bioRxiv · 10.1101/2020.02.03.925677
Enhanced stress tolerance through reduction of G3BP and suppression of stress granules
Abstract
Stress granules (SG) are membrane-less ribonucleoprotein condensates that form in response to various stress stimuli via phase separation. SG act as a protective mechanism to cope with acute stress, but persistent SG have cytotoxic effects that are associated with several age-related diseases. Here, we demonstrate that the testis-specific protein, MAGE-B2, increases cellular stress tolerance by suppressing SG formation through translational inhibition of the key SG nucleator G3BP. MAGE-B2 reduces G3BP protein levels below the critical concentration for phase separation and suppresses SG initiation. Importantly, knockout of the MAGE-B2 mouse ortholog confers hypersensitivity of the male germline to heat stress in vivo. Thus, MAGE-B2 provides cytoprotection to maintain mammalian spermatogenesis, a highly thermo-sensitive process that must be preserved throughout reproductive life. These results demonstrate a mechanism that allows for tissue-specific resistance against stress through fine-tuning phase separation and could aid in the development of male fertility therapies.
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Lee, A. K., Klein, J., Fon Tacer, K., Lord, T., Oatley, M. L., Oatley, J. M., Porter, S. N., Pruett-Miller, S. M., Tikhonova, E. B., Karamyshev, A. L., Yang, P., Kim, H. J., Taylor, J. P., Potts, P. R.. 2020-02-04. Enhanced stress tolerance through reduction of G3BP and suppression of stress granules. https://doi.org/10.1101/2020.02.03.925677
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