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Marfan syndrome-causing mutations in fibrillin-1 result in gross morphological alterations and highlight the structural importance of the second hybrid domain

机译:马凡氏综合征引起的原纤维蛋白-1突变导致大体形态改变并突出第二个杂交结构域的结构重要性

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摘要

Mutations in fibrillin-1 result in Marfan syndrome, which affects the cardiovascular, skeletal and ocular systems. The multiorgan involvement and wide spectrum of associated phenotypes highlights the complex pathogenesis underlying Marfan syndrome. To elucidate the genotype to phenotype correlations, we engineered four Marfan syndrome causing mutations into a fibrillin-1 fragment encoded by exons 18 -25, a region known to interact with tropoelastin. Biophysical and biochemical approaches, including small angle x-ray scattering, analytical ultracentrifugation, and circular dichroism, were used to study the impact of these mutations upon the structure and function of the protein. Mutations G880S, C862R, and C908R, situated within the second hybrid domain, disrupted the ratio of α-helix to β-sheet leading to a more compact conformation. These data clearly demonstrate the importance of the previously uncharacterized hybrid domain in fibrillin-1 structure. In contrast, mutation K1023N situated within the linker region between the third eight cysteine motif and cbEGF 11 markedly extended the length of the fragment. However, none of the mutations affected tropoelastin binding. The profound effects of all four mutations on fragment conformation suggest that they contribute to the pathogenesis of Marfan syndrome by disrupting protein folding and its assembly into fibrillin-rich microfibrils. © 2006 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:Fibrillin-1的突变会导致马凡综合症,这会影响心血管,骨骼和眼部系统。多器官参与和相关表型的广谱突出了潜在的马凡综合症的复杂发病机制。为了阐明基因型与表型的相关性,我们设计了四个马凡氏综合症,这些突变导致突变形成由外显子18 -25(一个已知与原弹性蛋白相互作用的区域)编码的fibrillin-1片段。生物物理和生化方法,包括小角度X射线散射,分析超速离心和圆二色性,被用于研究这些突变对蛋白质结构和功能的影响。位于第二杂合结构域内的突变G880S,C862R和C908R破坏了α-螺旋与β-折叠的比例,从而导致了更为紧凑的构象。这些数据清楚地证明了原纤化的杂合结构域在原纤维蛋白1结构中的重要性。相反,位于第三个八个半胱氨酸基序和cbEGF 11之间的接头区域内的突变K1023N明显延长了片段的长度。但是,没有一个突变影响原弹性蛋白的结合。所有这四个突变对片段构象的深远影响表明,它们通过破坏蛋白质折叠并将其组装成富含原纤维蛋白的微原纤维来促进马凡氏综合征的发病。 ©2006美国生物化学与分子生物学学会版权所有。

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