The RNA‐binding protein Snd1/Tudor‐SN regulates hypoxia‐responsive gene expression

Author:

Saarikettu Juha1ORCID,Lehmusvaara Saara2,Pesu Marko23ORCID,Junttila Ilkka2345,Partanen Juha6,Sipilä Petra7,Poutanen Matti7,Yang Jie8,Haikarainen Teemu2,Silvennoinen Olli123ORCID

Affiliation:

1. Institute of Biotechnology, HiLIFE Helsinki Institute of Life Sciences University of Helsinki Helsinki Finland

2. Faculty of Medicine and Health Technology Tampere University Tampere Finland

3. Fimlab Laboratories Tampere University Hospital Tampere Finland

4. Northern Finland Laboratory Centre (NordLab) Oulu Finland

5. Research Unit of Biomedicine University of Oulu Oulu Finland

6. Faculty of Biological and Environmental Sciences University of Helsinki Helsinki Finland

7. Research Centre for Integrative Physiology and Pharmacology, and Turku Center for Disease Modeling, Institute of Biomedicine University of Turku Turku Finland

8. Department of Immunology Tianjin Medical University Tianjin P.R. China

Abstract

AbstractSnd1 is an evolutionarily conserved RNA‐binding protein implicated in several regulatory processes in gene expression including activation of transcription, mRNA splicing, and microRNA decay. Here, we have investigated the outcome of Snd1 gene deletion in the mouse. The knockout mice are viable showing no gross abnormalities apart from decreased fertility, organ and body size, and decreased number of myeloid cells concomitant with decreased expression of granule protein genes. Deletion of Snd1 affected the expression of relatively small number of genes in spleen and liver. However, mRNA expression changes in the knockout mouse liver showed high similarity to expression profile in adaptation to hypoxia. MicroRNA expression in liver showed upregulation of the hypoxia‐induced microRNAs miR‐96 and ‐182. Similar to Snd1 deletion, mimics of miR‐96/182 enhanced hypoxia‐responsive reporter activity. To further elucidate the function of SND1, BioID biotin proximity ligation assay was performed in HEK‐293T cells to identify interacting proteins. Over 50% of the identified interactors were RNA‐binding proteins, including stress granule proteins. Taken together, our results show that in normal growth conditions, Snd1 is not a critical factor for mRNA transcription in the mouse, and describe a function for Snd1 in hypoxia adaptation through negatively regulating hypoxia‐related miRNAs and hypoxia‐induced transcription consistent with a role as stress response regulator.

Publisher

Wiley

Subject

Cancer Research,Biochemistry, Genetics and Molecular Biology (miscellaneous),Molecular Medicine,Physiology

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