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ATP 依赖的染色质重塑酶 CHD7 调节内耳中神经前体细胞基因表达和神经发生。

The ATP-dependent chromatin remodeling enzyme CHD7 regulates pro-neural gene expression and neurogenesis in the inner ear.

机构信息

Department of Pediatrics, The University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Development. 2010 Sep;137(18):3139-50. doi: 10.1242/dev.047894.

Abstract

Inner ear neurogenesis is positively regulated by the pro-neural bHLH transcription factors Ngn1 and NeuroD, but the factors that act upstream of this regulation are not well understood. Recent evidence in mouse and Drosophila suggests that neural development depends on proper chromatin remodeling, both for maintenance of neural stem cells and for proper neuronal differentiation. Here, we show that CHD7, an ATP-dependent chromatin remodeling enzyme mutated in human CHARGE syndrome, is necessary for proliferation of inner ear neuroblasts and inner ear morphogenesis. Conditional deletion of Chd7 in the developing otocyst using Foxg1-Cre resulted in cochlear hypoplasia and complete absence of the semicircular canals and cristae. Conditional knockout and null otocysts also had reductions in vestibulo-cochlear ganglion size and neuron number in combination with reduced expression of Ngn1, Otx2 and Fgf10, concurrent with expansion of the neural fate suppressor Tbx1 and reduced cellular proliferation. Heterozygosity for Chd7 mutations had no major effects on expression of otic patterning genes or on cell survival, but resulted in decreased proliferation within the neurogenic domain. These data indicate that epigenetic regulation of gene expression by CHD7 must be tightly coordinated for proper development of inner ear neuroblasts.

摘要

内耳神经发生受到神经营养 bHLH 转录因子 Ngn1 和 NeuroD 的正向调控,但调控上游的因子尚未得到很好的理解。最近在小鼠和果蝇中的证据表明,神经发育依赖于适当的染色质重塑,这对于维持神经干细胞和正确的神经元分化都是必需的。在这里,我们发现 CHD7,一种在人类 CHARGE 综合征中发生突变的 ATP 依赖的染色质重塑酶,对于内耳神经母细胞的增殖和内耳形态发生是必需的。使用 Foxg1-Cre 在发育中的耳囊中条件性删除 Chd7 导致耳蜗发育不全和半规管和嵴完全缺失。条件性敲除和缺失的耳泡还导致前庭耳蜗神经节大小和神经元数量减少,同时 Ngn1、Otx2 和 Fgf10 的表达减少,与 Tbx1 神经命运抑制因子的扩张和细胞增殖减少有关。Chd7 突变的杂合性对耳形态发生基因的表达或细胞存活没有主要影响,但导致神经发生区域内的增殖减少。这些数据表明,CHD7 对基因表达的表观遗传调控必须紧密协调,以正确发育内耳神经母细胞。

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