Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR

<p>Abstract</p> <p>Background</p> <p>Ranaviruses (family <it>Iridoviridae</it>) are important pathogens of lower vertebrates. However, little is known about how they circumvent the immune response of their hosts. Many ranaviruses contain a predicted protein,...

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Main Authors: Chinchar V Gregory, Rothenburg Stefan, Dever Thomas E
Format: Article
Language:English
Published: BMC 2011-03-01
Series:BMC Microbiology
Online Access:http://www.biomedcentral.com/1471-2180/11/56
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spelling doaj-2c6b3938efe2426d8df975d923415de82020-11-25T00:33:29ZengBMCBMC Microbiology1471-21802011-03-011115610.1186/1471-2180-11-56Characterization of a ranavirus inhibitor of the antiviral protein kinase PKRChinchar V GregoryRothenburg StefanDever Thomas E<p>Abstract</p> <p>Background</p> <p>Ranaviruses (family <it>Iridoviridae</it>) are important pathogens of lower vertebrates. However, little is known about how they circumvent the immune response of their hosts. Many ranaviruses contain a predicted protein, designated vIF2α, which shows homology with the eukaryotic translation initiation factor 2α. In analogy to distantly related proteins found in poxviruses vIF2α might act as an inhibitor of the antiviral protein kinase PKR.</p> <p>Results</p> <p>We have characterized the function of vIF2α from <it>Rana catesbeiana </it>virus Z (RCV-Z). Multiple sequence alignments and secondary structure prediction revealed homology of vIF2α with eIF2α throughout the S1-, helical- and C-terminal domains. Genetic and biochemical analyses showed that vIF2α blocked the toxic effects of human and zebrafish PKR in a heterologous yeast system. Rather than complementing eIF2α function, vIF2α acted in a manner comparable to the vaccinia virus (VACV) K3L protein (K3), a pseudosubstrate inhibitor of PKR. Both vIF2α and K3 inhibited human PKR-mediated eIF2α phosphorylation, but not PKR autophosphorylation on Thr446. In contrast the E3L protein (E3), another poxvirus inhibitor of PKR, inhibited both Thr446 and eIF2α Ser51 phosphorylation. Interestingly, phosphorylation of eIF2α by zebrafish PKR was inhibited by vIF2α and E3, but not by K3. Effective inhibition of PKR activity coincided with increased PKR expression levels, indicative of relieved autoinhibition of PKR expression. Experiments with vIF2α deletion constructs, showed that both the N-terminal and helical domains were sufficient for inhibition of PKR, whereas the C-terminal domain was dispensable.</p> <p>Conclusions</p> <p>Our results show that RCV-Z vIF2α is a functional inhibitor of human and zebrafish PKR, and probably functions in similar fashion as VACV K3. This constitutes an important step in understanding the interaction of ranaviruses and the host innate immune system.</p> http://www.biomedcentral.com/1471-2180/11/56
collection DOAJ
language English
format Article
sources DOAJ
author Chinchar V Gregory
Rothenburg Stefan
Dever Thomas E
spellingShingle Chinchar V Gregory
Rothenburg Stefan
Dever Thomas E
Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR
BMC Microbiology
author_facet Chinchar V Gregory
Rothenburg Stefan
Dever Thomas E
author_sort Chinchar V Gregory
title Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR
title_short Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR
title_full Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR
title_fullStr Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR
title_full_unstemmed Characterization of a ranavirus inhibitor of the antiviral protein kinase PKR
title_sort characterization of a ranavirus inhibitor of the antiviral protein kinase pkr
publisher BMC
series BMC Microbiology
issn 1471-2180
publishDate 2011-03-01
description <p>Abstract</p> <p>Background</p> <p>Ranaviruses (family <it>Iridoviridae</it>) are important pathogens of lower vertebrates. However, little is known about how they circumvent the immune response of their hosts. Many ranaviruses contain a predicted protein, designated vIF2α, which shows homology with the eukaryotic translation initiation factor 2α. In analogy to distantly related proteins found in poxviruses vIF2α might act as an inhibitor of the antiviral protein kinase PKR.</p> <p>Results</p> <p>We have characterized the function of vIF2α from <it>Rana catesbeiana </it>virus Z (RCV-Z). Multiple sequence alignments and secondary structure prediction revealed homology of vIF2α with eIF2α throughout the S1-, helical- and C-terminal domains. Genetic and biochemical analyses showed that vIF2α blocked the toxic effects of human and zebrafish PKR in a heterologous yeast system. Rather than complementing eIF2α function, vIF2α acted in a manner comparable to the vaccinia virus (VACV) K3L protein (K3), a pseudosubstrate inhibitor of PKR. Both vIF2α and K3 inhibited human PKR-mediated eIF2α phosphorylation, but not PKR autophosphorylation on Thr446. In contrast the E3L protein (E3), another poxvirus inhibitor of PKR, inhibited both Thr446 and eIF2α Ser51 phosphorylation. Interestingly, phosphorylation of eIF2α by zebrafish PKR was inhibited by vIF2α and E3, but not by K3. Effective inhibition of PKR activity coincided with increased PKR expression levels, indicative of relieved autoinhibition of PKR expression. Experiments with vIF2α deletion constructs, showed that both the N-terminal and helical domains were sufficient for inhibition of PKR, whereas the C-terminal domain was dispensable.</p> <p>Conclusions</p> <p>Our results show that RCV-Z vIF2α is a functional inhibitor of human and zebrafish PKR, and probably functions in similar fashion as VACV K3. This constitutes an important step in understanding the interaction of ranaviruses and the host innate immune system.</p>
url http://www.biomedcentral.com/1471-2180/11/56
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