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A Novel Function of Human Pumilio Proteins in Cytoplasmic Sensing of Viral Infection
Author(s) -
Ryo Narita,
Kiyohiro Takahasi,
Etsu Murakami,
Emi Hirano,
Seiji P. Yamamoto,
Mitsutoshi Yoneyama,
Hiroki Kato,
Takashi Fujita
Publication year - 2014
Publication title -
plos pathogens
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.719
H-Index - 206
eISSN - 1553-7374
pISSN - 1553-7366
DOI - 10.1371/journal.ppat.1004417
Subject(s) - mda5 , biology , gene knockdown , stress granule , interferon , microbiology and biotechnology , rna binding protein , virology , function (biology) , rna , gene , genetics , rna interference , messenger rna , translation (biology)
RIG-I-like receptor (RLR) plays a pivotal role in the detection of invading pathogens to initiate type I interferon (IFN) gene transcription. Since aberrant IFN production is harmful, RLR signaling is strictly regulated. However, the regulatory mechanisms are not fully understood. By expression cloning, we identified Pumilio proteins, PUM1 and PUM2, as candidate positive regulators of RIG-I signaling. Overexpression of Pumilio proteins and their knockdown augmented and diminished IFN-β promoter activity induced by Newcastle disease virus (NDV), respectively. Both proteins showed a specific association with LGP2, but not with RIG-I or MDA5. Furthermore, all of these components were recruited to NDV-induced antiviral stress granules. Interestingly, biochemical analyses revealed that Pumilio increased double-stranded (ds) RNA binding affinity of LGP2; however, Pumilio was absent in the dsRNA-LGP2 complex, suggesting that Pumilio facilitates viral RNA recognition by LGP2 through its chaperon-like function. Collectively, our results demonstrate an unknown function of Pumilio in viral recognition by LGP2.

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