Kennedy Institute of Rheumatology, NDORMS, University of Oxford, Oxford OX3 7FY, UK.
Botnar Research Centre, NDORMS, University of Oxford, Oxford OX3 7HE, UK.
Matrix Biol. 2021 Mar;97:20-39. doi: 10.1016/j.matbio.2021.02.003. Epub 2021 Feb 13.
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.
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。