首页> 外文OA文献 >A Novel Mutation in CRYBB1 Associated with Congenital Cataract-Microcornea Syndrome: The p.Ser129Arg Mutation Destabilizes the βB1/βA3-crystallin Heteromer But Not the βB1-crystallin Homomer
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A Novel Mutation in CRYBB1 Associated with Congenital Cataract-Microcornea Syndrome: The p.Ser129Arg Mutation Destabilizes the βB1/βA3-crystallin Heteromer But Not the βB1-crystallin Homomer

机译:先天性白内障-微角膜综合征相关的CRYBB1的新型突变:p.Ser129Arg突变破坏了βB1/βA3-crystallin异构体的稳定性,但没有破坏βB1-crystallin均聚物

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摘要

Congenital cataract-microcornea syndrome (CCMC) is a clinically and genetically heterogeneous condition characterized by lens opacities and microcornea. It appears as a distinct phenotype of heritable congenital cataract. Here we report a large Chinese family with autosomal dominant congenital cataract and microcornea. Evidence for linkage was detected at marker D22S1167 (LOD score [Z]=4.49, recombination fraction [θ]=0.0), which closely flanks the â-crystallin gene cluster locus. Direct sequencing of the candidate âB1-crystallin gene (CRYBB1) revealed a c.387C>A transversion in exon 4, which cosegregated with the disease in the family and resulted in the substitution of serine by arginine at codon 129 (p.Ser129Arg). A comparison of the biophysical properties of the recombinant β-crystallins revealed that the mutation impaired the structures of both βB1-crystallin homomer and βB1/βA3-crystallin heteromer. More importantly, the mutation significantly decreased the thermal stability of βB1/βA3-crystallin but not βB1-crystallin. These findings highlight the importance of protein-protein interactions among β-crystallins in maintaining lens transparency, and provide a novel insight into the molecular mechanism underlying the pathogenesis of human CCMC. © 2011 Wiley-Liss, Inc.
机译:先天性白内障-微角膜综合征(CCMC)是一种临床和遗传上异质性疾病,其特征是晶状体混浊和微角膜。它表现为遗传性先天性白内障的独特表型。在这里,我们报道了一个常染色体显性先天性白内障和微角膜的中国大家庭。在标记D22S1167(LOD分数[Z] = 4.49,重组分数[θ] = 0.0)处检测到了连锁的证据,该标记紧邻α-晶状体蛋白基因簇基因座。对候选âB1-晶状蛋白基因(CRYBB1)的直接测序显示外显子4发生c.387C> A转化,该外显子与该家族的疾病共隔离,并导致第129位密码子的精氨酸取代了丝氨酸(p.Ser129Arg)。重组β-晶状蛋白的生物物理性质的比较表明,该突变破坏了βB1-晶状蛋白同聚物和βB1/βA3-晶状蛋白异聚物的结构。更重要的是,该突变显着降低了βB1/βA3-晶状蛋白的热稳定性,但没有降低βB1-晶状蛋白的热稳定性。这些发现突显了β-晶状体蛋白之间的蛋白质-蛋白质相互作用在维持晶状体透明性方面的重要性,并为人类CCMC发病机理的分子机制提供了新的见解。 ©2011 Wiley-Liss,Inc.

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