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1.
Biol Trace Elem Res ; 119(3): 234-41, 2007 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-17916946

RESUMO

We used comparative genomics and experimental analyses to show that (1) eukaryotes and archaea, which possess the selenocysteine (Sec) protein insertion machinery contain an enzyme, O-phosphoseryl-transfer RNA (tRNA) [Ser]Sec kinase (designated PSTK), which phosphorylates seryl-tRNA [Ser]Sec to form O-phosphoseryl-tRNA [Ser]Sec and (2) the Sec synthase (SecS) in mammals is a pyridoxal phosphate-containing protein previously described as the soluble liver antigen (SLA). SecS uses the product of PSTK, O-phosphoseryl-tRNA[Ser]Sec, and selenophosphate as substrates to generate selenocysteyl-tRNA [Ser]Sec. Sec could be synthesized on tRNA [Ser]Sec from selenide, adenosine triphosphate (ATP), and serine using tRNA[Ser]Sec, seryl-tRNA synthetase, PSTK, selenophosphate synthetase, and SecS. The enzyme that synthesizes monoselenophosphate is a previously identified selenoprotein, selenophosphate synthetase 2 (SPS2), whereas the previously identified mammalian selenophosphate synthetase 1 did not serve this function. Monoselenophosphate also served directly in the reaction replacing ATP, selenide, and SPS2, demonstrating that this compound was the active selenium donor. Conservation of the overall pathway of Sec biosynthesis suggests that this pathway is also active in other eukaryotes and archaea that contain selenoproteins.


Assuntos
Archaea/metabolismo , Selênio/metabolismo , Selenocisteína/biossíntese , Animais , Humanos , Mamíferos/metabolismo , Modelos Biológicos , Fosfotransferases/metabolismo , Aminoacil-RNA de Transferência/metabolismo , Selenoproteínas/metabolismo
2.
PLoS Biol ; 5(1): e4, 2007 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-17194211

RESUMO

Selenocysteine (Sec) is cotranslationally inserted into protein in response to UGA codons and is the 21st amino acid in the genetic code. However, the means by which Sec is synthesized in eukaryotes is not known. Herein, comparative genomics and experimental analyses revealed that the mammalian Sec synthase (SecS) is the previously identified pyridoxal phosphate-containing protein known as the soluble liver antigen. SecS required selenophosphate and O-phosphoseryl-tRNA([Ser]Sec) as substrates to generate selenocysteyl-tRNA([Ser]Sec). Moreover, it was found that Sec was synthesized on the tRNA scaffold from selenide, ATP, and serine using tRNA([Ser]Sec), seryl-tRNA synthetase, O-phosphoseryl-tRNA([Ser]Sec) kinase, selenophosphate synthetase, and SecS. By identifying the pathway of Sec biosynthesis in mammals, this study not only functionally characterized SecS but also assigned the function of the O-phosphoseryl-tRNA([Ser]Sec) kinase. In addition, we found that selenophosphate synthetase 2 could synthesize monoselenophosphate in vitro but selenophosphate synthetase 1 could not. Conservation of the overall pathway of Sec biosynthesis suggests that this pathway is also active in other eukaryotes and archaea that synthesize selenoproteins.


Assuntos
Células Eucarióticas/química , Aminoacil-RNA de Transferência/biossíntese , Aminoacil-RNA de Transferência/genética , RNA de Transferência/genética , Selenocisteína/biossíntese , Selenocisteína/genética , Trifosfato de Adenosina/metabolismo , Animais , Proteínas Arqueais/biossíntese , Proteínas Arqueais/química , Proteínas Arqueais/genética , Proteínas de Bactérias/biossíntese , Proteínas de Bactérias/química , Proteínas de Bactérias/genética , Biologia Computacional/métodos , Dipeptídeos/metabolismo , Células Eucarióticas/enzimologia , Genômica/métodos , Hidrólise , Espectroscopia de Ressonância Magnética , Camundongos , Fosforilação , Fosfosserina/química , Fosfosserina/metabolismo , Fosfotransferases/química , Fosfotransferases/metabolismo , Ligação Proteica/genética , RNA de Transferência/metabolismo , Aminoacil-RNA de Transferência/metabolismo , Selênio/química , Selênio/metabolismo , Selenocisteína/química , Selenocisteína/metabolismo , Transferases/biossíntese , Transferases/genética , Transferases/metabolismo
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