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HIV-1 usurps transcription start site heterogeneity of host RNA polymerase II to maximize replication fitness.
Nikolaitchik, Olga A; Islam, Saiful; Kitzrow, Jonathan P; Duchon, Alice; Cheng, Zetao; Liu, Yang; Rawson, Jonathan M O; Shao, Wei; Nikolaitchik, Maria; Kearney, Mary F; Maldarelli, Frank; Musier-Forsyth, Karin; Pathak, Vinay K; Hu, Wei-Shau.
Affiliation
  • Nikolaitchik OA; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Islam S; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Kitzrow JP; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Duchon A; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Cheng Z; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Liu Y; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Rawson JMO; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Shao W; Leidos Biomedical Research, Inc., Frederick National Laboratory for Cancer Research, Frederick, MD 21702.
  • Nikolaitchik M; Clinical Retrovirology Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Kearney MF; Translation Research Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Maldarelli F; Clinical Retrovirology Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Musier-Forsyth K; Department of Chemistry and Biochemistry, Center for Retrovirus Research, Ohio State University, Columbus, OH 43210.
  • Pathak VK; Viral Mutation Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
  • Hu WS; Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702.
Proc Natl Acad Sci U S A ; 120(23): e2305103120, 2023 06 06.
Article in En | MEDLINE | ID: mdl-37252967
ABSTRACT
HIV-1 relies on host RNA polymeraseII (Pol II) to transcribe its genome and uses multiple transcription start sites (TSS), including three consecutive guanosines located near the U3-R junction, to generate transcripts containing three, two, and one guanosine at the 5' end, referred to as 3G, 2G, and 1G RNA, respectively. The 1G RNA is preferentially selected for packaging, indicating that these 99.9% identical RNAs exhibit functional differences and highlighting the importance of TSS selection. Here, we demonstrate that TSS selection is regulated by sequences between the CATA/TATA box and the beginning of R. Furthermore, we have generated two HIV-1 mutants with distinct 2-nucleotide modifications that predominantly express 3G RNA or 1G RNA. Both mutants can generate infectious viruses and undergo multiple rounds of replication in T cells. However, both mutants exhibit replication defects compared to the wild-type virus. The 3G-RNA-expressing mutant displays an RNA genome-packaging defect and delayed replication kinetics, whereas the 1G-RNA-expressing mutant exhibits reduced Gag expression and a replication fitness defect. Additionally, reversion of the latter mutant is frequently observed, consistent with sequence correction by plus-strand DNA transfer during reverse transcription. These findings demonstrate that HIV-1 maximizes its replication fitness by usurping the TSS heterogeneity of host RNA Pol II to generate unspliced RNAs with different specialized roles in viral replication. The three consecutive guanosines at the junction of U3 and R may also maintain HIV-1 genome integrity during reverse transcription. These studies reveal the intricate regulation of HIV-1 RNA and complex replication strategy.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: RNA Polymerase II / HIV-1 Language: En Journal: Proc Natl Acad Sci U S A Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: RNA Polymerase II / HIV-1 Language: En Journal: Proc Natl Acad Sci U S A Year: 2023 Document type: Article