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ECE2在人类皮层发育过程中调节神经发生和神经元迁移。

ECE2 regulates neurogenesis and neuronal migration during human cortical development.

作者信息

Buchsbaum Isabel Y, Kielkowski Pavel, Giorgio Grazia, O'Neill Adam C, Di Giaimo Rossella, Kyrousi Christina, Khattak Shahryar, Sieber Stephan A, Robertson Stephen P, Cappello Silvia

机构信息

Max Planck Institute of Psychiatry, Munich, Germany.

Graduate School of Systemic Neurosciences, Ludwig-Maximilians-University Munich, Planegg, Germany.

出版信息

EMBO Rep. 2020 May 6;21(5):e48204. doi: 10.15252/embr.201948204. Epub 2020 Mar 24.

Abstract

During embryonic development, excitatory projection neurons migrate in the cerebral cortex giving rise to organised layers. Periventricular heterotopia (PH) is a group of aetiologically heterogeneous disorders in which a subpopulation of newborn projection neurons fails to initiate their radial migration to the cortex, ultimately resulting in bands or nodules of grey matter lining the lateral ventricles. Although a number of genes have been implicated in its cause, currently they only satisfactorily explain the pathogenesis of the condition for 50% of patients. Novel gene discovery is complicated by the extreme genetic heterogeneity recently described to underlie its cause. Here, we study the neurodevelopmental role of endothelin-converting enzyme-2 (ECE2) for which two biallelic variants have been identified in two separate patients with PH. Our results show that manipulation of ECE2 levels in human cerebral organoids and in the developing mouse cortex leads to ectopic localisation of neural progenitors and neurons. We uncover the role of ECE2 in neurogenesis, and mechanistically, we identify its involvement in the generation and secretion of extracellular matrix proteins in addition to cytoskeleton and adhesion.

摘要

在胚胎发育过程中,兴奋性投射神经元在大脑皮层中迁移,形成有组织的层。室周异位(PH)是一组病因异质性疾病,其中一部分新生投射神经元未能启动向皮层的径向迁移,最终导致侧脑室周围出现灰质带或结节。尽管已有多个基因被认为与该病的病因有关,但目前它们仅能令人满意地解释50%患者病情的发病机制。由于最近发现其病因存在极端的遗传异质性,新基因的发现变得复杂。在此,我们研究了内皮素转换酶2(ECE2)的神经发育作用,在两名患有PH的独立患者中已鉴定出两个双等位基因变体。我们的结果表明,在人脑类器官和发育中的小鼠皮层中操纵ECE2水平会导致神经祖细胞和神经元的异位定位。我们揭示了ECE2在神经发生中的作用,从机制上讲,我们确定它除了参与细胞骨架和黏附外,还参与细胞外基质蛋白的生成和分泌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3736/7202216/c5407377a527/EMBR-21-e48204-g002.jpg

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