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斑马鱼胚胎脊索发育过程中 PACSIN/Syndapin 作用的结构要求。

Structural requirements for PACSIN/Syndapin operation during zebrafish embryonic notochord development.

机构信息

Cambridge Institute for Medical Research, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS One. 2009 Dec 3;4(12):e8150. doi: 10.1371/journal.pone.0008150.

Abstract

PACSIN/Syndapin proteins are membrane-active scaffolds that participate in endocytosis. The structure of the Drosophila Syndapin N-terminal EFC domain reveals a crescent shaped antiparallel dimer with a high affinity for phosphoinositides and a unique membrane-inserting prong upon the concave surface. Combined structural, biochemical and reverse genetic approaches in zebrafish define an important role for Syndapin orthologue, Pacsin3, in the early formation of the notochord during embryonic development. In pacsin3-morphant embryos, midline convergence of notochord precursors is defective as axial mesodermal cells fail to polarize, migrate and differentiate properly. The pacsin3 morphant phenotype of a stunted body axis and contorted trunk is rescued by ectopic expression of Drosophila Syndapin, and depends critically on both the prong that protrudes from the surface of the bowed Syndapin EFC domain and the ability of the antiparallel dimer to bind tightly to phosphoinositides. Our data confirm linkage between directional migration, endocytosis and cell specification during embryonic morphogenesis and highlight a key role for Pacsin3 in this coupling in the notochord.

摘要

PACSIN/Syndapin 蛋白是参与胞吞作用的膜活性支架。果蝇 Syndapin N 端 EFC 结构域的结构揭示了一个新月形的反平行二聚体,其与磷酸肌醇具有高亲和力,并在凹面表面上具有独特的插入膜的叉。在斑马鱼中的结构、生化和反向遗传学综合方法定义了 Syndapin 同源物 Pacsin3 在胚胎发育过程中 Notch 早期形成中的重要作用。在 pacsin3 突变体胚胎中,Notch 前体细胞的中线会聚存在缺陷,因为轴向中胚层细胞不能正确极化、迁移和分化。Drosophila Syndapin 的异位表达挽救了 pacsin3 突变体短轴和扭曲躯干的表型,这严重依赖于从弯曲 Syndapin EFC 结构域表面突出的叉以及反平行二聚体与磷酸肌醇紧密结合的能力。我们的数据证实了胚胎形态发生过程中定向迁移、胞吞作用和细胞特化之间的联系,并强调了 Pacsin3 在 Notch 中这种偶联中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c771/2780292/96ffd2b495ee/pone.0008150.g001.jpg

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