Regulation of Nuclear Gamma Interferon Gene Expression by Interleukin 12 (IL-12) and IL-2 Represents a Novel Form of Posttranscriptional Control

Author:

Hodge Deborah L.1,Martinez Alfredo2,Julias John G.3,Taylor Lynn S.1,Young Howard A.1

Affiliation:

1. Laboratory of Experimental Immunology

2. Department of Cell and Cancer Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892

3. HIV Drug Resistance Program, National Cancer Institute-Center for Cancer Research, FrederickMaryland 21702,

Abstract

ABSTRACT Posttranscriptional control of gamma interferon (IFN-γ) gene expression has not been extensively studied and is poorly understood. Our work describes a posttranscriptional mechanism that modulates IFN-γ mRNA expression in stimulated natural killer (NK) cells through nuclear retention of the IFN-γ mRNA. This is evidenced by the elevated and sustained nuclear accumulation of both precursor and processed IFN-γ mRNAs in NK cells stimulated with interleukin-12 (IL-12). The elevated nuclear mRNA accumulation persists long after transcriptional activity has subsided and the rate of cytoplasmic IFN-γ mRNA accumulation has dropped. The IL-12-induced nuclear retention of the IFN-γ mRNA prevails until a secondary cytokine stimulus is received. The secondary stimulus, which is initiated by IL-2, mediates transcription-independent movement of the nuclear IFN-γ mRNA. Concurrent with the nucleocytoplasmic movement of the IFN-γ mRNA, we have observed increases in the amount of processed nuclear IFN-γ mRNA that are greater than that seen for the unprocessed IFN-γ mRNA. The increase in processed IFN-γ mRNA appears to be due to increased mRNA stability which then promotes increased nucleocytoplasmic shuttling of the mature IFN-γ mRNA. These data support a model whereby mobilization of nuclear IFN-γ mRNA stores allows NK cells to rapidly and robustly respond to secondary cytokine activators in a transcription-independent manner, thus shortening the time for overall cellular response to inflammatory signals.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference61 articles.

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2. Bernstein, P., and J. Ross. 1989. Poly(A), poly(A) binding protein and the regulation of mRNA stability. Trends Biochem. Sci. 14 : 373-377.

3. Billiau, A. 1998. Immunomodulatory properties of interferon-gamma. An update. Ann. N. Y. Acad. Sci. 856 : 22-32.

4. Boehm, U., T. Klamp, M. Groot, and J. C. Howard. 1997. Cellular responses to interferon-gamma. Annu. Rev. Immunol. 15 : 749-795.

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