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转基因大鼠中的HLA - B27形成与伴侣蛋白BiP结合的二硫键连接的重链寡聚体和多聚体。

HLA-B27 in transgenic rats forms disulfide-linked heavy chain oligomers and multimers that bind to the chaperone BiP.

作者信息

Tran Tri Minh, Satumtira Nimman, Dorris Martha L, May Ekkehard, Wang Andrew, Furuta Eiichi, Taurog Joel D

机构信息

Harold C. Simmons Arthritis Research Center and Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

J Immunol. 2004 Apr 15;172(8):5110-9. doi: 10.4049/jimmunol.172.8.5110.

Abstract

To test the hypothesis that HLA-B27 predisposes to disease by forming disulfide-linked homodimers, we examined rats transgenic for HLA-B27, mutant Cys(67)Ser HLA-B27, or HLA-B7. In splenic Con A blasts from high transgene copy B27 lines that develop inflammatory disease, the anti-H chain mAb HC10 precipitated four bands of molecular mass 78-105 kDa and additional higher molecular mass material, seen by nonreducing SDS-PAGE. Upon reduction, all except one 78-kDa band resolved to 44 kDa, the size of the H chain monomer. The 78-kDa band was found to be BiP/Grp78, and the other high molecular mass material was identified as B27 H chain. Analysis of a disease-resistant low copy B27 line showed qualitatively similar high molecular mass bands that were less abundant relative to H chain monomer. Disease-prone rats with a Cys(67)Ser B27 mutant showed B27 H chain bands at 95 and 115 kDa and a BiP band at 78 kDa, whereas only scant high molecular mass bands were found in cells from control HLA-B7 rats. (125)I-surface labeled B27 oligomers were immunoprecipitated with HC10, but not with a mAb to folded B27-beta(2)-microglobulin-peptide complexes. Immunoprecipitation of BiP with anti-BiP Abs coprecipitated B27 H chain multimers. Folding and maturation of B27 were slow compared with B7. These data indicate that disulfide-linked intracellular H chain complexes are more prone to form and bind BiP in disease-prone wild-type B27 and B27-C67S rats than in disease-resistant HLA-B7 rats. The data support the hypothesis that accumulation of misfolded B27 participates in the pathogenesis of B27-associated disease.

摘要

为了验证HLA - B27通过形成二硫键连接的同型二聚体而导致疾病易感性增加这一假说,我们检测了转HLA - B27基因、半胱氨酸(Cys)(67)丝氨酸(Ser)突变的HLA - B27基因或HLA - B7基因的大鼠。在来自发生炎症性疾病的高转基因拷贝B27系的脾Con A母细胞中,抗重链单克隆抗体HC10在非还原SDS - PAGE中沉淀出分子量为78 - 105 kDa的四条带以及额外的高分子量物质。还原后,除一条78 kDa的带外,所有条带均分解为44 kDa,即重链单体的大小。发现78 kDa的带为BiP/Grp78,其他高分子量物质被鉴定为B27重链。对一个抗病低拷贝B27系的分析显示,定性上类似的高分子量条带相对于重链单体来说丰度较低。具有Cys(67)Ser B27突变的疾病易感大鼠在95和115 kDa处显示B27重链条带,在78 kDa处显示BiP条带,而在对照HLA - B7大鼠的细胞中仅发现少量高分子量条带。(125)I表面标记的B27寡聚体用HC10免疫沉淀,但不用针对折叠的B27-β2-微球蛋白-肽复合物的单克隆抗体免疫沉淀。用抗BiP抗体免疫沉淀BiP时,共沉淀出B27重链多聚体。与B7相比,B27的折叠和成熟较慢。这些数据表明,在疾病易感的野生型B27和B27 - C67S大鼠中,二硫键连接的细胞内重链复合物比抗病的HLA - B7大鼠更易于形成并结合BiP。这些数据支持错误折叠的B27的积累参与B27相关疾病发病机制的假说。

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