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Distinct Effects of Allelic NFIX Mutations on Nonsense-Mediated mRNA Decay Engender Either a Sotos-like or a Marshall-Smith Syndrome

机译:等位基因NFIX突变对无意义介导的Sotos样综合征或Marshall-Smith综合征无意义介导的mRNA衰变增强子的影响

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摘要

By using a combination of array comparative genomic hybridization and a candidate gene approach, we identified nuclear factor I/X (NFIX) deletions or nonsense mutation in three sporadic cases of a Sotos-like overgrowth syndrome with advanced bone age, macrocephaly, developmental delay, scoliosis, and unusual facies. Unlike the aforementioned human syndrome, Nfix-deficient mice are unable to gain weight and die in the first 3 postnatal weeks, while they also present with a spinal deformation and decreased bone mineralization. These features prompted us to consider NFIX as a candidate gene for Marshall-Smith syndrome (MSS), a severe malformation syndrome characterized by failure to thrive, respiratory insufficiency, accelerated osseous maturation, kyphoscoliosis, osteopenia, and unusual facies. Distinct frameshift and splice NFIX mutations that escaped nonsense-mediated mRNA decay (NMD) were identified in nine MSS subjects. NFIX belongs to the Nuclear factor one (NFI) family of transcription factors, but its specific function is presently unknown. We demonstrate that NFIX is normally expressed prenatally during human brain development and skeletogenesis. These findings demonstrate that allelic NFIX mutations trigger distinct phenotypes, depending specifically on their impact on NMD.
机译:通过使用阵列比较基因组杂交和候选基因方法的组合,我们在3例散发性Sotos样过度生长综合征的零星病例中鉴定出了核因子I / X(NFIX)缺失或无义突变,这些病例的骨龄,大头畸形,发育迟缓,脊柱侧弯和异常相。与上述人类综合症不同,Nfix缺陷型小鼠无法在出生后的前3周增加体重并死亡,而它们还表现出脊柱变形和骨矿化减少。这些特征促使我们将NFIX视为Marshall-Smith综合征(MSS)的候选基因,该综合征是一种严重的畸形综合征,其特征是failure壮,呼吸功能不全,骨成熟加速,后凸畸形,骨质减少和异常相。在9名MSS受试者中发现了逃避无意义介导的mRNA衰变(NMD)的明显的移码和剪接NFIX突变。 NFIX属于核因子一(NFI)转录因子家族,但其具体功能目前未知。我们证明,NFIX通常在人脑发育和骨骼生成过程中在产前表达。这些发现表明等位基因NFIX突变会触发不同的表型,具体取决于它们对NMD的影响。

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