Engrailed-2 is a cell autonomous regulator of neurogenesis in cultured hippocampal neural stem cells

IF 2.7 4区 医学 Q2 DEVELOPMENTAL BIOLOGY Developmental Neurobiology Pub Date : 2021-04-14 DOI:10.1002/dneu.22824
Madel Durens, Mai Soliman, James Millonig, Emanuel DiCicco-Bloom
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Abstract

Abnormalities in genes that regulate early brain development are known risk factors for neurodevelopmental disorders. Engrailed-2 (En2) is a homeodomain transcription factor with established roles in cerebellar patterning. En2 is highly expressed in the developing mid-hindbrain region, and En2 knockout (KO) mice exhibit major deficits in mid-hindbrain structures. However, En2 is also expressed in forebrain regions including the hippocampus, but its function is unknown. Previous studies have shown that the hippocampus of En2-KO mice exhibits reductions in its volume and cell numbers due to aberrant neurogenesis. Aberrant neurogenesis is due, in part, to noncell autonomous effects, specifically, reductions of innervating norepinephrine fibers from the locus coeruleus. In this study, we investigate possible cell autonomous roles of En2 in hippocampal neurogenesis. We examine proliferation, survival, and differentiation using cultures of hippocampal neurospheres of P7 wild-type (WT) and En2-KO hippocampal neural progenitor cells (NPCs). At 7 days, En2-KO neurospheres were larger on average than WT spheres and exhibited 2.5-fold greater proliferation and 2-fold increase in apoptotic cells, similar to in vivo KO phenotype. Further, En2-KO cultures exhibited 40% less cells with neurite projections, suggesting decreased differentiation. Lastly, reestablishing En2 expression in En2-KO NPCs rescued excess proliferation. These results indicate that En2 functions in hippocampal NPCs by inhibiting proliferation and promoting survival and differentiation in a cell autonomous manner. More broadly, this study suggests that En2 impacts brain structure and function in diverse regions outside of the mid-hindbrain.

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Engrailed-2是培养海马神经干细胞中神经发生的细胞自主调节因子
调节早期大脑发育的基因异常是已知的神经发育障碍的危险因素。En2是一种同源结构域转录因子,在小脑模式中起着既定的作用。En2在发育中的中脑后脑区域高度表达,En2敲除(KO)小鼠在中脑后脑结构中表现出主要缺陷。然而,En2也在包括海马在内的前脑区域表达,但其功能尚不清楚。先前的研究表明,En2-KO小鼠海马的体积和细胞数量由于神经发生异常而减少。异常的神经发生部分是由于非细胞自主作用,特别是来自蓝斑的去甲肾上腺素纤维的神经支配减少。在这项研究中,我们探讨了En2在海马神经发生中可能的细胞自主作用。我们使用P7野生型(WT)和En2-KO海马神经祖细胞(npc)的海马神经球培养物来检测增殖、存活和分化。在第7天,En2-KO神经球平均比WT球大,增殖能力增加2.5倍,凋亡细胞增加2倍,与体内KO表型相似。此外,En2-KO培养的神经突突起细胞减少了40%,表明分化程度降低。最后,在En2- ko npc中重建En2表达可挽救过度增殖。这些结果表明,En2在海马NPCs中以细胞自主的方式抑制增殖,促进存活和分化。更广泛地说,这项研究表明,En2会影响中脑后脑以外不同区域的大脑结构和功能。
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来源期刊
Developmental Neurobiology
Developmental Neurobiology 生物-发育生物学
CiteScore
6.50
自引率
0.00%
发文量
45
审稿时长
4-8 weeks
期刊介绍: Developmental Neurobiology (previously the Journal of Neurobiology ) publishes original research articles on development, regeneration, repair and plasticity of the nervous system and on the ontogeny of behavior. High quality contributions in these areas are solicited, with an emphasis on experimental as opposed to purely descriptive work. The Journal also will consider manuscripts reporting novel approaches and techniques for the study of the development of the nervous system as well as occasional special issues on topics of significant current interest. We welcome suggestions on possible topics from our readers.
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