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富含组氨酸糖蛋白(HRG)与人IgG亚类以及含有κ和λ轻链的IgG分子的差异结合。

Differential binding of histidine-rich glycoprotein (HRG) to human IgG subclasses and IgG molecules containing kappa and lambda light chains.

作者信息

Gorgani N N, Parish C R, Altin J G

机构信息

Division of Immunology, The John Curtin School of Medical Research, Faculty of Science, Canberra, Australia.

出版信息

J Biol Chem. 1999 Oct 15;274(42):29633-40. doi: 10.1074/jbc.274.42.29633.

Abstract

In previous studies we showed that the plasma protein histidine-rich glycoprotein (HRG) binds strongly to pooled human IgG. In the present work myeloma proteins consisting of different human IgG subclasses were examined for their ability to interact with human HRG. Using an IAsys optical biosensor we found initially that IgG subclasses differ substantially in their affinity of interaction with HRG. However, the most striking finding was the observation that the kinetics of the HRG interaction was dramatically affected by whether the IgG subclasses contained the kappa or lambda light (L)-chains. Thus, the on-rate for the binding of HRG to the kappa L-chain containing IgG1 and IgG2 (IgG1kappa and IgG2kappa) was approximately 4- and approximately 10-fold faster than that for the binding of HRG to lambda L-chain containing IgG1 and IgG2 (IgG1lambda and IgG2lambda), respectively, with the dissociation constants (K(d)) in the range 3-5 nM and 112-189 nM for the kappa and lambda isoforms, respectively. In contrast, the on-rate for the binding of HRG to IgG3kappa and IgG4kappa was found to be 9- and 20-fold slower than that for the binding of HRG to IgG3lambda and IgG4lambda, respectively, with the K(d) in the range 147-268 nM and 96-109 nM for the kappa and lambda isoforms, respectively. The binding of HRG to immunoglobulins containing the kappa L-chain (particularly IgG1kappa) was generally potentiated in the presence of a physiological concentration (20 microM) of Zn(2+) (K(d) decreased to 0.60 +/- 0.01 for IgG1kappa), but Zn(2+) had no effect or slightly inhibited the binding of HRG to immobilized IgG subclasses possessing the lambda L-chain. Interestingly, HRG also bound differentially to Bence Jones (BJ) proteins containing kappa and lambda L-chains, with HRG having a 14-fold lower K(d) for BJkappa than for BJlambda when 20 microM Zn(2+) was present. HRG also bound to IgM (IgMkappa), but the affinity of this interaction (K(d) approximately 1.99 +/- 0.05 microM) was markedly lower than the interaction with IgG, and the affinity was actually decreased 4-fold in the presence of Zn(2+). The results demonstrate that both the heavy (H)- and L-chain type have a profound effect on the binding of HRG to different IgG subclasses and provide the first evidence of a functional difference between the kappa and lambda L-chains of immunoglobulins.

摘要

在先前的研究中,我们发现血浆富含组氨酸糖蛋白(HRG)能与混合人IgG强烈结合。在本研究中,我们检测了由不同人IgG亚类组成的骨髓瘤蛋白与人HRG相互作用的能力。使用IAsys光学生物传感器,我们最初发现IgG亚类与HRG相互作用的亲和力有显著差异。然而,最显著的发现是观察到HRG相互作用的动力学受到IgG亚类所含κ或λ轻(L)链的显著影响。因此,HRG与含κ L链的IgG1和IgG2(IgG1κ和IgG2κ)结合的结合速率分别比与含λ L链的IgG1和IgG2(IgG1λ和IgG2λ)结合的速率快约4倍和约10倍,κ和λ异构体的解离常数(K(d))分别在3 - 5 nM和112 - 189 nM范围内。相比之下,发现HRG与IgG3κ和IgG4κ结合的结合速率分别比与IgG3λ和IgG4λ结合的速率慢9倍和20倍,κ和λ异构体的K(d)分别在147 - 268 nM和96 - 109 nM范围内。在生理浓度(20 μM)的Zn(2+)存在下,HRG与含κ L链的免疫球蛋白(特别是IgG1κ)结合通常会增强(IgG1κ的K(d)降至0.60 ± 0.01),但Zn(2+)对HRG与含λ L链的固定化IgG亚类的结合没有影响或略有抑制。有趣的是,HRG与含κ和λ L链的本-周蛋白(BJ)也有不同的结合,当存在20 μM Zn(2+)时,HRG与BJκ的K(d)比与BJλ的K(d)低14倍。HRG也能与IgM(IgMκ)结合,但这种相互作用的亲和力(K(d)约为1.99 ± 0.05 μM)明显低于与IgG的相互作用,并且在Zn(2+)存在下亲和力实际上降低了4倍。结果表明,重(H)链和L链类型对HRG与不同IgG亚类的结合都有深远影响,并首次提供了免疫球蛋白κ和λ L链功能差异的证据。

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