Abstract
Autophagy is a highly conserved process that maintains homeostasis by clearing damaged organelles and long-lived proteins. The consequences of deficiency in autophagy manifest in a variety of pathological states including neurodegenerative diseases, inflammatory disorders, and cancer. Here, we studied the role of autophagy in the homeostatic regulation of innate antiviral defense. Single-stranded RNA viruses are recognized by the members of the RIG-I-like receptors (RLRs) in the cytosol. RLRs signal through IPS-1, resulting in the production of the key antiviral cytokines, type I IFNs. Autophagy-defective Atg5 −/− cells exhibited enhanced RLR signaling, increased IFN secretion, and resistance to infection by vesicular stomatitis virus. In the absence of autophagy, cells accumulated dysfunctional mitochondria, as well as mitochondria-associated IPS-1. Reactive oxygen species (ROS) associated with the dysfunctional mitochondria were largely responsible for the enhanced RLR signaling in Atg5 −/− cells, as antioxidant treatment blocked the excess RLR signaling. In addition, autophagy-independent increase in mitochondrial ROS by treatment of cells with rotenone was sufficient to amplify RLR signaling in WT cells. These data indicate that autophagy contributes to homeostatic regulation of innate antiviral defense through the clearance of dysfunctional mitochondria, and revealed that ROS associated with mitochondria play a key role in potentiating RLR signaling.
References
38
Referenced
493
10.1126/science.290.5497.1717
10.1146/annurev.nutr.27.061406.093749
10.1038/nri2161
10.1016/j.immuni.2007.07.004
10.1016/j.immuni.2007.08.012
10.1126/science.1093616
10.1126/science.1093620
10.1073/pnas.0400937101
10.1126/science.1136880
10.1038/ni1087
10.1073/pnas.0408707102
10.1038/nature04734
10.1016/j.immuni.2005.04.010
10.1073/pnas.0704014104
10.1084/jem.20061377
10.1073/pnas.0603082103
10.1038/ni1243
10.1038/nature04946
10.1016/j.cell.2005.08.012
10.1016/j.molcel.2005.08.014
10.1038/nature04193
10.4161/auto.5055
10.1016/j.abb.2007.03.034
10.4161/auto.4127
10.1016/S0005-2728(98)00029-2
10.1074/jbc.M210432200
10.1038/cdd.2008.119
10.1016/j.bbrc.2008.07.147
10.1152/ajplung.2000.279.6.L1005
10.4161/auto.5289
10.1038/nature03029
10.1006/viro.2000.0736
10.1038/nature07383
10.1084/jem.20030162
10.1172/JCI31604
10.1093/nar/30.9.2004
10.1073/pnas.0502896102
10.1093/jb/mvj025
Dates
Type | When |
---|---|
Created | 16 years, 6 months ago (Feb. 7, 2009, 12:06 a.m.) |
Deposited | 3 years, 4 months ago (April 12, 2022, 6:06 p.m.) |
Indexed | 1 day ago (Sept. 2, 2025, 6:40 a.m.) |
Issued | 16 years, 6 months ago (Feb. 24, 2009) |
Published | 16 years, 6 months ago (Feb. 24, 2009) |
Published Online | 16 years, 6 months ago (Feb. 24, 2009) |
Published Print | 16 years, 6 months ago (Feb. 24, 2009) |
@article{Tal_2009, title={Absence of autophagy results in reactive oxygen species-dependent amplification of RLR signaling}, volume={106}, ISSN={1091-6490}, url={http://dx.doi.org/10.1073/pnas.0807694106}, DOI={10.1073/pnas.0807694106}, number={8}, journal={Proceedings of the National Academy of Sciences}, publisher={Proceedings of the National Academy of Sciences}, author={Tal, Michal Caspi and Sasai, Miwa and Lee, Heung Kyu and Yordy, Brian and Shadel, Gerald S. and Iwasaki, Akiko}, year={2009}, month=feb, pages={2770–2775} }