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与强直性脊柱炎的等位基因关联未能与人类白细胞抗原 B27 同二聚体形成相关联。

Allelic association with ankylosing spondylitis fails to correlate with human leukocyte antigen B27 homodimer formation.

机构信息

Infection and Immunity Program and Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton, Victoria 3800, Australia.

EMBL Australia, Monash University, Clayton, Victoria 3800, Australia.

出版信息

J Biol Chem. 2019 Dec 27;294(52):20185-20195. doi: 10.1074/jbc.RA119.010257. Epub 2019 Nov 18.

Abstract

Expression of human leukocyte antigen (HLA)-B27 is strongly associated with predisposition toward ankylosing spondylitis (AS) and other spondyloarthropathies. However, the exact involvement of HLA-B27 in disease initiation and progression remains unclear. The homodimer theory, which proposes that HLA-B27 heavy chains aberrantly form homodimers, is a central hypothesis that attempts to explain the role of HLA-B27 in disease pathogenesis. Here, we examined the ability of the eight most prevalent HLA-B27 allotypes (HLA-B27:02 to HLA-B27:09) to form homodimers. We observed that HLA-B27:03, a disease-associated HLA-B27 subtype, showed a significantly reduced ability to form homodimers compared with all other allotypes, including the non-disease-associated/protective allotypes HLA-B27:06 and HLA-B27:09. We used X-ray crystallography and site-directed mutagenesis to unravel the molecular and structural mechanisms in HLA-B27:03 that are responsible for its compromised ability to form homodimers. We show that polymorphism at position 59, which differentiates HLA-B27:03 from all other allotypes, is responsible for its compromised ability to form homodimers. Indeed, histidine 59 in HLA-B27:03 leads to a series of local conformational changes that act in concert to reduce the accessibility of the nearby cysteine 67, an essential amino acid residue for the formation of HLA-B27 homodimers. Considered together, the ability of both protective and disease-associated HLA-B27 allotypes to form homodimers and the failure of HLA-B*27:03 to form homodimers challenge the role of HLA-B27 homodimers in AS pathoetiology. Rather, this work implicates other features, such as peptide binding and antigen presentation, as pivotal mechanisms for disease pathogenesis.

摘要

人类白细胞抗原(HLA)-B27 的表达与强直性脊柱炎(AS)和其他脊柱关节病的易感性密切相关。然而,HLA-B27 在疾病起始和进展中的确切作用仍不清楚。二聚体理论认为 HLA-B27 重链异常形成二聚体,这是试图解释 HLA-B27 在疾病发病机制中的作用的核心假设。在这里,我们研究了 8 种最常见的 HLA-B27 同种型(HLA-B27:02 至 HLA-B27:09)形成二聚体的能力。我们观察到,与所有其他同种型(包括非疾病相关/保护性同种型 HLA-B27:06 和 HLA-B27:09)相比,疾病相关的 HLA-B27 亚型 HLA-B27:03 形成二聚体的能力显著降低。我们使用 X 射线晶体学和定点突变来揭示 HLA-B27:03 中导致其形成二聚体能力受损的分子和结构机制。我们表明,区分 HLA-B27:03 与所有其他同种型的 59 位氨基酸的多态性是其形成二聚体能力受损的原因。事实上,HLA-B27:03 中的组氨酸 59 导致一系列局部构象变化,协同作用降低附近半胱氨酸 67 的可及性,半胱氨酸 67 是 HLA-B27 二聚体形成所必需的氨基酸残基。总的来说,保护性和疾病相关的 HLA-B27 同种型形成二聚体的能力以及 HLA-B*27:03 形成二聚体的失败挑战了 HLA-B27 二聚体在 AS 发病机制中的作用。相反,这项工作暗示了其他特征,如肽结合和抗原呈递,作为疾病发病机制的关键机制。

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