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SEPHS2 encodes an enzyme that synthesizes selenophosphate from selenide and ATP. Additionally we are shipping SEPHS2 Proteins (6) and many more products for this protein.
Showing 10 out of 29 products:
the transcriptome of fruit flies with knockdown of SPS2 in larval and adult stages, is reported.[Sps2]
The downstream DNA replication-related element has been identified as an essential element for dsps2 promoter activity.
Thus, bovine active selenophosphate synthetase 2 of molecular mass 33 kDa does not contain selenocysteine.
These in vivo studies indicate that SPS2 is essential for generating the selenium donor for selenocysteine biosynthesis in mammals.
Data confirm interactions among components of the early steps of the selenocysteine biosynthesis pathway (SEPSECS (show SLA Antibodies), SECP43 (show TRNAU1AP Antibodies), SEPHS1 (show SEPHS1 Antibodies), and SEPHS2); SECP43 (show TRNAU1AP Antibodies), which interacts with SEPSECS (show SLA Antibodies) and SEPHS1 (show SEPHS1 Antibodies), is a globular protein that forms oligomers in vivo.
miR (show MLXIP Antibodies)-185 plays a role in up-regulation of GPX2 (show GPX2 Antibodies) and SEPHS2 expression.In the case of SEPHS2 this may contribute to maintaining selenoprotein synthesis.
the Sps1 (show SRM Antibodies)-encoded enzyme depends on a selenium salvage system that recycles l-selenocysteine, whereas the Sps2 enzyme can function with a selenite assimilation system
This gene encodes an enzyme that synthesizes selenophosphate from selenide and ATP. Selenophosphate is the selenium donor used to synthesize selenocysteine, which is co-translationally incorporated into selenoproteins at in-frame UGA codons. This protein itself contains a selenocysteine residue in its predicted active site. The 3' UTR of the gene has a stem-loop secondary structure called a selenocysteine insertion sequence (SECIS) element, which allows UGA to direct the incorporation of selenocysteine rather than signal a translational stop. Alternatively spliced transcripts have been identified, but their biological validity has not been determined.
, selenophosphate synthetase 2
, selenide, water dikinase 2
, clone 1000
, selenium donor protein 2
, selenophosphate synthase 2
, the SelD gene product