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经典Wnt信号通路及其拮抗剂通过引导小鼠脏内胚层中的细胞迁移来调节前后轴极化。

Canonical Wnt signaling and its antagonist regulate anterior-posterior axis polarization by guiding cell migration in mouse visceral endoderm.

作者信息

Kimura-Yoshida Chiharu, Nakano Hiroshi, Okamura Daiji, Nakao Kazuki, Yonemura Shigenobu, Belo Jose A, Aizawa Shinichi, Matsui Yasuhisa, Matsuo Isao

机构信息

Vertebrate Body Plan Group, RIKEN Center for Developmental Biology (CDB), 2-2-3 Minatojima-minami-cho, Chuou-ku Kobe, Hyogo 650-0047, Japan.

出版信息

Dev Cell. 2005 Nov;9(5):639-50. doi: 10.1016/j.devcel.2005.09.011.

Abstract

The mouse embryonic axis is initially formed with a proximal-distal orientation followed by subsequent conversion to a prospective anterior-posterior (A-P) polarity with directional migration of visceral endoderm cells. Importantly, Otx2, a homeobox gene, is essential to this developmental process. However, the genetic regulatory mechanism governing axis conversion is poorly understood. Here, defective axis conversion due to Otx2 deficiency can be rescued by expression of Dkk1, a Wnt antagonist, or following removal of one copy of the beta-catenin gene. Misexpression of a canonical Wnt ligand can also inhibit correct A-P axis rotation. Moreover, asymmetrical distribution of beta-catenin localization is impaired in the Otx2-deficient and Wnt-misexpressing visceral endoderm. Concurrently, canonical Wnt and Dkk1 function as repulsive and attractive guidance cues, respectively, in the migration of visceral endoderm cells. We propose that Wnt/beta-catenin signaling mediates A-P axis polarization by guiding cell migration toward the prospective anterior in the pregastrula mouse embryo.

摘要

小鼠胚胎轴最初以近-远方向形成,随后随着内胚层细胞的定向迁移转变为预期的前-后(A-P)极性。重要的是,同源盒基因Otx2对这一发育过程至关重要。然而,目前对控制轴转换的遗传调控机制了解甚少。在这里,由于Otx2缺乏导致的轴转换缺陷可以通过表达Wnt拮抗剂Dkk1或去除β-连环蛋白基因的一个拷贝来挽救。经典Wnt配体的错误表达也会抑制正确的A-P轴旋转。此外,在Otx2缺陷和Wnt错误表达的内胚层中,β-连环蛋白定位的不对称分布受到损害。同时,经典Wnt和Dkk1分别在内胚层细胞迁移中作为排斥和吸引导向信号。我们提出,Wnt/β-连环蛋白信号通过引导原肠胚形成前小鼠胚胎中的细胞向前方迁移来介导A-P轴极化。

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