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SOX2 is a dose-dependent regulator of retinal neural progenitor competence.

机译:SOX2是视网膜神经祖细胞能力的剂量依赖性调节剂。

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摘要

Approximately 10% of humans with anophthalmia (absent eye) or severe microphthalmia (small eye) show haploid insufficiency due to mutations in SOX2, a SOXB1-HMG box transcription factor. However, at present, the molecular or cellular mechanisms responsible for these conditions are poorly understood. Here, we directly assessed the requirement for SOX2 during eye development by generating a gene-dosage allelic series of Sox2 mutations in the mouse. The Sox2 mutant mice display a range of eye phenotypes consistent with human syndromes and the severity of these phenotypes directly relates to the levels of SOX2 expression found in progenitor cells of the neural retina. Retinal progenitor cells with conditionally ablated Sox2 lose competence to both proliferate and terminally differentiate. In contrast, in Sox2 hypomorphicull mice, a reduction of SOX2 expression to <40% of normal causes variable microphthalmia as a result of aberrant neural progenitor differentiation. Furthermore, we provide genetic and molecular evidence that SOX2 activity, in a concentration-dependent manner, plays a key role in the regulation of the NOTCH1 signaling pathway in retinal progenitor cells. Collectively, these results show that precise regulation of SOX2 dosage is critical for temporal and spatial regulation of retinal progenitor cell differentiation and provide a cellular and molecular model for understanding how hypomorphic levels of SOX2 cause retinal defects in humans.
机译:由于SOXB1-HMG盒转录因子SOX2的突变,患有弱视症(无眼)或重度小眼症(小眼)的人中约有10%显示单倍体功能不足。但是,目前对引起这些情况的分子或细胞机制了解得很少。在这里,我们通过在小鼠中产生基因剂量的Sox2突变等位基因系列,直接评估了眼睛发育过程中对SOX2的需求。 Sox2突变小鼠表现出与人类综合症一致的一系列眼表型,这些表型的严重性直接与神经视网膜祖细胞中SOX2表达的水平有关。具有条件消融的Sox2的视网膜祖细胞失去增殖和最终分化的能力。相反,在Sox2亚型/无效小鼠中,由于异常的神经祖细胞分化,SOX2表达降低至正常水平的<40%会引起可变性小眼症。此外,我们提供了遗传和分子证据,表明SOX2活性以浓度依赖性方式在视网膜祖细胞中NOTCH1信号通路的调节中起关键作用。总的来说,这些结果表明,SOX2剂量的精确调节对于视网膜祖细胞分化的时间和空间调节至关重要,并提供了细胞和分子模型来了解SOX2的亚型水平如何导致人类视网膜缺陷。

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