AbstractTobacco necrosis necrovirus (TNV) RNA lacks both a 5′ cap and a poly(A) tail but is translated efficiently, owing in part to a Barley yellow dwarf virus (BYDV)-like cap-independent translation element (BTE) in its 3′ untranslated region (UTR). Here, we identify sequence downstream of the BTE that is necessary for poly(A) tail-independent translation in vivo by using RNA encoding a luciferase reporter gene flanked by viral UTRs. Deletions and point mutations caused loss of translation that was restored by adding a poly(A) tail, and not by adding a 5′ cap. The two 3′-proximal stem–loops in the viral genome contribute to poly(A) tail-independent translation, as well as RNA replication. For all necroviruses, we predict a conserved 3′ UT...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
Most of the positive-strand RNA plant viruses lack the 5′-cap and/or the poly(A)-tail that act syner...
AbstractA 3′ translation enhancer (3′TE) sequence that facilitates cap-independent translation is lo...
RNAs of many viruses are translated efficiently in the absence of a 5 cap structure. The tobacco ne...
The subgenomic RNA 2 of tobacco necrosis virus A (TNV sgRNA2) encodes the viral coat protein, is unp...
RNAs of many viruses are translated efficiently in the absence of a 5\u27 cap structure. The tobacco...
In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is required...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
AbstractThe genome of Red clover necrotic mosaic virus (RCNMV) consists of RNA1 and RNA2, both lacki...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
Different regulatory elements function are involved in plant virus gene expression and replication b...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
This research focuses on a cap-independent translation element (TE) we identified in the RNA of barl...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
Most of the positive-strand RNA plant viruses lack the 5′-cap and/or the poly(A)-tail that act syner...
AbstractA 3′ translation enhancer (3′TE) sequence that facilitates cap-independent translation is lo...
RNAs of many viruses are translated efficiently in the absence of a 5 cap structure. The tobacco ne...
The subgenomic RNA 2 of tobacco necrosis virus A (TNV sgRNA2) encodes the viral coat protein, is unp...
RNAs of many viruses are translated efficiently in the absence of a 5\u27 cap structure. The tobacco...
In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is required...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
AbstractThe genome of Red clover necrotic mosaic virus (RCNMV) consists of RNA1 and RNA2, both lacki...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
Different regulatory elements function are involved in plant virus gene expression and replication b...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
This research focuses on a cap-independent translation element (TE) we identified in the RNA of barl...
<p>In eukaryotes, the formation of a 5′-cap and 3′-poly(A) dependent protein–protein bridge is requi...
Most of the positive-strand RNA plant viruses lack the 5′-cap and/or the poly(A)-tail that act syner...
AbstractA 3′ translation enhancer (3′TE) sequence that facilitates cap-independent translation is lo...