https://ror.org/042nb2s44 Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA, USA.
Murdoch Children's Research Institute, Parkville, Australia.
Life Sci Alliance. 2024 Jul 9;7(9). doi: 10.26508/lsa.202402842. Print 2024 Sep.
Collagenopathies are a group of clinically diverse disorders caused by defects in collagen folding and secretion. For example, mutations in the gene encoding collagen type-II, the primary collagen in cartilage, can lead to diverse chondrodysplasias. One example is the Gly1170Ser substitution in procollagen-II, which causes precocious osteoarthritis. Here, we biochemically and mechanistically characterize an induced pluripotent stem cell-based cartilage model of this disease, including both hetero- and homozygous genotypes. We show that Gly1170Ser procollagen-II is notably slow to fold and secrete. Instead, procollagen-II accumulates intracellularly, consistent with an endoplasmic reticulum (ER) storage disorder. Likely owing to the unique features of the collagen triple helix, this accumulation is not recognized by the unfolded protein response. Gly1170Ser procollagen-II interacts to a greater extent than wild-type with specific ER proteostasis network components, consistent with its slow folding. These findings provide mechanistic elucidation into the etiology of this disease. Moreover, the easily expandable cartilage model will enable rapid testing of therapeutic strategies to restore proteostasis in the collagenopathies.
胶原病是一组由胶原折叠和分泌缺陷引起的临床表现多样的疾病。例如,编码胶原 II 型的基因突变,这是软骨中的主要胶原,可导致多种软骨发育不良。一个例子是前胶原 II 中的 Gly1170Ser 取代,导致早发性骨关节炎。在这里,我们对这种疾病的基于诱导多能干细胞的软骨模型进行了生化和机制表征,包括杂合和纯合基因型。我们表明,Gly1170Ser 前胶原 II 折叠和分泌明显较慢。相反,前胶原 II 在细胞内积累,这与内质网(ER)储存障碍一致。可能由于胶原三螺旋的独特特征,这种积累不会被未折叠蛋白反应识别。与野生型相比,Gly1170Ser 前胶原 II 与特定的 ER 蛋白稳态网络成分相互作用的程度更大,这与其折叠缓慢一致。这些发现为该疾病的病因提供了机制阐明。此外,这种易于扩展的软骨模型将能够快速测试恢复胶原病中蛋白质稳态的治疗策略。