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Results 1 - 10 of 16 > >>
EC Number
Substrates
Commentary Substrates
Organism
Products
Commentary (Products)
Reversibility
L-phosphoseryl-tRNASec + selenophosphate
-
L-selenocysteinyl-tRNASec + phosphate
-
?
L-phosphoseryl-tRNASec + selenophosphate
selenocysteine is the only genetically encoded amino acid in humans whose biosynthesis occurs on its cognate transfer RNA (tRNA). O-Phosphoseryl-tRNA:selenocysteinyl-tRNA synthase catalyzes the final step of selenocysteine formation by a tRNA-dependent mechanism
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
-
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
-
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
-
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
-
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
-
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
L-phosphoseryl-tRNA is the crucial precursor for L-selenocysteinyl-tRNA formation in archaea and eukarya. Selenocysteine formation is achieved by a two-step process: O-phosphoseryl-tRNASec kinase (PSTK) phosphorylates the endogenous Ser-tRNASec to O-phosphoseryl-tRNASec, and then this misacylated amino acid-tRNA species is converted to L-selenocysteinyl-tRNASec by Sep-tRNA:Sec-tRNA synthase (SepSecS)
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
L-phosphoseryl-tRNA is the crucial precursor for L-selenocysteinyl-tRNA formation in archaea and eukarya. Selenocysteine formation is achieved by a two-step process: O-phosphoseryl-tRNASec kinase (PSTK) phosphorylates the endogenous Ser-tRNASec to O-phosphoseryl-tRNASec, and then this misacylated amino acid-tRNA species is converted to L-selenocysteinyl-tRNASec by Sep-tRNA:Sec-tRNA synthase (SepSecS)
L-selenocysteinyl-tRNASec + phosphate
-
?
O-phospho-L-seryl-tRNASec + selenophosphate
L-phosphoseryl-tRNA is the crucial precursor for L-selenocysteinyl-tRNA formation in archaea and eukarya. Selenocysteine formation is achieved by a two-step process: O-phosphoseryl-tRNASec kinase phosphorylates the endogenous L-seryl-tRNASec to O-phospho-L-seryl-tRNASec, and then this misacylated amino acid-tRNA species is converted to L-selenocysteinyl-tRNASec by Sep-tRNA:Sec-tRNA synthase
L-selenocysteinyl-tRNASec + phosphate
-
?
Results 1 - 10 of 16 > >>