The leucine domain of the visna virus Tat protein mediates targeting to an AP-1 site in the viral long terminal repeat

Author:

Carruth L M1,Morse B A1,Clements J E1

Affiliation:

1. Retrovirus Biology Laboratories, Division of Comparative Medicine, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

Abstract

The visna virus Tat protein is a strong transcriptional activator and is necessary for efficient viral replication. The Tat protein regulates transcription through an AP-1 site proximal to the TATA box within the viral long terminal repeat (LTR). Previous studies from our laboratory using Tat-Gal4 chimeric proteins showed that Tat has a potent acidic activation domain. Furthermore, a region adjacent to the Tat activation domain contains a highly conserved leucine-rich domain which, in the context of the full-length protein, suppressed the activity of the activation domain. To further elucidate the role of this region, four leucine residues within this region of Tat were mutated. In transient-transfection assays using visna virus LTR-CAT as a reporter construct, the activity of this leucine mutant was dramatically reduced. Additionally, domain-swapping experiments using the N-terminal activation domain of VP16 showed that the leucine-rich domain of Tat confers AP-1 responsiveness to the chimeric VP16-Tat protein. A chimeric VP16-Tat construct containing the leucine mutations showed no increased AP-1 responsiveness in comparison with that of the VP16 activation domain alone. Furthermore, in competition experiments, a Gal4-Tat protein containing only the leucine region of Tat (amino acids 34 to 62) was able to inhibit by competition the activity of full-length Tat. These studies strongly suggest that this leucine-rich domain is responsible for targeting the Tat protein to AP-1 sites in the viral LTR. In addition, examination of the amino acid sequence of this region of Tat revealed a highly helical secondary structure and a pattern of residues similar to that in the leucine zippers in the bZIP family of DNA-binding proteins. This has important implications for the interaction of Tat with cellular proteins, specifically Fos and Jun, that contain bZIP domains.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference44 articles.

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3. Binding of the HTLV-1 Tax1 transactivator to the inducible 21 bp enhancer is mediated by the cellular factor HEB1;Beraud C.;EMBO J.,1991

4. Tat trans-activates the human immunodeficiency virus through a nascent RNA target;Berkhout B.;Cell,1989

5. Carruth L. M. S. L. Gdovin and J. E. Clements. Unpublished data.

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