Secondary structural elements at the 5 end of picornavirus genomic RNA function as cis-acting replication elements and are known to interact specifically with viral P3 proteins in several picornaviruses. In poliovirus, ribonucleoprotein complex formation at the 5 end of the genome is required for negative-strand synthesis. We have previously shown that the 5-end 115 nucleotides of the Aichi virus genome, which are predicted to fold into two stem-loops (SL-A and SL-C) and one pseudoknot (PK-B), act as a cis-acting replication element and that correct folding of these structures is required for negative-strand synthesis. In this study, we investigated the interaction between the 5-terminal 120 nucleotides of the genome and the P3 proteins, ...
AbstractThe precise relationship between the length of the 3′ poly(A) tail and the replication and i...
The existence of a computer-predicted cloverleaf structure for the first 100 nucleotides at the 5′ e...
We have previously described the RNA replication properties of poliovirus transcripts harboring chim...
AbstractAichi virus is a member of the family Picornaviridae. Computer-assisted secondary structure ...
Higher-order RNA structures in the 3 * untranslated region (3*UTR) of enteroviruses are thought to p...
The genomes of RNA viruses often contain RNA structures that are crucial for translation and RNA rep...
The replication of poliovirus, a positive-stranded RNA virus, requires translation of the infecting ...
<p>(<b>A</b>) Schematic of the poliovirus genome. The 7.5 kb long genome consists of a 5’-nontransla...
Picornaviruses have a peptide termed VPg covalently linked to the 5′-end of the genome. Attachment o...
AbstractThe poliovirus-encoded, membrane-associated polypeptide 2C and its precursor, 2BC, is believ...
Picornaviruses have 3 = polyadenylated RNA genomes, but the mechanisms by which these genomes are po...
Picornavirus RNA replication involves the specific synthesis of negative-strand intermediates follow...
Picornavirus genomes encode unique 5 ' noncoding regions (5 ' NCRs) which are-600 to 1,300...
The genomes of RNA viruses often contain RNA structures that are crucial for translation and RNA rep...
textInfluenza A is a negative stranded RNA virus with a segmented genome. Once the virus infects a c...
AbstractThe precise relationship between the length of the 3′ poly(A) tail and the replication and i...
The existence of a computer-predicted cloverleaf structure for the first 100 nucleotides at the 5′ e...
We have previously described the RNA replication properties of poliovirus transcripts harboring chim...
AbstractAichi virus is a member of the family Picornaviridae. Computer-assisted secondary structure ...
Higher-order RNA structures in the 3 * untranslated region (3*UTR) of enteroviruses are thought to p...
The genomes of RNA viruses often contain RNA structures that are crucial for translation and RNA rep...
The replication of poliovirus, a positive-stranded RNA virus, requires translation of the infecting ...
<p>(<b>A</b>) Schematic of the poliovirus genome. The 7.5 kb long genome consists of a 5’-nontransla...
Picornaviruses have a peptide termed VPg covalently linked to the 5′-end of the genome. Attachment o...
AbstractThe poliovirus-encoded, membrane-associated polypeptide 2C and its precursor, 2BC, is believ...
Picornaviruses have 3 = polyadenylated RNA genomes, but the mechanisms by which these genomes are po...
Picornavirus RNA replication involves the specific synthesis of negative-strand intermediates follow...
Picornavirus genomes encode unique 5 ' noncoding regions (5 ' NCRs) which are-600 to 1,300...
The genomes of RNA viruses often contain RNA structures that are crucial for translation and RNA rep...
textInfluenza A is a negative stranded RNA virus with a segmented genome. Once the virus infects a c...
AbstractThe precise relationship between the length of the 3′ poly(A) tail and the replication and i...
The existence of a computer-predicted cloverleaf structure for the first 100 nucleotides at the 5′ e...
We have previously described the RNA replication properties of poliovirus transcripts harboring chim...