首页> 美国卫生研究院文献>Frontiers in Molecular Neuroscience >Smaller Body Size Early Postnatal Lethality and Cortical Extracellular Matrix-Related Gene Expression Changes of Cyfip2-Null Embryonic Mice
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Smaller Body Size Early Postnatal Lethality and Cortical Extracellular Matrix-Related Gene Expression Changes of Cyfip2-Null Embryonic Mice

机译:Cyfip2-Null胚胎小鼠的较小的体型早期产后死亡和皮质细胞外基质相关基因表达变化。

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摘要

Cytoplasmic FMR1-interacting protein 2 (CYFIP2) is a key component of the WAVE regulatory complex (WRC) which regulates actin polymerization and branching in diverse cellular compartments. Recent whole exome sequencing studies identified de novo hotspot variants in CYFIP2 from patients with early-onset epileptic encephalopathy and microcephaly, suggesting that CYFIP2 may have some functions in embryonic brain development. Although perinatal lethality of Cyfip2-null (Cyfip2−/−) mice was reported, the exact developmental time point and cause of lethality, and whether Cyfip2−/− embryonic mice have brain abnormalities remain unknown. We found that endogenous Cyfip2 is mainly expressed in the brain, spinal cord, and thymus of mice at late embryonic stages. Cyfip2−/− embryos did not show lethality at embryonic day 18.5 (E18.5), but their body size was smaller than that of wild-type (WT) or Cyfip2+/− littermates. Meanwhile, at postnatal day 0, all identified Cyfip2−/− mice were found dead, suggesting early postnatal lethality of the mice. Nevertheless, the brain size and cortical cytoarchitecture were comparable among WT, Cyfip2+/−, and Cyfip2−/− mice at E18.5. Using RNA-sequencing analyses, we identified 98 and 72 differentially expressed genes (DEGs) from the E18.5 cortex of Cyfip2+/− and Cyfip2−/− mice, respectively. Further bioinformatic analyses suggested that extracellular matrix (ECM)-related gene expression changes in Cyfip2−/− embryonic cortex. Together, our results suggest that CYFIP2 is critical for embryonic body growth and for early postnatal survival, and that loss of its expression leads to ECM-related gene expression changes in the embryonic cortex without severe gross morphological defects.
机译:细胞质FMR1相互作用蛋白2(CYFIP2)是WAVE调节复合物(WRC)的关键成分,该复合物调节肌动蛋白的聚合和在不同细胞区室中的分支。最近的全外显子组测序研究从患有早发性癫痫性脑病和小头畸形的患者中发现了CYFIP2的从头热点变体,这表明CYFIP2可能在胚胎脑发育中具有某些功能。尽管已报告了Cyfip2-null(Cyfip2 -/-)小鼠的围生期致死率,但确切的发育时间和致死原因以及Cyfip2 -/-胚胎小鼠是否具有脑异常仍然未知。我们发现内源性Cyfip2主要在胚胎后期的小鼠的大脑,脊髓和胸腺中表达。 Cyfip2 -/-胚胎在胚胎第18.5天(E18.5)并未显示出致死性,但其体型小于野生型(WT)或Cyfip2 +/- < / sup> littermates。同时,在出生后第0天,所有已识别的Cyfip2 -/-小鼠均被发现死亡,表明这些小鼠在出生后具有早期致死性。尽管如此,WT,Cyfip2 +/- 和Cyfip2 -/-小鼠的脑大小和皮质细胞结构在E18.5时是可比的。使用RNA测序分析,我们分别从Cyfip2 +/- 和Cyfip2 -// 小鼠的E18.5皮质中鉴定了98和72个差异表达基因(DEG)。 。进一步的生物信息学分析表明,Cyfip2 -// 胚胎皮质中细胞外基质(ECM)相关基因表达发生了变化。总之,我们的结果表明CYFIP2对于胚胎体生长和出生后早期存活至关重要,并且其表达的丧失导致胚胎皮层中ECM相关基因表达的改变,而没有严重的总体形态缺陷。

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