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CHD7 and retinoic acid signaling cooperate to regulate neural stem cell and inner ear development in mouse models of CHARGE syndrome

机译:CHD7和视黄酸信号传导共同调节CHARGE综合征小鼠模型中的神经干细胞和内耳发育

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摘要

CHARGE syndrome is a multiple congenital anomaly disorder that leads to life-threatening birth defects, such as choanal atresia and cardiac malformations as well as multiple sensory impairments, that affect hearing, vision, olfaction and balance. CHARGE is caused by heterozygous mutations in CHD7, which encodes an ATP-depend-ent chromatin remodeling enzyme. Identification of the mechanisms underlying neurological and sensory defects in CHARGE is a first step toward developing treatments for CHARGE individuals. Here, we used mouse models of Chd7 deficiency to explore the function of CHD7 in the development of the subventricular zone (SVZ) neural stem cell niche and inner ear, structures that are important for olfactory bulb neurogenesis and hearing and balance, respectively. We found that loss of Chd7 results in cell-autonomous proliferative, neurogenic and self-renewal defects in the perinatal and mature mouse SVZ stem cell niche. Modulation of retinoic acid (RA) signaling prevented in vivo inner ear and in vitro neural stem cell defects caused by Chd7 deficiency. Our findings demonstrate critical, cooperative roles for RA and CHD7 in SVZ neural stem cell function and inner ear development, suggesting that altered RA signaling may be an effective method for treating Chd7deficiency.
机译:CHARGE综合征是一种多发性先天性异常疾病,会导致危及生命的出生缺陷,例如,胆道闭锁和心脏畸形,以及会影响听觉,视觉,嗅觉和平衡的多种感觉障碍。 CHARGE是由CHD7中的杂合突变引起的,CHD7编码依赖于ATP的染色质重塑酶。查明CHARGE神经和感觉缺陷的潜在机制是朝着针对CHARGE个人发展治疗的第一步。在这里,我们使用Chd7缺乏症的小鼠模型来探索CHD7在脑室下区(SVZ)神经干细胞小生境和内耳发育中的功能,这些结构分别对嗅球神经发生,听觉和平衡很重要。我们发现Chd7的丢失导致围产期和成熟的小鼠SVZ干细胞利基中的细胞自主增殖,神经源性和自我更新缺陷。视黄酸(RA)信号传导的调节可防止体内Chd7缺乏引起的内耳和体外神经干细胞缺陷。我们的研究结果表明RA和CHD7在SVZ神经干细胞功能和内耳发育中起关键,协同作用,表明改变RA信号可能是治疗Chd7缺乏症的有效方法。

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