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成骨不全性骨纤维发育不良的分子发育生物学:以小见大。

Molecular Developmental Biology of Fibrodysplasia Ossificans Progressiva: Measuring the Giant by Its Toe.

机构信息

Division of Plastic Surgery, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

Center for Research in FOP and Related Disorders, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Biomolecules. 2024 Aug 15;14(8):1009. doi: 10.3390/biom14081009.

Abstract

When a genetic disease is characterized by the abnormal activation of normal molecular pathways and cellular events, it is illuminating to critically examine the places and times of these activities both in health and disease. Therefore, because heterotopic ossification (HO) in fibrodysplasia ossificans progressiva (FOP) is by far the disease's most prominent symptom, attention is also directed toward the pathways and processes of bone formation during skeletal development. FOP is recognizable by effects of the causative mutation on skeletal development even before HO manifests, specifically in the malformation of the great toes. This signature skeletal phenotype is the most highly penetrant, but is only one among several skeletal abnormalities associated with FOP. Patients may present clinically with joint malformation and ankylosis, particularly in the cervical spine and costovertebral joints, as well as characteristic facial features and a litany of less common, non-skeletal symptoms, all stemming from missense mutations in the gene. In the same way that studying the genetic cause of HO advanced our understanding of HO initiation and progression, insight into the roles of ACVR1 signaling during tissue development, particularly in the musculoskeletal system, can be gained from examining altered skeletal development in individuals with FOP. This review will detail what is known about the molecular mechanisms of developmental phenotypes in FOP and the early role of ACVR1 in skeletal patterning and growth, as well as highlight how better understanding these processes may serve to advance patient care, assessments of patient outcomes, and the fields of bone and joint biology.

摘要

当一种遗传疾病的特征是正常分子途径和细胞事件的异常激活时,批判性地检查这些活动在健康和疾病中的位置和时间是很有启发性的。因此,由于纤维发育不良性骨化性纤维瘤(FOP)中的异位骨化(HO)迄今为止是该疾病最突出的症状,因此也将注意力集中在骨骼发育过程中的骨形成途径和过程上。FOP 可通过致病突变对骨骼发育的影响来识别,甚至在 HO 出现之前,特别是在大脚趾的畸形。这种标志性的骨骼表型是最高度外显的,但只是与 FOP 相关的几种骨骼异常之一。患者可能会出现关节畸形和强直的临床症状,尤其是在颈椎和肋胸关节,以及特征性的面部特征和一系列较少见的非骨骼症状,所有这些都源于基因中的错义突变。同样,研究 HO 发生的遗传原因可以促进我们对 HO 起始和进展的理解,从 FOP 个体中骨骼发育的改变中可以了解到 ACVR1 信号在组织发育,特别是在肌肉骨骼系统中的作用。这篇综述将详细介绍 FOP 中发育表型的分子机制以及 ACVR1 在骨骼模式形成和生长中的早期作用,以及如何更好地理解这些过程可能有助于改善患者护理、评估患者结局以及骨骼和关节生物学领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7581/11353020/67ab25366fbd/biomolecules-14-01009-g001.jpg

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