Soltani Asma, Lebrun Solène, Carpentier Gilles, Zunino Giulia, Chantepie Sandrine, Maïza Auriane, Bozzi Yuri, Desnos Claire, Darchen François, Stettler Olivier
UMR 8250, Centre National de la Recherche Scientifique, Université Paris Descartes, Sorbonne Paris Cité, Paris, France.
Laboratoire Croissance, Réparation et Régénération Tissulaires (CRRET), EA 4397 / ERL 9215, Centre National de la Recherche Scientifique, Université Paris Est Créteil, Créteil, France.
PLoS One. 2017 Aug 15;12(8):e0181350. doi: 10.1371/journal.pone.0181350. eCollection 2017.
Engrailed 1 (En1) and 2 (En2) code for closely related homeoproteins acting as transcription factors and as signaling molecules that contribute to midbrain and hindbrain patterning, to development and maintenance of monoaminergic pathways, and to retinotectal wiring. En2 has been suggested to be an autism susceptibility gene and individuals with autism display an overexpression of this homeogene but the mechanisms remain unclear. We addressed in the present study the effect of exogenously added En2 on the morphology of hippocampal cells that normally express only low levels of Engrailed proteins. By means of RT-qPCR, we confirmed that En1 and En2 were expressed at low levels in hippocampus and hippocampal neurons, and observed a pronounced decrease in En2 expression at birth and during the first postnatal week, a period characterized by intense synaptogenesis. To address a putative effect of Engrailed in dendritogenesis or synaptogenesis, we added recombinant En1 or En2 proteins to hippocampal cell cultures. Both En1 and En2 treatment increased the complexity of the dendritic tree of glutamatergic neurons, but only En2 increased that of GABAergic cells. En1 increased the density of dendritic spines both in vitro and in vivo. En2 had similar but less pronounced effect on spine density. The number of mature synapses remained unchanged upon En1 treatment but was reduced by En2 treatment, as well as the area of post-synaptic densities. Finally, both En1 and En2 elevated mTORC1 activity and protein synthesis in hippocampal cells, suggesting that some effects of Engrailed proteins may require mRNA translation. Our results indicate that Engrailed proteins can play, even at low concentrations, an active role in the morphogenesis of hippocampal cells. Further, they emphasize the over-regulation of GABA cell morphology and the vulnerability of excitatory synapses in a pathological context of En2 overexpression.
Engrailed 1(En1)和Engrailed 2(En2)编码密切相关的同源结构域蛋白,这些蛋白作为转录因子和信号分子,参与中脑和后脑的模式形成、单胺能通路的发育和维持以及视网膜顶盖神经纤维连接。En2被认为是一个自闭症易感基因,自闭症患者中该同源基因表达上调,但其机制尚不清楚。在本研究中,我们探讨了外源性添加En2对正常仅表达低水平Engrailed蛋白的海马细胞形态的影响。通过RT-qPCR,我们证实En1和En2在海马及海马神经元中低水平表达,并观察到出生时及出生后第一周En2表达显著下降,这一时期以强烈的突触形成为特征。为了研究Engrailed在树突形成或突触形成中的潜在作用,我们将重组En1或En2蛋白添加到海马细胞培养物中。En1和En2处理均增加了谷氨酸能神经元树突树的复杂性,但只有En2增加了γ-氨基丁酸能细胞的树突树复杂性。En1在体外和体内均增加了树突棘的密度。En2对棘密度有类似但不太明显的影响。En1处理后成熟突触的数量保持不变,但En2处理使其减少,突触后致密区面积也减小。最后,En1和En2均提高了海马细胞中mTORC1的活性和蛋白质合成,这表明Engrailed蛋白的某些作用可能需要mRNA翻译。我们的结果表明,即使在低浓度下,Engrailed蛋白也能在海马细胞的形态发生中发挥积极作用。此外,它们强调了在En2过表达的病理背景下,γ-氨基丁酸能细胞形态的过度调节以及兴奋性突触的脆弱性。