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Cysteine Sulfenylation Directs IRE-1 to Activate the SKN-1/Nrf2 Antioxidant Response.
Citation | “Cysteine Sulfenylation Directs Ire-1 To Activate The Skn-1/Nrf2 Antioxidant Response.”. Molecular Cell, pp. 553-566. . |
Center | Joslin Diabetes Center |
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Author | John M Hourihan, Lorenza E Moronetti Mazzeo, Paulette Fernández-Cárdenas, Keith Blackwell |
Abstract |
Emerging evidence suggests that many proteins may be regulated through cysteine modification, but the extent and functions of this signaling remain largely unclear. The endoplasmic reticulum (ER) transmembrane protein IRE-1 maintains ER homeostasis by initiating the unfolded protein response (UPR(ER)). Here we show in C. elegans and human cells that IRE-1 has a distinct redox-regulated function in cytoplasmic homeostasis. Reactive oxygen species (ROS) that are generated at the ER or by mitochondria sulfenylate a cysteine within the IRE-1 kinase activation loop. This inhibits the IRE-1-mediated UPR(ER) and initiates the p38/SKN-1(Nrf2) antioxidant response, thereby increasing stress resistance and lifespan. Many AGC-family kinases (AKT, p70S6K, PKC, ROCK1) seem to be regulated similarly. The data reveal that IRE-1 has an ancient function as a cytoplasmic sentinel that activates p38 and SKN-1(Nrf2) and indicate that cysteine modifications induced by ROS signals can direct proteins to adopt unexpected functions and may coordinate many cellular processes. |
Year of Publication |
2016
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Journal |
Molecular cell
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Volume |
63
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Issue |
4
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Number of Pages |
553-566
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Date Published |
12/2016
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ISSN Number |
1097-4164
|
DOI |
10.1016/j.molcel.2016.07.019
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Alternate Journal |
Mol. Cell
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PMID |
27540856
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PMCID |
PMC4996358
|
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