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本文引用的文献

1
Xenopus Rnd1 and Rnd3 GTP-binding proteins are expressed under the control of segmentation clock and required for somite formation.非洲爪蟾 Rnd1 和 Rnd3 GTP 结合蛋白在体节时钟的控制下表达,对于体节形成是必需的。
Dev Dyn. 2009 Nov;238(11):2867-76. doi: 10.1002/dvdy.22099.
2
The Drosophila afadin homologue Canoe regulates linkage of the actin cytoskeleton to adherens junctions during apical constriction.果蝇afadin同源物Canoe在顶端收缩过程中调节肌动蛋白细胞骨架与黏附连接的联系。
J Cell Biol. 2009 Jul 13;186(1):57-73. doi: 10.1083/jcb.200904001.
3
N- and E-cadherins in Xenopus are specifically required in the neural and non-neural ectoderm, respectively, for F-actin assembly and morphogenetic movements.非洲爪蟾中的N-钙黏蛋白和E-钙黏蛋白分别在神经外胚层和非神经外胚层中对F-肌动蛋白组装和形态发生运动有特定需求。
Development. 2009 Apr;136(8):1327-38. doi: 10.1242/dev.031203. Epub 2009 Mar 11.
4
Identification and characterization of two zebrafish nectin-1 genes that are differentially expressed in the developing eye and brain.两个在发育中的眼睛和大脑中差异表达的斑马鱼nectin-1基因的鉴定与表征。
Dev Dyn. 2009 Jan;238(1):43-55. doi: 10.1002/dvdy.21813.
5
The immunoglobulin-like cell adhesion molecule nectin and its associated protein afadin.免疫球蛋白样细胞黏附分子nectin及其相关蛋白afadin。
Annu Rev Cell Dev Biol. 2008;24:309-42. doi: 10.1146/annurev.cellbio.24.110707.175339.
6
Shroom3-mediated recruitment of Rho kinases to the apical cell junctions regulates epithelial and neuroepithelial planar remodeling.Shroom3介导的Rho激酶向顶端细胞连接的募集调节上皮和神经上皮平面重塑。
Development. 2008 Apr;135(8):1493-502. doi: 10.1242/dev.019646. Epub 2008 Mar 13.
7
Apical accumulation of Rho in the neural plate is important for neural plate cell shape change and neural tube formation.Rho在神经板顶端的积累对于神经板细胞形态变化和神经管形成至关重要。
Mol Biol Cell. 2008 May;19(5):2289-99. doi: 10.1091/mbc.e07-12-1286. Epub 2008 Mar 12.
8
Hedgehog signaling is a principal inducer of Myosin-II-driven cell ingression in Drosophila epithelia.刺猬信号通路是果蝇上皮中肌球蛋白II驱动的细胞内陷的主要诱导因子。
Dev Cell. 2007 Nov;13(5):730-742. doi: 10.1016/j.devcel.2007.09.015.
9
Cell adhesion molecule Echinoid associates with unconventional myosin VI/Jaguar motor to regulate cell morphology during dorsal closure in Drosophila.细胞黏附分子海胆状蛋白与非常规肌球蛋白VI/美洲豹动力蛋白结合,以调控果蝇背部闭合过程中的细胞形态。
Dev Biol. 2007 Nov 15;311(2):423-33. doi: 10.1016/j.ydbio.2007.08.043. Epub 2007 Aug 31.
10
Actomyosin contractility and microtubules drive apical constriction in Xenopus bottle cells.肌动球蛋白收缩性和微管驱动非洲爪蟾瓶状细胞的顶端收缩。
Dev Biol. 2007 Nov 1;311(1):40-52. doi: 10.1016/j.ydbio.2007.08.010. Epub 2007 Aug 10.

神经钙黏蛋白 2 和 N 钙黏蛋白通过细胞外结构域相互作用,并在非洲爪蟾神经管形态发生的顶端缢缩过程中诱导 F-肌动蛋白在顶端的积累。

Nectin-2 and N-cadherin interact through extracellular domains and induce apical accumulation of F-actin in apical constriction of Xenopus neural tube morphogenesis.

机构信息

Department of Basic Biology, School of Life Science, The Graduate University for Advanced Studies (SOKENDAI), Shonan Village, Hayama, Kanagawa, Japan.

出版信息

Development. 2010 Apr;137(8):1315-25. doi: 10.1242/dev.043190.

DOI:10.1242/dev.043190
PMID:20332149
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2847467/
Abstract

Neural tube formation is one of the most dynamic morphogenetic processes of vertebrate development. However, the molecules regulating its initiation are mostly unknown. Here, we demonstrated that nectin-2, an immunoglobulin-like cell adhesion molecule, is involved in the neurulation of Xenopus embryos in cooperation with N-cadherin. First, we found that, at the beginning of neurulation, nectin-2 was strongly expressed in the superficial cells of neuroepithelium. The knockdown of nectin-2 impaired neural fold formation by attenuating F-actin accumulation and apical constriction, a cell-shape change that is required for neural tube folding. Conversely, the overexpression of nectin-2 in non-neural ectoderm induced ectopic apical constrictions with accumulated F-actin. However, experiments with domain-deleted nectin-2 revealed that the intracellular afadin-binding motif, which links nectin-2 and F-actin, was not required for the generation of the ectopic apical constriction. Furthermore, we found that nectin-2 physically interacts with N-cadherin through extracellular domains, and they cooperatively enhanced apical constriction by driving the accumulation of F-actin at the apical cell surface. Interestingly, the accumulation of N-cadherin at the apical surface of neuroepithelium was dependent on the presence of nectin-2, but that of nectin-2 was not affected by depletion of N-cadherin. We propose a novel mechanism of neural tube morphogenesis regulated by the two types of cell adhesion molecules.

摘要

神经管形成是脊椎动物发育中最具动态性的形态发生过程之一。然而,调节其起始的分子大部分是未知的。在这里,我们证明了免疫球蛋白样细胞粘附分子 nectin-2 与 N-钙粘蛋白一起参与非洲爪蟾胚胎的神经形成。首先,我们发现,在神经形成的开始,nectin-2 在神经上皮的浅层细胞中强烈表达。nectin-2 的敲低通过减弱 F-肌动蛋白积累和顶端收缩来损害神经褶的形成,这是神经管折叠所必需的细胞形状变化。相反,nectin-2 在非神经外胚层中的过表达诱导了带有积累的 F-肌动蛋白的异位顶端收缩。然而,用缺失结构域的 nectin-2 进行的实验表明,将 nectin-2 和 F-肌动蛋白连接起来的细胞内 afadin 结合基序对于产生异位顶端收缩并不是必需的。此外,我们发现 nectin-2 通过细胞外结构域与 N-钙粘蛋白物理相互作用,它们通过驱动 F-肌动蛋白在顶端细胞表面的积累来协同增强顶端收缩。有趣的是,nectin-2 在神经上皮顶端表面的积累依赖于 nectin-2 的存在,而 nectin-2 的存在不受 N-钙粘蛋白耗竭的影响。我们提出了一种由两种类型的细胞粘附分子调节的神经管形态发生的新机制。