模拟亨廷顿氏病小鼠大脑中遗传合作的动力学

Erwan Bigan, S. Nair, F. Lejeune, H. Fragnaud, F. Parmentier, M. Verny, J. Aaronson, J. Rosinski, C. Néri
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引用次数: 0

摘要

基因失调与几种神经退行性疾病(NDs)有关,转录组学数据等全基因组数据的建模在基因表达水平上提供了ND进展的整体模型。然而,基因放松管制对基因-基因相互作用系统(遗传协同性)的时间动力学的影响在NDs中知之甚少。利用多层网络方法,我们交叉整合了描述亨廷顿病(HD)敲入小鼠RNA-seq时间序列数据的三个网络家族,基于源网络中边缘信息的一致性和互补性,重建了这些小鼠大脑中的遗传合作动力学。由此产生的模型表明,HD过程可能发展为遗传协同的两个关键阶段,症状前发生在皮层,涉及神经传递反应,症状性发生在纹状体,涉及细胞存活反应,与细胞衰老和DNA损伤反应交织在一起。这些数据强调了HD小鼠脑损伤/适应的两步逻辑,其中调节神经传递的皮质反应可能先于与症状同步调节细胞稳态的纹状体反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A49 Modeling the dynamics of genetic cooperativity in the brain of huntington’s disease mice
Gene deregulation has been associated with several neurodegenerative diseases (NDs) and modeling genome-wide data such as transcriptomic data has provided holistic models of ND progression on a gene expression level. However, the consequences of gene deregulation on the temporal dynamics of gene-gene interaction systems (genetic cooperativity) is poorly understood in NDs. Using a multi-layer network approach, we cross-integrated three families of networks describing RNA-seq time series data in Huntington’s disease (HD) knock-in mice for reconstructing the dynamics of genetic cooperativity in the brain of these mice based on the consistency and complementarity of edge information in source networks. The resulting model suggests that the HD process may develop as two critical phases of genetic cooperativity, pre-symptomatically in the cortex, involving a neurotransmission response, and symptomatically in the striatum, involving cell survival responses intertwined with cellular senescence and DNA damage responses. These data highlight a 2-step logic for injury/adaptation of the HD mouse brain in which a cortical response for modulating neurotransmission may precede a striatal response for regulating cellular homeostasis synchronous to symptoms.
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