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[PTEN在鸡胚原肠胚形成过程中阻碍上皮-间质转化]

[PTEN impedes EMT during chick embryo gastrulation].

作者信息

Li Yan, Wang Xiao-Yu, Wang Li-Jing, Xu Tao, Lu Xiao-Ye, Cai Dong-Qing, Geng Jian-Guo, Yang Xue-Song

机构信息

Key Laboratory for Regenerative Medicine Ministry of Education, Division of Histology amp; Embryology Medical College, Jinan University, Guangzhou 510632, China.

出版信息

Yi Chuan. 2011 Jun;33(6):613-9. doi: 10.3724/sp.j.1005.2011.00613.

Abstract

PTEN has been considered as one of the important anti-oncogenes, which possesses very wide biological activities. Endogenous PTEN genes begin to express in epiblast during chick embryo gastrulation, and then the expression extends to neural plate and mesoderm. This suggests that PTEN might be involved in cell migration, proliferation, and differentiation during early embryo development. In this study, we employed in vivo approach to explore if endogenous PTEN participates in EMT (Epithelial-mesenchymal transition) in early chick embryo. PTEN was initially detected to highly express in primitive streak during chick gastrulation, in which EMT occurs, and subsequently mesoderm structure such as somites etc. Then, overexpression of both Wt PTEN-GFP and Wt PTEN-GFP positive transplantation of primitive streak resulted in cell accumulation in primitive streak in the development hereafter, indicating that EMT was blocked in both of our assays, either whole embryo transfection of Wt PTEN-GFP or transplantation of Wt PTEN-GFP primary streak tissue. Finally down-regulation of PTEN gene in one side using PTEN siRNA led to reduce the more number of mesoderm cells in PTNE siRNA side than normal side, which suggests that PTEN gene is probably involved in regulating EMT process in development of early embryonic gastrulation.

摘要

PTEN被认为是重要的抑癌基因之一,具有非常广泛的生物学活性。内源性PTEN基因在鸡胚原肠胚形成期的上胚层开始表达,然后表达扩展到神经板和中胚层。这表明PTEN可能参与早期胚胎发育过程中的细胞迁移、增殖和分化。在本研究中,我们采用体内方法来探究内源性PTEN是否参与鸡胚早期的上皮-间质转化(EMT)。在鸡胚原肠胚形成期,最初检测到PTEN在原条中高表达,而EMT在此发生,随后在体节等中胚层结构中表达。然后,野生型PTEN-GFP的过表达以及原条的野生型PTEN-GFP阳性移植导致在此后的发育中原条中的细胞积累,表明在我们的两种实验中EMT均被阻断,无论是野生型PTEN-GFP的全胚转染还是野生型PTEN-GFP原条组织的移植。最后,使用PTEN siRNA在一侧下调PTEN基因导致PTNE siRNA侧的中胚层细胞数量比正常侧减少更多,这表明PTEN基因可能参与调节早期胚胎原肠胚形成发育过程中的EMT进程。

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