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来自易患脊柱关节炎的HLA - B27转基因大鼠的树突状细胞表现出细胞骨架动力学改变、II类主要组织相容性复合体表达改变以及活力改变。

Dendritic cells from spondylarthritis-prone HLA-B27-transgenic rats display altered cytoskeletal dynamics, class II major histocompatibility complex expression, and viability.

作者信息

Dhaenens Maarten, Fert Ingrid, Glatigny Simon, Haerinck Saskia, Poulain Cécile, Donnadieu Emmanuel, Hacquard-Bouder Cécile, André Claudine, Elewaut Dirk, Deforce Dieter, Breban Maxime

机构信息

Laboratory for Phartmaceutical Biotechnology, Ghent University, Harelbekestraat 72, Ghent, Belgium.

出版信息

Arthritis Rheum. 2009 Sep;60(9):2622-32. doi: 10.1002/art.24780.

Abstract

OBJECTIVE

Spondylarthritis (SpA) is characterized by spinal and peripheral joint inflammation, frequently combined with extraarticular manifestations. Despite the well-established association of SpA with the class I major histocompatibility complex (MHC) allele HLA-B27, there are still different, parallel hypotheses on the relationship between HLA-B27 and disease mechanisms. The present study was undertaken to investigate several characteristics of mature dendritic cells (DCs), which are believed to be essential for triggering disease in a model of SpA in HLA-B27-transgenic rats.

METHODS

We combined different whole-proteome approaches (2-dimensional polyacrylamide gel electrophoresis and iTRAQ) to define the most aberrant molecular processes occurring in spleen DCs. Videomicroscopy and flow cytometry were used to confirm both cytoskeletal and class II MHC expression deficiencies.

RESULTS

Our proteome studies provided evidence of up-regulation of proteins involved in class I MHC loading, and unfolded protein response, along with a striking down-regulation of several cytoskeleton-reorganizing proteins. The latter result was corroborated by findings of deficient motility, altered morphology, and decreased immunologic synapse formation. Furthermore, class II MHC surface expression was reduced in DCs from B27-transgenic rats, and this could be linked to differences in class II MHC-induced apoptotic sensitivity. Finally, we found reduced viability of the CD103+CD4- DC subpopulation, which likely exerts tolerogenic function.

CONCLUSION

Taken together, our findings have different important implications regarding the physiology of B27-transgenic rat DCs, which have a putative role in spontaneous disease in these rats. In particular, the reduced motility and viability of putatively tolerogenic CD4+ DCs could play an important role in initiating the inflammatory process, resulting in SpA.

摘要

目的

脊柱关节炎(SpA)的特征是脊柱和外周关节炎症,常伴有关节外表现。尽管SpA与I类主要组织相容性复合体(MHC)等位基因HLA - B27之间的关联已得到充分证实,但关于HLA - B27与疾病机制之间的关系仍存在不同的、并行的假说。本研究旨在调查成熟树突状细胞(DCs)的几个特征,这些细胞被认为在HLA - B27转基因大鼠的SpA模型中引发疾病至关重要。

方法

我们结合了不同的全蛋白质组方法(二维聚丙烯酰胺凝胶电泳和iTRAQ)来确定脾脏DCs中发生的最异常的分子过程。视频显微镜和流式细胞术用于确认细胞骨架和II类MHC表达缺陷。

结果

我们的蛋白质组研究提供了证据,表明参与I类MHC加载和未折叠蛋白反应的蛋白质上调,同时几种细胞骨架重组蛋白显著下调。后者的结果得到了运动能力不足、形态改变和免疫突触形成减少的发现的证实。此外,B27转基因大鼠的DCs中II类MHC表面表达降低,这可能与II类MHC诱导的凋亡敏感性差异有关。最后,我们发现可能发挥耐受性作用的CD103 + CD4 - DC亚群的活力降低。

结论

综上所述,我们的发现对B27转基因大鼠DCs的生理学具有不同的重要意义,这些DCs在这些大鼠的自发性疾病中可能起作用。特别是,假定具有耐受性的CD4 + DCs运动能力和活力的降低可能在引发炎症过程中起重要作用,导致SpA。

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