Expression of selenocysteine (Sec)-containing proteins requires the presence of a cis-acting mRNA structure, called selenocysteine insertion sequence (SECIS) element. In bacteria, this structure is located in the coding region immediately downstream of the Sec-encoding UGA codon, whereas in eukaryotes a completely different SECIS element has evolved in the 3’-untranslated region. Here, we report that SECIS elements in the coding regions of selenoprotein mRNAs support Sec insertion in higher eukaryotes. Comprehensive computational analysis of all available viral genomes revealed a SECIS element within the ORF of a naturally occurring selenoprotein homolog of glutathione peroxidase 4 in fowlpox virus. The fowlpox SECIS element supported Sec i...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
The elongation of eukaryotic selenoproteins relies on a poorly understood process of interpreting in...
Expression of selenocysteine (Sec)-containing pro-teins requires the presence of a cis-acting mRNA s...
Expression of selenocysteine (Sec)-containing pro-teins requires the presence of a cis-acting mRNA s...
Co-translational insertion of selenocysteine (Sec) into proteins in response to UGA codons is direct...
Selenocysteine (Sec), the 21st amino acid in protein, is encoded by UGA. The Sec insertion sequence ...
Co-translational insertion of selenocysteine (Sec) into proteins in response to UGA codons is direct...
It is thought that the SelenoCysteine Insertion Sequence (SECIS) element and UGA codon are sufficien...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Selenocysteine (Sec), the 21st amino acid in protein, is encoded by UGA. The Sec insertion sequence ...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
The elongation of eukaryotic selenoproteins relies on a poorly understood process of interpreting in...
Expression of selenocysteine (Sec)-containing pro-teins requires the presence of a cis-acting mRNA s...
Expression of selenocysteine (Sec)-containing pro-teins requires the presence of a cis-acting mRNA s...
Co-translational insertion of selenocysteine (Sec) into proteins in response to UGA codons is direct...
Selenocysteine (Sec), the 21st amino acid in protein, is encoded by UGA. The Sec insertion sequence ...
Co-translational insertion of selenocysteine (Sec) into proteins in response to UGA codons is direct...
It is thought that the SelenoCysteine Insertion Sequence (SECIS) element and UGA codon are sufficien...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Selenocysteine (Sec), the 21st amino acid in protein, is encoded by UGA. The Sec insertion sequence ...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Motivation: Incorporation of selenocysteine (Sec) into proteins in response to UGA codons requires a...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
Selenoproteins are an elite group of proteins containing a rare amino acid, selenocysteine (Sec), en...
The elongation of eukaryotic selenoproteins relies on a poorly understood process of interpreting in...