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Strain-specific differences in brain gene expression in a hydrocephalic mouse model with motile cilia dysfunction

机译:运动性纤毛功能障碍的脑积水小鼠模型中脑基因表达的菌株特异性差异

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摘要

Congenital hydrocephalus results from cerebrospinal fluid accumulation in the ventricles of the brain and causes severe neurological damage, but the underlying causes are not well understood. It is associated with several syndromes, including primary ciliary dyskinesia (PCD), which is caused by dysfunction of motile cilia. We previously demonstrated that mouse models of PCD lacking ciliary proteins CFAP221, CFAP54 and SPEF2 all have hydrocephalus with a strain-dependent severity. While morphological defects are more severe on the C57BL/6J (B6) background than 129S6/SvEvTac (129), cerebrospinal fluid flow is perturbed on both backgrounds, suggesting that abnormal cilia-driven flow is not the only factor underlying the hydrocephalus phenotype. Here, we performed a microarray analysis on brains from wild type and nm1054 mice lacking CFAP221 on the B6 and 129 backgrounds. Expression differences were observed for a number of genes that cluster into distinct groups based on expression pattern and biological function, many of them implicated in cellular and biochemical processes essential for proper brain development. These include genes known to be functionally relevant to congenital hydrocephalus, as well as formation and function of both motile and sensory cilia. Identification of these genes provides important clues to mechanisms underlying congenital hydrocephalus severity.
机译:先天性脑积水是由于脑脊液在脑室积聚而引起的,并引起严重的神经系统损害,但其根本原因尚不清楚。它与几种综合征相关,包括原发性睫状运动障碍(PCD),这是由运动性纤毛功能障碍引起的。我们以前证明缺乏纤毛蛋白CFAP221,CFAP54和SPEF2的PCD小鼠模型均患有脑积水,其严重程度取决于菌株。尽管C57BL / 6J(B6)背景的形态缺陷比129S6 / SvEvTac(129)更严重,但两种背景下的脑脊液流动均受到干扰,这表明纤毛驱动血流异常不是脑积水表型的唯一因素。在这里,我们对B6和129背景上缺乏CFAP221的野生型和nm1054小鼠的大脑进行了微阵列分析。观察到许多基因的表达差异,这些基因基于表达模式和生物学功能聚类为不同的组,其中许多牵涉到大脑正常发育必不可少的细胞和生化过程。这些包括已知与先天性脑积水在功能上相关的基因,以及运动性和感觉性纤毛的形成和功能。这些基因的鉴定为先天性脑积水严重程度的潜在机制提供了重要线索。

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