Lu Wen-Hui, Wang Guang, Li Yan, Li Shuai, Song Xiao-Yu, Wang Xiao-Yu, Chuai Manli, Lee Kenneth Ka Ho, Cao Liu, Yang Xuesong
a Key Laboratory for Regenerative Medicine of the Ministry of Education; Division of Histology and Embryology; Medical College ; Jinan University ; Guangzhou , China.
Cell Cycle. 2014;13(17):2752-64. doi: 10.4161/15384101.2015.945850.
Autophagy is important for cell renewing for its contribution to the degradation of bulk cytoplasm, long-lived proteins, and entire organelles and its role in embryonic development is largely unknown. In our study, we investigated the function of autophagy in gastrulation of the chick embryo using both in vivo and in vitro approaches, especially in the EMT process, and we found that autophagy gene Atg7 was expressed on the apical side of the ectoderm and endoderm. Over-expression of Atg7 could enhance the expression of Atg8 and the E-cadherin, the latter of which is a crucial marker of the EMT process. We also found that the disturbance of autophagy could retard the development of chick embryos in HH4 with shorter primitive steak than that in the control group, which is a newly formed structure during EMT process. So we assumed that autophagy could affect EMT process by adhesion molecule expression. Moreover, more molecules, such as slug, chordin, shh et., which were all involved in EMT process, were detected to address the mechanism of this phenomena. We established that the inhibition of autophagy could cause developmental delay by affecting EMT process in gastrulation of chick embryos.
自噬对细胞更新很重要,因为它有助于降解大量细胞质、长寿命蛋白质和整个细胞器,但其在胚胎发育中的作用在很大程度上尚不清楚。在我们的研究中,我们使用体内和体外方法研究了自噬在鸡胚原肠胚形成中的功能,特别是在 EMT 过程中,我们发现自噬基因 Atg7 在外胚层和内胚层的顶端表达。Atg7 的过表达可以增强 Atg8 和 E-钙粘蛋白的表达,后者是 EMT 过程的关键标志物。我们还发现,自噬的干扰会阻碍 HH4 期鸡胚的发育,其原始条纹比对照组短,原始条纹是 EMT 过程中新形成的结构。因此,我们推测自噬可能通过粘附分子表达影响 EMT 过程。此外,还检测了更多参与 EMT 过程的分子,如 slug、chordin、shh 等,以探讨这一现象的机制。我们确定自噬的抑制会通过影响鸡胚原肠胚形成中的 EMT 过程导致发育延迟。