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Fibrillin-1 misfolding and disease.

机译:Fibrillin-1折叠错误和疾病。

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摘要

Fibrillin-1 is a 350 kDa calcium-binding protein which assembles to form 10-12 nm microfibrils in the extracellular matrix (ECM). The structure of fibrillin-1 is dominated by two types of disulfide-rich motifs, the calcium- binding epidermal growth factor-like (cbEGF) and transforming growth factor beta binding protein-like (TB) domains. Disruption of fibrillin-1 domain structure and function contributes to the pathogenic mechanisms underlying two inherited diseases with very different etiologies: Marfan syndrome (MFS) and homocystinuria (HC). MFS is a connective tissue disease caused by mutations in the fibrillin-1 gene FBN1. Many missense mutations cause variable degrees of fibrillin-1 domain misfolding, which may affect the delivery of fibrillin-1 to the ECM and/or its assembly into microfibrils. HC is a metabolic disorder which affects methionine metabolism and results in raised serum levels of the highly reactive thiol-containing amino acid homocysteine. Patients with HC often exhibit ocular and skeletal defects resembling the MFS phenotype, suggesting that elevated homocysteine levels may lead to chemical reduction of disulfide bonds within fibrillin-1 domains resulting in the loss of native structure. Protein misfolding therefore is implicated in pathogenic mechanisms underlying MFS and HC.
机译:Fibrillin-1是一种350 kDa的钙结合蛋白,可在细胞外基质(ECM)中组装形成10-12 nm的微纤维。原纤维蛋白-1的结构由两种类型的富含二硫键的基元控制,即钙结合表皮生长因子样(cbEGF)和转化生长因子β结合蛋白样(TB)域。 Fibrillin-1域结构和功能的破坏促成两种遗传病的病因机制,这两种遗传病具有非常不同的病因:马凡氏综合征(MFS)和高半胱氨酸尿症(HC)。 MFS是由原纤维蛋白1基因FBN1突变引起的结缔组织疾病。许多错义突变导致原纤维蛋白-1结构域错误折叠的程度不同,这可能会影响原纤维蛋白-1向ECM的传递和/或组装成微纤维。 HC是一种代谢异常,影响蛋氨酸的代谢并导致高反应性含硫醇氨基酸高半胱氨酸的血清水平升高。 HC患者通常表现出类似于MFS表型的眼和骨骼缺陷,这表明高半胱氨酸水平升高可能导致原纤维蛋白1结构域内的二硫键化学还原,从而导致天然结构丧失。因此,蛋白质错误折叠与MFS和HC的潜在致病机制有关。

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