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  5. Keap1 controls protein S-nitrosation and apoptosis-senescence switch in endothelial cells

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Article
en
2019

Keap1 controls protein S-nitrosation and apoptosis-senescence switch in endothelial cells

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en
2019
Vol 28
Vol. 28
DOI: 10.1016/j.redox.2019.101304

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Jozef Dulak
Jozef Dulak

Jagiellonian University Cracow

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Aleksandra Kopacz
Damian Klóska
Bartosz Proniewski
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Abstract

Premature senescence, a death escaping pathway for cells experiencing stress, is conducive to aging and cardiovascular diseases. The molecular switch between senescent and apoptotic fate remains, however, poorly recognized. Nrf2 is an important transcription factor orchestrating adaptive response to cellular stress. Here, we show that both human primary endothelial cells (ECs) and murine aortas lacking Nrf2 signaling are senescent but unexpectedly do not encounter damaging oxidative stress. Instead, they exhibit markedly increased S-nitrosation of proteins. A functional role of S-nitrosation is protection of ECs from death by inhibition of NOX4-mediated oxidative damage and redirection of ECs to premature senescence. S-nitrosation and senescence are mediated by Keap1, a direct binding partner of Nrf2, which colocalizes and precipitates with nitric oxide synthase (NOS) and transnitrosating protein GAPDH in ECs devoid of Nrf2. We conclude that the overabundance of this "unrestrained" Keap1 determines the fate of ECs by regulation of S-nitrosation and propose that Keap1/GAPDH/NOS complex may serve as an enzymatic machinery for S-nitrosation in mammalian cells.

How to cite this publication

Aleksandra Kopacz, Damian Klóska, Bartosz Proniewski, Dominik Cysewski, Nicolas Personnic, Aleksandra Piechota-Polańczyk, Patrycja Kaczara, Agnieszka Zakrzewska, Henry Jay Forman, Jozef Dulak, Alicja Józkowicz, Anna Grochot‐Przeczek (2019). Keap1 controls protein S-nitrosation and apoptosis-senescence switch in endothelial cells. , 28, DOI: https://doi.org/10.1016/j.redox.2019.101304.

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Publication Details

Type

Article

Year

2019

Authors

12

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1016/j.redox.2019.101304

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