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一种常见的 SNP 风险变体 MT1-MMP 导致了掌腱膜挛缩症,其胶原酶活性存在特定缺陷。

A common SNP risk variant MT1-MMP causative for Dupuytren's disease has a specific defect in collagenolytic activity.

机构信息

Kennedy Institute of Rheumatology, NDORMS, University of Oxford, Oxford OX3 7FY, UK.

Botnar Research Centre, NDORMS, University of Oxford, Oxford OX3 7HE, UK.

出版信息

Matrix Biol. 2021 Mar;97:20-39. doi: 10.1016/j.matbio.2021.02.003. Epub 2021 Feb 13.

Abstract

Dupuytren's Disease (DD) is a common fibroproliferative disease of the palmar fascia. We previously identified a causal association with a non-synonymous variant (rs1042704, p.D273N) in MMP14 (encoding MT1-MMP). In this study, we investigated the functional consequences of this variant, and demonstrated that the variant MT1-MMP (MT1-N) exhibits only 17% of cell surface collagenolytic activity compared to the ancestral enzyme (MT1-D). Cells expressing both MT1-D and MT1-N in a 1:1 ratio, mimicking the heterozygous state, possess 38% of the collagenolytic activity compared to the cells expressing MT1-D, suggesting that MT1-N acts in a dominant negative manner. Consistent with the above observation, patient-derived DD myofibroblasts with the alternate allele demonstrated around 30% of full collagenolytic activity detected in ancestral G/G genotype cells, regardless of the heterozygous (G/A) or homozygous (A/A) state. Small angle X-ray scattering analysis of purified soluble Fc-fusion enzymes allowed us to construct a 3D-molecular envelope of MT1-D and MT1-N, and demonstrate altered flexibility and conformation of the ectodomains due to D to N substitution. Taking together, rs1042704 significantly reduces collagen catabolism in tissue, which tips the balance of homeostasis of collagen in tissue, contributing to the fibrotic phenotype of DD. Since around 30% of the worldwide population have at least one copy of the low collagenolytic alternate allele, further investigation of rs1042704 across multiple pathologies is needed.

摘要

杜普伊特伦氏挛缩症(Dupuytren's Disease,DD)是一种常见的掌筋膜纤维增生性疾病。我们之前已经确定了一种与非同义变异(rs1042704,p.D273N)在 MMP14(编码 MT1-MMP)中的因果关联。在这项研究中,我们研究了该变异的功能后果,并证明变异的 MT1-MMP(MT1-N)的细胞表面胶原分解活性仅为原始酶(MT1-D)的 17%。在 1:1 比例下表达 MT1-D 和 MT1-N 的细胞具有比表达 MT1-D 的细胞低 38%的胶原分解活性,表明 MT1-N 以显性负性方式发挥作用。与上述观察结果一致,具有替代等位基因的患者来源的 DD 肌成纤维细胞表现出与在原始 G/G 基因型细胞中检测到的全长胶原分解活性相比,约有 30%的胶原分解活性,无论其杂合(G/A)或纯合(A/A)状态如何。纯化可溶性 Fc 融合酶的小角度 X 射线散射分析使我们能够构建 MT1-D 和 MT1-N 的 3D 分子包络,并证明由于 D 到 N 的取代,外域的灵活性和构象发生改变。总的来说,rs1042704 显著降低了组织中的胶原分解代谢,从而使组织中胶原的动态平衡倾向于纤维表型的 DD。由于大约 30%的世界人口至少携带一份低胶原分解的替代等位基因,因此需要对 rs1042704 在多种病理学中的作用进行进一步研究。

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