MicroRNA antagonism of the picornaviral life cycle: alternative mechanisms of interference.


Autoria(s): Kelly, EJ; Hadac, EM; Cullen, BR; Russell, SJ
Data(s)

19/03/2010

Identificador

http://www.ncbi.nlm.nih.gov/pubmed/20333250

PLoS Pathog, 2010, 6 (3), pp. e1000820 - ?

http://hdl.handle.net/10161/4597

1553-7374

http://hdl.handle.net/10161/4597

Idioma(s)

ENG

en_US

Relação

PLoS Pathog

10.1371/journal.ppat.1000820

Plos Pathogens

Tipo

Journal Article

Cobertura

United States

Resumo

In addition to modulating the function and stability of cellular mRNAs, microRNAs can profoundly affect the life cycles of viruses bearing sequence complementary targets, a finding recently exploited to ameliorate toxicities of vaccines and oncolytic viruses. To elucidate the mechanisms underlying microRNA-mediated antiviral activity, we modified the 3' untranslated region (3'UTR) of Coxsackievirus A21 to incorporate targets with varying degrees of homology to endogenous microRNAs. We show that microRNAs can interrupt the picornavirus life-cycle at multiple levels, including catalytic degradation of the viral RNA genome, suppression of cap-independent mRNA translation, and interference with genome encapsidation. In addition, we have examined the extent to which endogenous microRNAs can suppress viral replication in vivo and how viruses can overcome this inhibition by microRNA saturation in mouse cancer models.

Formato

e1000820 - ?

Palavras-Chave #3' Untranslated Regions #Animals #Base Sequence #Cancer Vaccines #Coxsackievirus Infections #Disease Models, Animal #Enterovirus #HeLa Cells #Humans #Leukemia, Lymphocytic, Chronic, B-Cell #Melanoma #Mice #Mice, SCID #MicroRNAs #Molecular Sequence Data #Mutagenesis #Neoplasm Transplantation #Protein Biosynthesis #RNA Interference #RNA, Viral #Transplantation, Heterologous