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HLA-B27 错误折叠与强直性脊柱炎。

HLA-B27 misfolding and ankylosing spondylitis.

机构信息

Pediatric Translational Research Branch, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD, USA.

出版信息

Mol Immunol. 2014 Jan;57(1):44-51. doi: 10.1016/j.molimm.2013.07.013. Epub 2013 Aug 30.

Abstract

Understanding how HLA-B27 contributes to the pathogenesis of spondyloarthritis continues to be an important goal. Current efforts are aimed largely on three areas of investigation; peptide presentation to CD8T cells, abnormal forms of the HLA-B27 heavy chain and their recognition by leukocyte immunoglobulin-like receptors on immune effector cells, and HLA-B27 heavy chain misfolding and intrinsic biological effects on affected cells. In this chapter we review our current understanding of the causes and consequences of HLA-B27 misfolding, which can be defined biochemically as a propensity to oligomerize and form complexes in the endoplasmic reticulum (ER) with the chaperone BiP (HSPA5/GRP78). HLA-B27 misfolding is linked to an unusual combination of polymorphisms that identify this allele, and cause the heavy chain to fold and load peptides inefficiently. Misfolding can result in ER-associated degradation (ERAD) of heavy chains, which is mediated in part by the E3 ubiquitin ligase HRD1 (SYVN1), and the ubiquitin conjugating enzyme UBE2JL. Upregulation of HLA-B27 and accumulation of misfolded heavy chains can activate ER stress signaling pathways that orchestrate the unfolded protein response. In transgenic rats where HLA-B27 is overexpressed, UPR activation is prominent. However, it is specific for heavy chain misfolding, since overexpression of HLA-B7, an allele that does not misfold, fails to generate ER stress. UPR activation has been linked to cytokine dysregulation, promoting lL-23, IFNβ, and lL-1α production, and may activate the IL-23/IL-17 axis in these rats. IL-1α and IFNβ are pro- and anti-osteoclastogenic cytokines, respectively, that modulate osteoclast development in HLA-B27-expressing transgenic rat monocytes. Translational studies of patient derived cells expressing HLA-B27 at physiologic levels have provided evidence that ER stress and UPR activation can occur in peripheral blood, but this has not been reported to date in isolated macrophages. Inflamed gastrointestinal tissue reveals evidence for HLA-B27 misfolding, ERAD, and autophagy, without acute UPR activation. A more complete picture of conditions that impact HLA-B27 folding and misfolding, the full spectrum and time course of consequences of ER stress, and critical cell types involved is needed to understand the role of HLA-B27 misfolding in spondyloarthritis pathogenesis.

摘要

了解 HLA-B27 如何导致脊柱关节炎的发病机制仍然是一个重要的目标。目前的研究主要集中在三个领域:肽向 CD8T 细胞的呈递、HLA-B27 重链的异常形式及其被白细胞免疫球蛋白样受体(leukocyte immunoglobulin-like receptors)在免疫效应细胞上的识别,以及 HLA-B27 重链错误折叠及其对受影响细胞的固有生物学效应。在本章中,我们回顾了我们目前对 HLA-B27 错误折叠的原因和后果的理解,从生物化学角度定义为在与伴侣蛋白 BiP(HSPA5/GRP78)在内质网(endoplasmic reticulum,ER)中形成寡聚体和复合物的倾向。HLA-B27 错误折叠与识别该等位基因的异常多态性组合有关,导致重链折叠和加载肽的效率降低。错误折叠可导致 ER 相关降解(ERAD)的重链,这部分由 E3 泛素连接酶 HRD1(SYVN1)和泛素结合酶 UBE2JL 介导。HLA-B27 的上调和错误折叠重链的积累可以激活未折叠蛋白反应(unfolded protein response,UPR)的 ER 应激信号通路。在 HLA-B27 过表达的转基因大鼠中,UPR 激活是显著的。然而,它是重链错误折叠的特异性,因为不发生错误折叠的 HLA-B7 等位基因的过表达不能产生 ER 应激。UPR 激活与细胞因子失调有关,促进了 IL-23、IFNβ 和 IL-1α 的产生,并可能在这些大鼠中激活 IL-23/IL-17 轴。IL-1α 和 IFNβ 分别是促和抗破骨细胞生成细胞因子,调节 HLA-B27 表达的转基因大鼠单核细胞中的破骨细胞发育。在生理水平表达 HLA-B27 的患者来源细胞的转化研究提供了证据,表明 ER 应激和 UPR 激活可发生在外周血中,但迄今为止尚未在分离的巨噬细胞中报道。炎症性胃肠道组织显示出 HLA-B27 错误折叠、ERAD 和自噬的证据,而没有急性 UPR 激活。为了了解 HLA-B27 错误折叠在脊柱关节炎发病机制中的作用,需要更全面地了解影响 HLA-B27 折叠和错误折叠的条件、ER 应激的全部范围和时间过程,以及涉及的关键细胞类型。

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