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  1. National Taiwan Ocean University Research Hub
  2. 生命科學院
  3. 生命科學暨生物科技學系
請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/26633
標題: Maternal redd1 mRNA decline triggers mTORC1 activation during the blastula-gastrula transition in zebrafish embryos
作者: Han, Min-Hsuan
Hu, Yen-Chih
Chiou, Jen-Ru
Chung, Hsin-Yu
Ko, Yi-Chun
Tsai, Chang-Tai
Chen, Jia-Hsin
Kuo, Chieh-En
Huang, Chun-Yu
Tzou, Wen-Shyong 
Kuan, Yung-Shu
Hu, Chin-Hwa 
關鍵字: maternal-to-zygotic transition;mTORC1 activity;mTORC1-independent translation;redd1 mRNA;zebrafish embryos
公開日期: 2026
出版社: WILEY
起(迄)頁: 20
來源出版物: FEBS JOURNAL
摘要: 
During early metazoan development, maternal mRNAs and proteins stored in the egg sustain initial cellular functions. After the blastula stage, developmental control shifts to zygotic gene expression, and maternal transcripts are progressively degraded. Although mTORC1 is a central regulator of global mRNA translation and cell growth, its role in controlling maternal mRNA translation prior to gastrulation remains poorly understood. In zebrafish embryos, the mTORC1 inhibitor redd1 is abundantly expressed after fertilization but decreases following the maternal-to-zygotic transition (MZT), inversely correlating with mTORC1 activity. Overexpression of redd1 suppresses mTORC1, impairs gastrulation, and reduces translation of 5 ' TOP mRNAs and key regulatory genes, underscoring the necessity of relieving mTORC1 inhibition after the blastula stage. To investigate redd1 translation under conditions of low mTORC1 activity, we injected reporter mRNAs containing its 5 ' and 3 ' UTRs. The 3 ' UTR promoted polyadenylation and enhanced translation, while both UTRs enabled efficient reporter expression despite mTORC1 suppression, indicating that redd1 mRNA is translated independently of canonical mTORC1 pathways. Similarly, maternal mRNAs such as nanog, myca, pou5f3, and ccnb1, as well as the early zygotic transcript dharma, are translated through mTORC1-independent mechanisms. Together, these findings reveal a transient phase of mTORC1 suppression in early zebrafish embryos and demonstrate that select maternal and zygotic mRNAs bypass this regulation to ensure proper developmental progression.
URI: http://scholars.ntou.edu.tw/handle/123456789/26633
ISSN: 1742-464X
DOI: 10.1111/febs.70521
顯示於:生命科學暨生物科技學系

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