Measurement of the Glutathione Redox Potentials in Membraneless Organelles

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Abstract

Glutathione (GSH) is essential for cellular redox regulation; however, the redox potential (E GSH ) of the nucleus and membraneless organelles (MLOs) remains poorly understood. Here, we use the Grx1–roGFP2 sensor to measure the E GSH of the nucleus and several MLOs such as the nucleoli, stress granules, p-bodies, paraspeckles, and Cajal bodies. Unlike suggested by previous findings, we found that nuclear E GSH is stable throughout the cell cycle and identical to the cytosolic E GSH , and the E GSH of MLOs mirrors their surrounding environment. These findings challenge existing paradigms and provide novel insights into redox homeostasis across subcellular compartments.
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Abstract Glutathione (GSH) is essential for cellular redox regulation; however, the redox potential (EGSH) of the nucleus and membraneless organelles (MLOs) remains poorly understood. Here, we use the Grx1–roGFP2 sensor to measure the EGSH of the nucleus and several MLOs such as the nucleoli, stress granules, p-bodies, paraspeckles, and Cajal bodies. Unlike suggested by previous findings, we found that nuclear EGSH is stable throughout the cell cycle and identical to the cytosolic EGSH, and the EGSH of MLOs mirrors their surrounding environment. These findings challenge existing paradigms and provide novel insights into redox homeostasis across subcellular compartments. Competing Interest Statement The authors have declared no competing interest. Copyright The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.

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License: CC-BY-4.0