bioRxiv · 10.1101/2024.04.24.590926
Genetic gradual reduction of OGT activity unveils the essential role of O-GlcNAc in the mouse embryo
Abstract
The reversible glycosylation of nuclear and cytoplasmic proteins (O-GlcNAcylation) is catalyzed by a single enzyme, namely O-GlcNAc transferase (OGT). The mammalian Ogt gene is X-linked and it is essential for embryonic development and for the viability of proliferating cells. We perturbed OGTs function in vivo by creating a murine allelic series of four single amino acid substitutions reducing OGTs catalytic activity to a range of degrees. The severity of the embryonic lethality was proportional to the degree of impairment of OGTs catalysis, demonstrating that the O-GlcNAc modification itself is required for early development. We identified milder hypomorphic Ogt alleles that perturb O-GlcNAc homeostasis while being compatible with embryogenesis. The analysis of the transcriptomes of the mutant embryos at different stages suggested a sexually-dimorphic developmental delay caused by the decrease in O-GlcNAc. Furthermore, a mild reduction of OGTs enzymatic activity was sufficient to loosen the silencing of endogenous retroviruses in vivo.
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Formichetti, S., Sadowska, A., Ascolani, M., Hansen, J., Ganter, K., Lancrin, C., Humphreys, N., Boulard, M.. 2024-04-27. Genetic gradual reduction of OGT activity unveils the essential role of O-GlcNAc in the mouse embryo. https://doi.org/10.1101/2024.04.24.590926
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