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HOXB1 founder mutation in humans recapitulates the phenotype of Hoxb1 -/- mice

机译:人类中的HOXB1创建者突变概述了Hoxb1-/-小鼠的表型

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Members of the highly conserved homeobox (HOX) gene family encode transcription factors that confer cellular and tissue identities along the antero-posterior axis of mice and humans. We have identified a founder homozygous missense mutation in HOXB1 in two families from a conservative German American population. The resulting phenotype includes bilateral facial palsy, hearing loss, and strabismus and correlates extensively with the previously reported Hoxb1 -/- mouse phenotype. The missense variant is predicted to result in the substitution of a cysteine for an arginine at amino acid residue 207 (Arg207Cys), which corresponds to the highly conserved Arg5 of the homeodomain. Arg5 interacts with thymine in the minor groove of DNA through hydrogen bonding and electrostatic attraction. Molecular modeling and an in vitro DNA-protein binding assay predict that the mutation would disrupt these interactions, destabilize the HOXB1:PBX1:DNA complex, and alter HOXB1 transcriptional activity.
机译:高度保守的同源盒(HOX)基因家族的成员编码转录因子,赋予小鼠和人类前后轴细胞和组织同一性。我们已经确定了来自保守的德裔美国人人群的两个家庭中HOXB1的创始人纯合错义突变。产生的表型包括双侧面部麻痹,听力丧失和斜视,并且与先前报道的Hoxb1-/-小鼠表型广泛相关。预测该错义变体将导致在氨基酸残基207(Arg207Cys)处的半胱氨酸被精氨酸取代,这对应于同源域的高度保守的Arg5。 Arg5通过氢键和静电吸引作用与DNA小沟中的胸腺嘧啶相互作用。分子建模和体外DNA-蛋白质结合测定法预测该突变将破坏这些相互作用,破坏HOXB1:PBX1:DNA复合物的稳定性,并改变HOXB1的转录活性。

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