Unexpected roles for UPF1 in HIV-1 RNA metabolism and translation
Author(s) -
Lara Ajamian,
Levon Abrahamyan,
Miroslav P. Milev,
Pavel Ivanov,
Andreas E. Kulozik,
Niels H. Gehring,
Andrew J. Mouland
Publication year - 2008
Publication title -
rna
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.037
H-Index - 171
eISSN - 1469-9001
pISSN - 1355-8382
DOI - 10.1261/rna.829208
Subject(s) - biology , rna , ribonucleoprotein , microbiology and biotechnology , rna silencing , rna binding protein , nonsense mediated decay , translation (biology) , cytoplasm , messenger rna , genetics , rna interference , rna splicing , gene
The HIV-1 ribonucleoprotein (RNP) contains the major structural protein, pr55 Gag , viral genomic RNA, as well as the host protein, Staufen1. In this report, we show that the nonsense-mediated decay (NMD) factor UPF1 is also a component of the HIV-1 RNP. We investigated the role of UPF1 in HIV-1-expressing cells. Depletion of UPF1 by siRNA resulted in a dramatic reduction in steady-state HIV-1 RNA and pr55 Gag . Pr55 Gag synthesis, but not the cognate genomic RNA, was efficiently rescued by expression of an siRNA-insensitive UPF1, demonstrating that UPF1 positively influences HIV-1 RNA translatability. Conversely, overexpression of UPF1 led to a dramatic up-regulation of HIV-1 expression at the RNA and protein synthesis levels. The effects of UPF1 on HIV-1 RNA stability were observed in the nucleus and cytoplasm and required ongoing translation. We also demonstrate that the effects exerted by UPF1 on HIV-1 expression were dependent on its ATPase activity, but were separable from its role in NMD and did not require interaction with UPF2.
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