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Title: Dis3-like 1: a novel exoribonuclease associated with the human exosome.
Author(s): Staals, R.H.J. (304809012)
Bronkhorst, A.W.
Schilders, G.
Slomovic, S.
Schuster, G.
Heck, A.J.R. van
Raijmakers, R. (26227065X)
Pruijn, G.J.M. (074352695)
Publication year: 2010
Document type: Article / Letter to editor
Journal: EMBO Journal
ISSN: 0261-4189
Volume: vol. 29
Issue: iss. 14
Start page: p. 2358
End page: p. 2367
Number of pages: 10 p.
Abstract: The exosome is an exoribonuclease complex involved in the degradation and maturation of a wide variety of RNAs. The nine-subunit core of the eukaryotic exosome is catalytically inactive and may have an architectural function and mediate substrate binding. In Saccharomyces cerevisiae, the associated Dis3 and Rrp6 provide the exoribonucleolytic activity. The human exosome-associated Rrp6 counterpart contributes to its activity, whereas the human Dis3 protein is not detectably associated with the exosome. Here, a proteomic analysis of immunoaffinity-purified human exosome complexes identified a novel exosome-associated exoribonuclease, human Dis3-like exonuclease 1 (hDis3L1), which was confirmed to associate with the exosome core by co-immunoprecipitation. In contrast to the nuclear localization of Dis3, hDis3L1 exclusively localized to the cytoplasm. The hDis3L1 isolated from transfected cells degraded RNA in an exoribonucleolytic manner, and its RNB domain seemed to mediate this activity. The siRNA-mediated knockdown of hDis3L1 in HeLa cells resulted in elevated levels of poly(A)-tailed 28S rRNA degradation intermediates, indicating the involvement of hDis3L1 in cytoplasmic RNA decay. Taken together, these data indicate that hDis3L1 is a novel exosome-associated exoribonuclease in the cytoplasm of human cells.
Subject: Bio-Molecular Chemistry
N4i 1: Pathogenesis and modulation of inflammation
NCMLS 1A: Infection and autoimmunity
Organization: Biomolecular Chemistry
Medical Microbiology
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/83868

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