小鼠皮质发育过程中Chd8单倍不全导致的细胞型特异性基因表达失调。

IF 11.1 Q1 CELL BIOLOGY
Kristina M Yim, Marybeth Baumgartner, Martina Krenzer, María F Rosales Larios, Guillermina Hill-Terán, Timothy Nottoli, Rebecca A Muhle, James P Noonan
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引用次数: 0

摘要

染色体结构域解旋酶CHD8的破坏性变异与自闭症谱系障碍(ASD)的风险相关。CHD8单倍体功能不全可能通过干扰神经发育基因表达而导致ASD。然而,对CHD8单倍不足的细胞类型特异性转录效应的了解仍然有限。我们使用单细胞和单核RNA测序来鉴定胚胎和幼年Chd8+/-小鼠皮层中的失调基因。Chd8和其他ASD风险相关基因在小鼠和人类发育皮层之间表现出保守的趋同表达轨迹,从祖区向皮质板增加。与神经发育障碍相关或参与染色质重塑和神经元投射发育的基因在Chd8+/-胚胎放射状胶质细胞中失调。在Chd8+/-出生后兴奋性皮质神经元中,与突触活动和组织相关的基因失调,表明突触发生受损。我们的研究结果揭示了由于Chd8单倍体功能不全而导致的转录失调的复杂模式,可能对兴奋性神经元谱系中的祖细胞和成熟神经元产生不同的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cell-type-specific dysregulation of gene expression due to Chd8 haploinsufficiency during mouse cortical development.

Disruptive variants in the chromodomain helicase CHD8 are associated with risk for autism spectrum disorder (ASD). CHD8 haploinsufficiency is hypothesized to contribute to ASD by perturbing neurodevelopmental gene expression. However, insight into cell-type-specific transcriptional effects of CHD8 haploinsufficiency remains limited. We used single-cell and single-nucleus RNA sequencing to identify dysregulated genes in the embryonic and juvenile Chd8+/- mouse cortex. Chd8 and other ASD risk-associated genes showed a convergent expression trajectory conserved between mouse and human developing cortex, increasing from progenitor zones to the cortical plate. Genes associated with neurodevelopmental disorders or involved in chromatin remodeling and neuron projection development were dysregulated in Chd8+/- embryonic radial glia. Genes implicated in synaptic activity and organization were dysregulated in Chd8+/- postnatal excitatory cortical neurons, suggesting impaired synaptogenesis. Our findings reveal complex patterns of transcriptional dysregulation due to Chd8 haploinsufficiency, potentially with distinct impacts on progenitors and maturing neurons in the excitatory neuronal lineage.

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CiteScore
7.10
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