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PredicateObject
rdf:type
lifeskim:mentions
pubmed:dateCreated
1992-8-4
pubmed:abstractText
Selenocysteine (Scy) was synthesized on natural opal suppressor tRNA(Ser) by conversion from seryl-tRNA. We studied the mechanisms of the synthesis of mammalian Scy-tRNA using hydro[75Se]selenide (H75Se-). We found Scy synthase activity in the 105,000 g supernatant of a murine liver extract. The supernatant was chromatographed on DEAE-cellulose, and the activity was eluted at 0.12 M-KCl. The reaction mixture for synthesis of Scy-tRNA contained suppressor tRNA, serine, ATP, seryl-tRNA synthetase (SerRS), HSe- and the enzyme to synthesize Scy-tRNA. These are all essential for the synthesis of Scy-tRNA. Scy in the tRNA product was confirmed by five t.l.c. systems. The conversion from seryl-tRNA to Scy-tRNA was also confirmed with the use of [14C]- and [3H]-serine. The apparent Km values for the substrates serine, tRNA, ATP and HSe- were 30 microM, 140 nM, 2 mM and 40 nM respectively. The active eluates from DEAE-cellulose contained no tRNA kinase. This result showed that Scy-tRNA was not synthesized through phosphoseryl-tRNA. ATP was necessary when Scy-tRNA was synthesized from seryl-tRNA and HSe-. Therefore ATP is used for not only the synthesis of seryl-tRNA but also for the synthesis of Scy-tRNA from seryl-tRNA. The active fraction from DEAE-cellulose was chromatographed on Sephacryl S-300, but the activity disappeared. However, the activity was recovered by mixing the eluates corresponding to proteins of 500 kDa and 20 kDa. In order to examine the binding of HSe- to proteins, a mixture of the active fraction, H75Se- and ATP was analysed by chromatography on Sephacryl S-300. The 75Se radioactivity was found at the position of a 20 kDa protein in the presence of ATP. Thus the 20 kDa protein plays a role in binding HSe- in the presence of ATP. The 500 kDa protein must have a role in the synthesis of Scy-tRNA. There are two natural suppressor serine tRNAs, tRNA(NCA) and tRNA(CmCA), in cell cytosol. The present paper shows that the suppressor tRNA fraction, eluted later on benzoylated DEAE-(BD-)cellulose, is a better substrate with which to synthesize Scy-tRNA. Thus we consider that murine Scy-tRNA is synthesized from a suppressor seryl-tRNA on the 500 kDa protein with the activated HSe-, which is synthesized with ATP on the 20 kDa protein. This mammalian mechanism used to synthesize Scy is similar to that seen in Escherichia coli.
pubmed:commentsCorrections
http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1702199, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1714576, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1778506, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1825132, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1825826, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1832153, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1832744, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-1894009, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2001246, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2007585, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2017375, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2037562, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2141170, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2142875, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2183969, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2205803, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2251154, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2310373, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2405383, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-242796, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2473985, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2498338, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2526748, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2531290, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2948953, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-2963963, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-3015592, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-3038909, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-3245980, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-3304131, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-3658677, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-4400818, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-4943179, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-5274449, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-5778091, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-6218828, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-6325247, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-6435631, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-6565588, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-678534, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-6815648, http://linkedlifedata.com/resource/pubmed/commentcorrection/1622399-6912798
pubmed:language
eng
pubmed:journal
pubmed:citationSubset
IM
pubmed:chemical
pubmed:status
MEDLINE
pubmed:month
Jun
pubmed:issn
0264-6021
pubmed:author
pubmed:issnType
Print
pubmed:day
15
pubmed:volume
284 ( Pt 3)
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
827-34
pubmed:dateRevised
2009-11-18
pubmed:meshHeading
pubmed-meshheading:1622399-Animals, pubmed-meshheading:1622399-Base Sequence, pubmed-meshheading:1622399-Cattle, pubmed-meshheading:1622399-Chromatography, DEAE-Cellulose, pubmed-meshheading:1622399-Chromatography, Gel, pubmed-meshheading:1622399-Cytosol, pubmed-meshheading:1622399-Escherichia coli, pubmed-meshheading:1622399-Kinetics, pubmed-meshheading:1622399-Liver, pubmed-meshheading:1622399-Mice, pubmed-meshheading:1622399-Mice, Inbred ICR, pubmed-meshheading:1622399-Models, Biological, pubmed-meshheading:1622399-Molecular Sequence Data, pubmed-meshheading:1622399-Molecular Weight, pubmed-meshheading:1622399-Oligodeoxyribonucleotides, pubmed-meshheading:1622399-RNA, Transfer, Amino Acyl, pubmed-meshheading:1622399-RNA, Transfer, Ser, pubmed-meshheading:1622399-Selenium, pubmed-meshheading:1622399-Selenium Compounds, pubmed-meshheading:1622399-Selenium Radioisotopes, pubmed-meshheading:1622399-Transferases
pubmed:year
1992
pubmed:articleTitle
Some properties of murine selenocysteine synthase.
pubmed:affiliation
Faculty of Pharmaceutical Sciences, Nagoya City University, Japan.
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