RNA Surveillance Factor SMG5 Is Essential for Mouse Embryonic Stem Cell Differentiation

Author:

Chen Chengyan1,Wei Yanling2,Jiang Xiaoning2,Li Tangliang12ORCID

Affiliation:

1. State Key Laboratory of Microbial Technology, Shandong University, Qingdao Campus, Qingdao 266237, China

2. School of Basic Medical Sciences, Hangzhou Normal University, Hangzhou 311121, China

Abstract

Nonsense-mediated mRNA decay (NMD) is a highly conserved post-transcriptional gene expression regulatory mechanism in eukaryotic cells. NMD eliminates aberrant mRNAs with premature termination codons to surveil transcriptome integrity. Furthermore, NMD fine-tunes gene expression by destabilizing RNAs with specific NMD features. Thus, by controlling the quality and quantity of the transcriptome, NMD plays a vital role in mammalian development, stress response, and tumorigenesis. Deficiencies of NMD factors result in early embryonic lethality, while the underlying mechanisms are poorly understood. SMG5 is a key NMD factor. In this study, we generated an Smg5 conditional knockout mouse model and found that Smg5-null results in early embryonic lethality before E13.5. Furthermore, we produced multiple lines of Smg5 knockout mouse embryonic stem cells (mESCs) and found that the deletion of Smg5 in mESCs does not compromise cell viability. Smg5-null delays differentiation of mESCs. Mechanistically, our study reveals that the c-MYC protein, but not c-Myc mRNA, is upregulated in SMG5-deficient mESCs. The overproduction of c-MYC protein could be caused by enhanced protein synthesis upon SMG5 loss. Furthermore, SMG5-null results in dysregulation of alternative splicing on multiple stem cell differentiation regulators. Overall, our findings underscore the importance of SMG5-NMD in regulating mESC cell-state transition.

Funder

Natural Science Foundation of Zhejiang Province

Natural Science Foundation of Shandong Province and the Qilu Youth Scholar Startup Funding of Shandong University

Publisher

MDPI AG

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