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The role of SH3BP2 in the pathophysiology of cherubism

机译:SH3BP2在红斑病的病理生理中的作用

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摘要

Cherubism is a rare bone dysplasia that is characterized by symmetrical bone resorption limited to the jaws. Bone lesions are filled with soft fibrous giant cell-rich tissue that can expand and cause severe facial deformity. The disorder typically begins in children at ages of 2-5 years and the bone resorption and facial swelling continues until puberty; in most cases the lesions regress spontaneously thereafter. Most patients with cherubism have germline mutations in the gene encoding SH3BP2, an adapter protein involved in adaptive and innate immune response signaling. A mouse model carrying a Pro416Arg mutation in SH3BP2 develops osteopenia and expansile lytic lesions in bone and some soft tissue organs. In this review we discuss the genetics of cherubism, the biological functions of SH3BP2 and the analysis of the mouse model. The data suggest that the underlying cause for cherubism is a systemic autoinflammatory response to physiologic challenges despite the localized appearance of bone resorption and fibrous expansion to the jaws in humans.
机译:基路伯病是一种罕见的骨发育不良,其特征是限于颌骨的对称骨吸收。骨病变中充满了富含纤维的柔软纤维巨细胞组织,该组织可以扩张并引起严重的面部畸形。这种疾病通常始于2-5岁的儿童,并且骨骼吸收和面部肿胀一直持续到青春期。在大多数情况下,此后病变会自发消退。大多数患有红细胞病的患者在编码SH3BP2的基因中有种系突变,SH3BP2是一种参与适应性和先天性免疫应答信号传导的衔接蛋白。 SH3BP2中带有Pro416Arg突变的小鼠模型会在骨骼和某些软组织器官中出现骨质减少和扩张性溶损。在这篇综述中,我们讨论了基布尔病的遗传学,SH3BP2的生物学功能以及小鼠模型的分析。数据表明,尽管人类出现了局部的骨吸收和纤维扩张至颌骨,但导致红唇病的根本原因是对生理学挑战的全身性自身炎症反应。

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