Forlino Antonella, Marini Joan C
Department of Molecular Medicine, Biochemistry Unit, University of Pavia, Pavia, Italy.
Bone and Extracellular Matrix Branch, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD, USA.
Lancet. 2016 Apr 16;387(10028):1657-71. doi: 10.1016/S0140-6736(15)00728-X. Epub 2015 Nov 3.
Osteogenesis imperfecta is a phenotypically and molecularly heterogeneous group of inherited connective tissue disorders that share similar skeletal abnormalities causing bone fragility and deformity. Previously, the disorder was thought to be an autosomal dominant bone dysplasia caused by defects in type I collagen, but in the past 10 years discoveries of novel (mainly recessive) causative genes have lent support to a predominantly collagen-related pathophysiology and have contributed to an improved understanding of normal bone development. Defects in proteins with very different functions, ranging from structural to enzymatic and from intracellular transport to chaperones, have been described in patients with osteogenesis imperfecta. Knowledge of the specific molecular basis of each form of the disorder will advance clinical diagnosis and potentially stimulate targeted therapeutic approaches. In this Seminar, together with diagnosis, management, and treatment, we describe the defects causing osteogenesis imperfecta and their mechanism and interrelations, and classify them into five groups on the basis of the metabolic pathway compromised, specifically those related to collagen synthesis, structure, and processing; post-translational modification; folding and cross-linking; mineralisation; and osteoblast differentiation.
成骨不全症是一组在表型和分子水平上具有异质性的遗传性结缔组织疾病,它们具有相似的骨骼异常,可导致骨骼脆弱和畸形。以前,该疾病被认为是由I型胶原蛋白缺陷引起的常染色体显性骨发育异常,但在过去10年中,新的(主要是隐性)致病基因的发现支持了主要与胶原蛋白相关的病理生理学,并有助于更好地理解正常骨骼发育。在成骨不全症患者中,已经描述了具有非常不同功能的蛋白质的缺陷,从结构到酶促,从细胞内运输到伴侣蛋白。了解该疾病每种形式的具体分子基础将推动临床诊断,并可能刺激有针对性的治疗方法。在本研讨会上,我们将与诊断、管理和治疗一起,描述导致成骨不全症的缺陷及其机制和相互关系,并根据受损的代谢途径将它们分为五组,特别是那些与胶原蛋白合成、结构和加工、翻译后修饰、折叠和交联、矿化以及成骨细胞分化相关的代谢途径。