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Translation factor necessary for the incorporation of selenocysteine into proteins. Additionally we are shipping Eukaryotic Elongation Factor, Selenocysteine-tRNA-Specific Proteins (2) and many more products for this protein.
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eEFSec employs a non-canonical mechanism involving the distinct C-terminal domain 4 for the release of the selenocysteinyl-tRNA during decoding on the ribosome
In this genomewide association study, we found that variants at the EBF1 (show EBF1 Antibodies), EEFSEC, AGTR2 (show AGTR2 Antibodies), WNT4 (show WNT4 Antibodies), ADCY5 (show ADCY5 Antibodies), and RAP2C (show RAP2C Antibodies) loci were associated with gestational duration and variants at the EBF1 (show EBF1 Antibodies), EEFSEC, and AGTR2 (show AGTR2 Antibodies) loci with preterm birth.
SECIS binding induces a conformational change in SBP2 (show SECISBP2 Antibodies) that recruits eEFSec, which in concert with the Sec incorporation domain gains access to the ribosomal A site
This study examined the subcellular localization of eEFSec in the context of altered Selenocysteine incorporation to demonstrate that reduced selenoprotein production does not correlate with changes in the nuclear localization of eEFSec.
SBP2/SECIS complex activates eEFSec by directing functional interactions between Domain IV and the ribosome to promote Sec-tRNA(Sec) binding and accommodation into the ribosomal A-site
Translation factor necessary for the incorporation of selenocysteine into proteins. It probably replaces EF-Tu for the insertion of selenocysteine directed by the UGA codon. SelB binds GTP and GDP.
selenocysteine-specific elongation factor
, elongation factor for selenoprotein translation
, elongation factor sec
, MJ0495-like protein SelB