Department of Osteology and Biomechanics, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.
Department of Trauma and Orthopedic Surgery, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.
Bone. 2023 Dec;177:116927. doi: 10.1016/j.bone.2023.116927. Epub 2023 Oct 4.
Missense variants in the MBTPS2 gene, located on the X chromosome, have been associated with an X-linked recessive form of osteogenesis imperfecta (X-OI), an inherited bone dysplasia characterized by multiple and recurrent bone fractures, short stature, and various skeletal deformities in affected individuals. The role of site-2 protease, encoded by MBTPS2, and the molecular pathomechanism underlying the disease are to date elusive. This study is the first to report on the generation of two Mbtps2 mouse models, a knock-in mouse carrying one of the disease-causative MBTPS2 variants (N455S) and a Mbtps2 knock-out (ko) mouse. Because both loss-of-function variants lead to embryonic lethality in hemizygous male mutant mice, we performed a comprehensive skeletal analysis of heterozygous Mbtps2 and Mbtps2 female mice. Both models displayed osteochondral abnormalities such as thinned subchondral bone, altered subchondral osteocyte interconnectivity as well as thickened articular cartilage with chondrocyte clustering, altogether resembling an early osteoarthritis (OA) phenotype. However, distant from the joints, no alterations in the bone mass and turnover could be detected in either of the mutant mice. Based on our findings we conclude that MBTPS2 haploinsufficiency results in early OA-like alterations in the articular cartilage and underlying subchondral bone, which likely precede the development of typical OI phenotype in bone. Our study provides first evidence for a potential role of site-2 protease for maintaining homeostasis of both bone and cartilage.
位于 X 染色体上的 MBTPS2 基因中的错义变异与 X 连锁隐性成骨不全症(X-OI)有关,这是一种遗传性骨发育不良,其特征是多发性和复发性骨折、身材矮小和受影响个体的各种骨骼畸形。目前尚不清楚由 MBTPS2 编码的位点 2 蛋白酶的作用以及疾病的分子病理机制。这项研究首次报道了两种 Mbtps2 小鼠模型的产生,一种是携带一种疾病相关 MBTPS2 变异(N455S)的敲入小鼠,另一种是 Mbtps2 敲除(ko)小鼠。由于这两种功能丧失变异都会导致半合子雄性突变小鼠的胚胎致死,我们对杂合 Mbtps2 和 Mbtps2 雌性小鼠进行了全面的骨骼分析。这两种模型都显示出软骨下骨变薄、软骨下骨细胞连接改变以及关节软骨增厚和软骨细胞聚集等骨软骨异常,整体上类似于早期骨关节炎(OA)表型。然而,在关节远处,两种突变小鼠的骨量和周转率均未发生变化。基于我们的发现,我们得出结论,MBTPS2 杂合不足导致关节软骨和软骨下骨早期出现类似 OA 的改变,这可能先于骨骼中典型 OI 表型的发展。我们的研究首次为位点 2 蛋白酶在维持骨和软骨的平衡方面的潜在作用提供了证据。