2 and that the structure of C(H)1 influences the efficiency with which this covalent bond forms.
在人类中,IgA有两个亚类,即IgA1和IgA2,其中IgA2以三种同种异型形式存在,即IgA2m(1)、IgA2m(2)和IgA2(n)。在IgA1中,C(H)1中的半胱氨酸(Cys)(133)与轻链形成二硫键。我们之前的研究表明,在缺乏Cys(133)的IgA2中,当Cys(220)后接精氨酸(Arg)(221)时,α链与轻链之间会形成二硫键,而当Cys(220)后接脯氨酸(Pro)(221)时则不会,这表明C(H)1中的半胱氨酸可能参与与轻链形成二硫键。然而,我们在此表明,IgA2(n)中重链和轻链的共价组装需要C(H)2中靠近铰链区的半胱氨酸Cys(241)和Cys(242),而不是C(H)1中的Cys(196)或Cys(220)。通过脉冲追踪实验,我们已经证明,具有Arg(221)以及Cys(241)和Cys(242)的野生型IgA2(n)通过二硫键连接的HL中间体进行组装。相比之下,即使同时存在Cys(241)和Cys(242),具有Pro(221)的IgA2 m(1)组装的主要中间体也是H(2)。只有一小部分IgA2 m(1)通过二硫键连接的HL进行组装。总体而言,我们的研究表明,对于IgA2,重链和轻链的共价组装需要C(H)2中靠近铰链区的半胱氨酸,并且C(H)1的结构会影响这种共价键形成的效率。