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HLA-B27 在脊柱关节炎中的作用。

The role of HLA-B27 in spondyloarthritis.

机构信息

Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX 75390-8884, USA.

出版信息

J Rheumatol. 2010 Dec;37(12):2606-16. doi: 10.3899/jrheum.100889.

Abstract

This article summarizes the proceedings of a one-day international workshop held in July 2009 on the role of HLA-B27 in the pathogenesis of ankylosing spondylitis (AS) and related disorders. HLA-B27 is found in about 90% of patients with AS, with an odds ratio of about 100, but the mechanism underlying this association is not known. There are currently 3 major mechanistic hypotheses for this association: (1) T cell recognition of one or more B27 presented peptides; (2) B27 heavy-chain misfolding that induces an unfolded protein response; and (3) innate immune recognition of cell-surface expressed B27 heavy-chain dimers. None of these hypotheses accounts for the tissue specificity of the inflammation characteristic of AS. These hypotheses were discussed in the context of known epidemiologic, biochemical, structural, and immunologic differences among HLA-B27 subtypes; data from the HLA-B27 transgenic rat model of spondyloarthritis; the growing list of other genes that have been found to be associated with AS; and other data on the pathogenesis of spondyloarthritis. Proposed directions for future research include expanded efforts to define similarities and differences among the B27 subtypes; further development of animal models; identifying the interactions of B27 with the products of other genes associated with AS; and continued investigation into the pathogenesis of spondyloarthritis.

摘要

本文总结了 2009 年 7 月举行的为期一天的国际研讨会的会议记录,该研讨会的主题是 HLA-B27 在强直性脊柱炎(AS)及相关疾病发病机制中的作用。HLA-B27 约存在于 90%的 AS 患者中,其优势比约为 100,但该关联的机制尚不清楚。目前,针对这种关联有 3 个主要的机制假说:(1)T 细胞识别一个或多个 B27 呈递的肽;(2)B27 重链错误折叠,引发未折叠蛋白反应;(3)细胞表面表达的 B27 重链二聚体的固有免疫识别。这些假说均不能解释 AS 炎症的组织特异性。在讨论这些假说时,参考了 HLA-B27 亚型之间已知的流行病学、生化、结构和免疫学差异;HLA-B27 转基因大鼠脊柱关节炎模型的数据;与 AS 相关的其他基因的不断增加的数据;以及关于脊柱关节炎发病机制的其他数据。未来研究的建议方向包括:进一步努力定义 B27 亚型之间的相似性和差异;进一步开发动物模型;确定 B27 与与 AS 相关的其他基因产物的相互作用;并继续研究脊柱关节炎的发病机制。

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