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Abnormal Type I Collagen Post-translational Modification and Crosslinking in a Cyclophilin B KO Mouse Model of Recessive Osteogenesis Imperfecta

机译:隐性成骨不全症的亲环素B KO小鼠模型中异常I型胶原的翻译后修饰和交联。

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摘要

Cyclophilin B (CyPB), encoded by PPIB, is an ER-resident peptidyl-prolyl cis-trans isomerase (PPIase) that functions independently and as a component of the collagen prolyl 3-hydroxylation complex. CyPB is proposed to be the major PPIase catalyzing the rate-limiting step in collagen folding. Mutations in PPIB cause recessively inherited osteogenesis imperfecta type IX, a moderately severe to lethal bone dysplasia. To investigate the role of CyPB in collagen folding and post-translational modifications, we generated Ppib−/− mice that recapitulate the OI phenotype. Knock-out (KO) mice are small, with reduced femoral areal bone mineral density (aBMD), bone volume per total volume (BV/TV) and mechanical properties, as well as increased femoral brittleness. Ppib transcripts are absent in skin, fibroblasts, femora and calvarial osteoblasts, and CyPB is absent from KO osteoblasts and fibroblasts on western blots. Only residual (2–11%) collagen prolyl 3-hydroxylation is detectable in KO cells and tissues. Collagen folds more slowly in the absence of CyPB, supporting its rate-limiting role in folding. However, treatment of KO cells with cyclosporine A causes further delay in folding, indicating the potential existence of another collagen PPIase. We confirmed and extended the reported role of CyPB in supporting collagen lysyl hydroxylase (LH1) activity. Ppib−/− fibroblast and osteoblast collagen has normal total lysyl hydroxylation, while increased collagen diglycosylation is observed. Liquid chromatography/mass spectrometry (LC/MS) analysis of bone and osteoblast type I collagen revealed site-specific alterations of helical lysine hydroxylation, in particular, significantly reduced hydroxylation of helical crosslinking residue K87. Consequently, underhydroxylated forms of di- and trivalent crosslinks are strikingly increased in KO bone, leading to increased total crosslinks and decreased helical hydroxylysine- to lysine-derived crosslink ratios. The altered crosslink pattern was associated with decreased collagen deposition into matrix in culture, altered fibril structure in tissue, and reduced bone strength. These studies demonstrate novel consequences of the indirect regulatory effect of CyPB on collagen hydroxylation, impacting collagen glycosylation, crosslinking and fibrillogenesis, which contribute to maintaining bone mechanical properties.
机译:由PPIB编码的亲环蛋白B(CyPB)是一种ER驻留肽基-脯氨酰顺反异构酶(PPIase),其独立发挥功能并作为胶原脯氨酰3-羟基化复合物的组成部分。 CyPB被认为是催化胶原蛋白折叠中限速步骤的主要PPIase。 PPIB中的突变会导致隐性遗传性IX型成骨不全症,这是一种中等程度的严重至致死性骨发育不良。为了研究CyPB在胶原蛋白折叠和翻译后修饰中的作用,我们产生了Ppib -/-小鼠,它们概括了OI表型。敲除(KO)小鼠很小,股骨区域的骨矿物质密度(aBMD),单位体积的骨体积(BV / TV)和机械性能降低,并且股骨脆性增加。在蛋白质印迹中,皮肤,成纤维细胞,股骨和颅骨成骨细胞中不存在Ppib转录本,而KO成骨细胞和成纤维细胞中不存在CyPB。在KO细胞和组织中仅可检测到残留的(2-11%)胶原脯氨酰3-羟基化。在没有CyPB的情况下,胶原蛋白的折叠速度较慢,从而支持了胶原蛋白在折叠中的限速作用。但是,用环孢菌素A处理KO细胞会导致折叠进一步延迟,这表明可能存在另一种胶原PPIase。我们证实并扩展了CyPB在支持胶原赖氨酰羟化酶(LH1)活性中的作用。 Ppib -/-成纤维细胞和成骨细胞胶原蛋白具有正常的总赖氨酰羟化,而胶原蛋白二糖基化则增加。骨和成骨细胞I型胶原的液相色谱/质谱(LC / MS)分析显示,螺旋赖氨酸羟基化具有特定位置的变化,特别是螺旋交联残基K87的羟基化显着减少。因此,KO骨中二价和三价交联的羟基不足形式显着增加,导致总交联增加,而螺旋羟基赖氨酸与赖氨酸的交联比降低。交联方式的改变与胶原蛋白在培养物中的沉积减少,组织中原纤维结构的改变以及骨强度的降低有关。这些研究证明了CyPB对胶原羟基化的间接调节作用的新结果,影响胶原糖基化,交联和原纤维形成,这有助于维持骨骼的机械性能。

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