4.2 Article

RNA Interference Targeted to the Conserved Dimerization Initiation Site (DIS) of HIV-1 Restricts Virus Escape Mutation

Journal

JOURNAL OF BIOCHEMISTRY
Volume 146, Issue 4, Pages 481-489

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/jb/mvp093

Keywords

combination therapy; lentiviral vector; HIV-1; RNA interference; well-conserved dimerization initiation site (DIS); virus escape mutation

Funding

  1. Ministry of Education, Science, Sports, and Culture, Japan
  2. Human Science Foundation [HIV-K-14719]
  3. Ministry of Health, Labor, and Welfare, Japan
  4. The Japan Science Society

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Short hairpin RNAs (shRNA) targeting viral or cellular genes can effectively inhibit human immunodeficiency virus type 1 (HIV-1) replication. This inhibition, however, may induce mutations in the targeted gene, leading to rapid escape from the shRNA-induced inhibition. We generated a lymphoid cell line that stably expressed a 19-bp shRNA targeting a well-conserved dimerization initiation site (DIS) of HIV-1, which strongly inhibited viral replication, thereby delaying virus escape. Furthermore, treatment of HIV-1 infection with DIS- and vif-shRNA combination therapy resulted in superior anti-viral responses compared to vif-shRNA monotherapy. Continuous challenge with HIV-1, however, generated virus mutants that could overcome the RNA interference restriction. Such anti-genes may be promising tools for HIV-1 gene therapy for HIV/acquired immunodeficiency syndrome.

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