Autophagy involves a long process that starts with signaling, followed by LC3 protein lipidation and autophagosome formation, leading to fusion with lysosomes and ubiquitin mediated protein degradation. Each of the above processes is controlled by autophagy specific genes conserved from yeast to humans. Our initial microarray and ChIP-on chip analyses indicated that some of autophagy related genes are downregulated in IRF8-/- DCs relative to IRF8+/+ DC. The follow-up study confirmed that IRF8 is required for expression of a large number of autophagy specific genes in both macrophages and DC. Some of these genes are induced by IFN and IRF8 bound to the upstream promoter regions. Consistent with these findings, IRF8 -/- macrophages were defective in lipidation mediated conversion of LC3 and nutophagosome formation. These results raise the possibility that IRF8 utilizes autophagy to eliminate certain pathogens including TB. Because IRF8 and several other IRF members are modified by both ubiquitin and SUMO, we asked whether these modifications occur in other proteins during innate immune responses. Macrophages were stimulated with IFN and a toll like receptor (TLR) ligand, CpG which activates the TLR pathway and triggers transcription of many genes important for macrophage function. Some of these genes are responsible for resistance against pathogens and other genes are involved in inflammatory responses in the host. To detect global ubiquitin or SUMO modifications of nuclear proteins in stimulated macrophages, we performed immunoblot analysis using antibody for ubiquitin, SUMO1 or SUMO2/3. To this end we tested nuclear fractions obtained from stimulated RAW264.7 macrophage cells. While there is only one ubiquitin protein, there are three SUMO molecules. SUMO1 is distinct from SUMO2 and SUMO3 that are more than 90% identical in amino acid sequence, and currently there is no antibody that distinguishes SUMO2 and SUMO3. We found that ubiquitin linked proteins were dramatically increased following IFNCpG stimulation. IFN treatment alone resulted in significant increase in ubiquitin-liked proteins. However, additional stimulationby CpG further increased the amount of ubiquitin bound proteins. Not only CpG, but other TLR ligands tested including LPS and poly IC also caused increased ubiquitination, provided that macrophages were prestimulated with IFN Similarly, IFN/TLR stimulation caused a marked increase in proteins conjugated to SUMO1 or SUMO2/3. Our data demonstrate that ubiquitin and SUMO modifications are integral part of innate immune responses, likely coupled with large changes in transcription and other nuclear activities, which helps accommodate a rapid response to pathogen stimuli. Transcriptionally active genes are embedded in chromatin that is dynamically exchanged, whereas silenced genes are surrounded by more stable chromatin. Chromatin environment

Project Start
Project End
Budget Start
Budget End
Support Year
26
Fiscal Year
2012
Total Cost
$857,846
Indirect Cost
City
State
Country
Zip Code
Haque, Nazmul; Ouda, Ryota; Chen, Chao et al. (2018) ZFR coordinates crosstalk between RNA decay and transcription in innate immunity. Nat Commun 9:1145
Kurotaki, Daisuke; Nakabayashi, Jun; Nishiyama, Akira et al. (2018) Transcription Factor IRF8 Governs Enhancer Landscape Dynamics in Mononuclear Phagocyte Progenitors. Cell Rep 22:2628-2641
Kamada, Rui; Yang, Wenjing; Zhang, Yubo et al. (2018) Interferon stimulation creates chromatin marks and establishes transcriptional memory. Proc Natl Acad Sci U S A 115:E9162-E9171
Kamiyama, Reikou; Yoshimi, Ryusuke; Takeno, Mitsuhiro et al. (2018) Dysfunction of TRIM21 in interferon signature of systemic lupus erythematosus. Mod Rheumatol :1-11
Wang, Joshua W; Wu, Wai Hong; Huang, Tsui-Chin et al. (2018) Roles of Fc Domain and Exudation in L2 Antibody-Mediated Protection against Human Papillomavirus. J Virol 92:
Cougnoux, Antony; Drummond, Rebecca A; Collar, Amanda L et al. (2018) Microglia activation in Niemann-Pick disease, type C1 is amendable to therapeutic intervention. Hum Mol Genet 27:2076-2089
Valanparambil, Rajesh M; Tam, Mifong; Gros, Pierre-Paul et al. (2017) IRF-8 regulates expansion of myeloid-derived suppressor cells and Foxp3+ regulatory T cells and modulates Th2 immune responses to gastrointestinal nematode infection. PLoS Pathog 13:e1006647
White, Christine L; Kessler, Patricia M; Dickerman, Benjamin K et al. (2016) Interferon Regulatory Factor 8 (IRF8) Impairs Induction of Interferon Induced with Tetratricopeptide Repeat Motif (IFIT) Gene Family Members. J Biol Chem 291:13535-45
Pan, Ji-An; Sun, Yu; Jiang, Ya-Ping et al. (2016) TRIM21 Ubiquitylates SQSTM1/p62 and Suppresses Protein Sequestration to Regulate Redox Homeostasis. Mol Cell 61:720-733
Gupta, Monica; Shin, Dong-Mi; Ramakrishna, Lakshmi et al. (2015) IRF8 directs stress-induced autophagy in macrophages and promotes clearance of Listeria monocytogenes. Nat Commun 6:6379

Showing the most recent 10 out of 53 publications