Abstract

Trans-activation response (TAR) RNA-binding protein (TRBP) is a cellular protein that binds to the human immunodeficiency virus-1 (HIV-1) TAR element RNA. It has two double-stranded RNA binding domains (dsRBDs), but only one is functional for TAR binding. TRBP interacts with the interferon-induced protein kinase R (PKR) and inhibits its activity. We used the yeast two-hybrid assay to map the interaction sites between the two proteins. We show that TRBP and PKR-N (178 first amino acids of PKR) interact with PKR wild type and inhibit the PKR-induced yeast growth defect in this assay. We characterized two independent PKR-binding sites in TRBP. These sites are located in each dsRBD in TRBP, indicating that PKR-TRBP interaction does not require the RNA binding activity present only in dsRBD2. TRBP and its fragments that interact with PKR reverse the PKR-induced suppression of HIV-1 long terminal repeat expression. In addition, TRBP activates the HIV-1 long terminal repeat expression to a larger extent than the addition of each domain. These data suggest that TRBP activates gene expression in PKR-dependent and PKR-independent manners.

Highlights

  • Trans-activation response (TAR) RNA-binding protein (TRBP) is a cellular protein that binds to the human immunodeficiency virus-1 (HIV-1) TAR element RNA

  • In an long terminal repeat (LTR)-luciferase assay, we show that TAR RNAbinding protein (TRBP) reverses the protein kinase R (PKR)-induced inhibition of expression of the HIV-1 LTR

  • Each double-stranded RNA binding domains (dsRBDs) in TRBP Mediates Homodimerization and TRBP-PKR Interaction Independently from the KR-helix RNA Binding Motif—To determine which fragments in TRBP are involved in the dimerization, we constructed plasmids that express each of fragments A, B, and C (Fig. 1A) fused to Gal4BD, and we tested them for their interaction with TRBP2, PKR-N, and PKRwt

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Summary

Introduction

Trans-activation response (TAR) RNA-binding protein (TRBP) is a cellular protein that binds to the human immunodeficiency virus-1 (HIV-1) TAR element RNA. We show in a two-hybrid assay that TRBP binds to wild-type PKR (PKRwt) and reverses its growth-inhibitory activity in yeast.

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