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Effect of the achondroplasia mutation on FGFR3 dimerization and FGFR3 structural response to fgf1 and fgf2: A quantitative FRET study in osmotically derived plasma membrane vesicles

机译:软骨发育不全突变对FGFR3二聚化和FGFR3对fgf1和fgf2的结构反应的影响:渗透性质膜囊泡中的定量FRET研究

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摘要

The G380R mutation in the transmembrane domain of FGFR3 is a germline mutation responsible for most cases of Achondroplasia, a common form of human dwarfism. Here we use quantitative Föster Resonance Energy Transfer (FRET) and osmotically derived plasma membrane vesicles to study the effect of the achondroplasia mutation on the early stages of FGFR3 signaling in response to the ligands fgf1 and fgf2. Using a methodology that allows us to capture structural changes on the cytoplasmic side of the membrane in response to ligand binding to the extracellular domain of FGFR3, we observe no measurable effects of the G380R mutation on FGFR3 ligand-bound dimer configurations. Instead, the most notable effect of the achondroplasia mutation is increased propensity for FGFR3 dimerization in the absence of ligand. This work reveals new information about the molecular events that underlie the achondroplasia phenotype, and highlights differences in FGFR3 activation due to different single amino-acid pathogenic mutations.
机译:FGFR3跨膜结构域中的G380R突变是种系突变,可导致大多数软骨发育不全症(人矮化的一种常见形式)。在这里,我们使用定量Föster共振能量转移(FRET)和渗透性质膜囊泡来研究软骨发育不良突变对FGFR3信号响应配体fgf1和fgf2的早期作用。使用一种使我们能够捕获响应配体与FGFR3胞外域结合的膜细胞质侧结构变化的方法,我们观察到G380R突变对FGFR3配体结合的二聚体构型没有可测量的影响。相反,软骨发育不全突变的最显着效果是在没有配体的情况下增加了FGFR3二聚化的倾向。这项工作揭示了有关软骨发育不良表型基础的分子事件的新信息,并强调了由于不同的单个氨基酸致病性突变导致FGFR3激活的差异。

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