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Zic2 突变鼠神经管闭合失败的双重机制。

Dual mechanism underlying failure of neural tube closure in the Zic2 mutant mouse.

机构信息

Developmental Biology and Cancer Department, Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.

出版信息

Dis Model Mech. 2023 Mar 1;16(3). doi: 10.1242/dmm.049858. Epub 2023 Mar 14.

Abstract

Understanding the molecular mechanisms that lead to birth defects is an important step towards improved primary prevention. Mouse embryos homozygous for the Kumba (Ku) mutant allele of Zic2 develop severe spina bifida with complete lack of dorsolateral hinge points (DLHPs) in the neuroepithelium. Bone morphogenetic protein (BMP) signalling is overactivated in Zic2Ku/Ku embryos, and the BMP inhibitor dorsomorphin partially rescues neural tube closure in cultured embryos. RhoA signalling is also overactivated, with accumulation of actomyosin in the Zic2Ku/Ku neuroepithelium, and the myosin inhibitor Blebbistatin partially normalises neural tube closure. However, dorsomorphin and Blebbistatin differ in their effects at tissue and cellular levels: DLHP formation is rescued by dorsomorphin but not Blebbistatin, whereas abnormal accumulation of actomyosin is rescued by Blebbistatin but not dorsomorphin. These findings suggest a dual mechanism of spina bifida origin in Zic2Ku/Ku embryos: faulty BMP-dependent formation of DLHPs and RhoA-dependent F-actin accumulation in the neuroepithelium. Hence, we identify a multi-pathway origin of spina bifida in a mammalian system that may provide a developmental basis for understanding the corresponding multifactorial human defects.

摘要

了解导致出生缺陷的分子机制是改善初级预防的重要步骤。Zic2 基因的 Kumba(Ku)纯合突变等位基因的小鼠胚胎会发展出严重的脊柱裂,神经上皮中完全缺乏背外侧铰链点(DLHPs)。骨形态发生蛋白(BMP)信号在 Zic2Ku/Ku 胚胎中过度激活,BMP 抑制剂 dorsomorphin 部分挽救了培养胚胎中的神经管闭合。RhoA 信号也过度激活,Zic2Ku/Ku 神经上皮中肌动球蛋白的积累,肌球蛋白抑制剂 Blebbistatin 部分使神经管闭合正常化。然而,dorsomorphin 和 Blebbistatin 在组织和细胞水平上的作用不同:DLHP 的形成被 dorsomorphin 挽救,但不是 Blebbistatin;而肌动球蛋白的异常积累被 Blebbistatin 挽救,但不是 dorsomorphin。这些发现表明 Zic2Ku/Ku 胚胎脊柱裂的起源存在双重机制:DLHP 的形成是 BMP 依赖性的,神经上皮中 RhoA 依赖性 F-肌动蛋白的积累。因此,我们在哺乳动物系统中确定了脊柱裂的多途径起源,这可能为理解相应的多因素人类缺陷提供了发育基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7453/10073009/19962a0e0775/dmm-16-049858-g1.jpg

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