Tumor Necrosis Factor alpha (TNF-a) plays a central role in inflammation and autoimmune disease. Regulation of TNF-a biosynthesis is primarily post-transcriptional and mediated through the AU-rich element (AURE) in the 3' untranslated region (3'UTR) of its mRNA. In macrophages, AURE-dependent post-transcriptional regulation is conferred by the binding of the AURE by tristetraprolin (TTP). In contrast, both knockout and over-expression approaches indicate that TTP has no effect on TNF-a gene expression in T lymphocytes. Thus, we know precious little about AURE-dependent regulation of TNF-a in T lymphocytes. Recent studies suggest that AURE-dependent, cytokine mRNA degradation occurs in the proteasome. Thus, rapid mRNA turnover of TNF-a in an AURE-dependent manner may depend on transport to the proteasome. Recent studies in our laboratory have supported this model: TTP mutants that contain disabling mutations in their proteasomal targeting sequences lack biologic activity. We propose to carefully examine the post-transcriptional regulation of TNF-a in the T lymphocyte. Since TNF-a biosynthesis by T cells is regulated at a post-transcriptional level that is orders of magnitude more important than transcription, these studies will define a critical regulatory pathway in inflammation and immunity. In addition, the unique nature of TNF-a AURE-dependent gene expression in T lymphocytes suggests the presence of tissue-specific regulatory pathways. If these pathways are identified and characterized, this would open the door for targeted modulation of cytokine biosynthesis by the adaptive immune response that would have considerable importance in the treatment of inflammation, autoimmune diseases, and cancer.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Exploratory Grants (P20)
Project #
1P20RR016437-01
Application #
6553621
Study Section
Special Emphasis Panel (ZRR1)
Project Start
2001-09-30
Project End
2006-08-31
Budget Start
Budget End
Support Year
1
Fiscal Year
2001
Total Cost
Indirect Cost
Name
Dartmouth College
Department
Type
DUNS #
041027822
City
Hanover
State
NH
Country
United States
Zip Code
03755
Parker, Zachary M; Pasieka, Tracy Jo; Parker, George A et al. (2016) Immune- and Nonimmune-Compartment-Specific Interferon Responses Are Critical Determinants of Herpes Simplex Virus-Induced Generalized Infections and Acute Liver Failure. J Virol 90:10789-10799
Allegrezza, Michael J; Rutkowski, Melanie R; Stephen, Tom L et al. (2016) Trametinib Drives T-cell-Dependent Control of KRAS-Mutated Tumors by Inhibiting Pathological Myelopoiesis. Cancer Res 76:6253-6265
Rosato, Pamela C; Katzenell, Sarah; Pesola, Jean M et al. (2016) Neuronal IFN signaling is dispensable for the establishment of HSV-1 latency. Virology 497:323-327
O'Connor, Megan A; Vella, Jennifer L; Green, William R (2016) Reciprocal relationship of T regulatory cells and monocytic myeloid-derived suppressor cells in LP-BM5 murine retrovirus-induced immunodeficiency. J Gen Virol 97:509-22
Yeager, Mark P; Pioli, Patricia A; Collins, Jane et al. (2016) Glucocorticoids enhance the in vivo migratory response of human monocytes. Brain Behav Immun 54:86-94
Ball, Michael S; Shipman, Emilie P; Kim, Hyunjung et al. (2016) CDDO-Me Redirects Activation of Breast Tumor Associated Macrophages. PLoS One 11:e0149600
Katzenell, Sarah; Leib, David A (2016) Herpes Simplex Virus and Interferon Signaling Induce Novel Autophagic Clusters in Sensory Neurons. J Virol 90:4706-4719
Patankar, Yash R; Mabaera, Rodwell; Berwin, Brent (2015) Differential ASC requirements reveal a key role for neutrophils and a noncanonical IL-1? response to Pseudomonas aeruginosa. Am J Physiol Lung Cell Mol Physiol 309:L902-13
Parker, Zachary M; Murphy, Aisling A; Leib, David A (2015) Role of the DNA Sensor STING in Protection from Lethal Infection following Corneal and Intracerebral Challenge with Herpes Simplex Virus 1. J Virol 89:11080-91
Rosato, Pamela C; Leib, David A (2015) Neuronal Interferon Signaling Is Required for Protection against Herpes Simplex Virus Replication and Pathogenesis. PLoS Pathog 11:e1005028

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