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Investigation of tritium tracer in nucleic acid components by hydrogenolysis of corresponding precursors. 7. Preparation of tritiated uracil, uridine-5'-mono-, di- and triphosphates of high molar activity

Abstract

Preparation of (5,6-/sup 3/H) uracil by hydrogenolysis of 5-bromo-6-chlorouracil with molar activity (1.59-1.63)x10/sup 15/ Bg/mol has been described. Hydrogenolysis reaction kinetics is studied, effect of the reaction conditions on molar activity of dehalogenation product is considered. Using enzyme fraction, separated from the E.coli cells tritium-labelled preparations of UMP, UTP and UTP from (5.6-/sup 3/H) uracil are made. Kinetics of enzymatic reactions is studied and conditions, permitting to synthesize both UMP and UTP and a mixture of nucleotides of different degree of phosphorylation in approximately equal amounts are selected. Separation of nucleotides labelled with tritium is conducted using ion exchange chromatography on DEAE cellulose. Molar activity of nucleotides labelled with tritium equals molar activity of initial (5.6-/sup 3/H) uracil, and radiochemical purity constitutes more than 95%.
Publication Date:
Jan 01, 1984
Product Type:
Journal Article
Reference Number:
AIX-16-044731; EDB-85-124664
Resource Relation:
Journal Name: Radiokhimiya; (USSR); Journal Volume: 26:3; Other Information: For English translation see the journal Soviet Radiochemistry (USA)
Subject:
38 RADIATION CHEMISTRY, RADIOCHEMISTRY, AND NUCLEAR CHEMISTRY; TRITIUM; RADIOCHEMISTRY; TRITIUM COMPOUNDS; BIOSYNTHESIS; CHEMICAL PREPARATION; UMP; LABELLING; URACILS; UTP; CHEMICAL REACTION KINETICS; ENZYMES; ION EXCHANGE CHROMATOGRAPHY; PHOSPHORYLATION; RADIOACTIVITY; AZINES; BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; CHEMICAL REACTIONS; CHEMISTRY; CHROMATOGRAPHY; HETEROCYCLIC COMPOUNDS; HYDROGEN ISOTOPES; HYDROXY COMPOUNDS; ISOTOPES; KINETICS; LABELLED COMPOUNDS; LIGHT NUCLEI; NUCLEI; NUCLEOTIDES; ODD-EVEN NUCLEI; ORGANIC COMPOUNDS; ORGANIC NITROGEN COMPOUNDS; PYRIMIDINES; RADIOISOTOPES; REACTION KINETICS; SEPARATION PROCESSES; SYNTHESIS; YEARS LIVING RADIOISOTOPES; 400702* - Radiochemistry & Nuclear Chemistry- Properties of Radioactive Materials
OSTI ID:
5422270
Country of Origin:
USSR
Language:
Russian
Other Identifying Numbers:
Journal ID: CODEN: RADKA
Submitting Site:
HEDB
Size:
Pages: 341-345
Announcement Date:
Jun 01, 1985

Citation Formats

Myasoedov, N F, Sidorov, G V, Kuznetsova, O B, Frank-Kamenetskaya, M D, Lazurkina, T Yu, and Orlova, V A. Investigation of tritium tracer in nucleic acid components by hydrogenolysis of corresponding precursors. 7. Preparation of tritiated uracil, uridine-5'-mono-, di- and triphosphates of high molar activity. USSR: N. p., 1984. Web.
Myasoedov, N F, Sidorov, G V, Kuznetsova, O B, Frank-Kamenetskaya, M D, Lazurkina, T Yu, & Orlova, V A. Investigation of tritium tracer in nucleic acid components by hydrogenolysis of corresponding precursors. 7. Preparation of tritiated uracil, uridine-5'-mono-, di- and triphosphates of high molar activity. USSR.
Myasoedov, N F, Sidorov, G V, Kuznetsova, O B, Frank-Kamenetskaya, M D, Lazurkina, T Yu, and Orlova, V A. 1984. "Investigation of tritium tracer in nucleic acid components by hydrogenolysis of corresponding precursors. 7. Preparation of tritiated uracil, uridine-5'-mono-, di- and triphosphates of high molar activity." USSR.
@misc{etde_5422270,
title = {Investigation of tritium tracer in nucleic acid components by hydrogenolysis of corresponding precursors. 7. Preparation of tritiated uracil, uridine-5'-mono-, di- and triphosphates of high molar activity}
author = {Myasoedov, N F, Sidorov, G V, Kuznetsova, O B, Frank-Kamenetskaya, M D, Lazurkina, T Yu, and Orlova, V A}
abstractNote = {Preparation of (5,6-/sup 3/H) uracil by hydrogenolysis of 5-bromo-6-chlorouracil with molar activity (1.59-1.63)x10/sup 15/ Bg/mol has been described. Hydrogenolysis reaction kinetics is studied, effect of the reaction conditions on molar activity of dehalogenation product is considered. Using enzyme fraction, separated from the E.coli cells tritium-labelled preparations of UMP, UTP and UTP from (5.6-/sup 3/H) uracil are made. Kinetics of enzymatic reactions is studied and conditions, permitting to synthesize both UMP and UTP and a mixture of nucleotides of different degree of phosphorylation in approximately equal amounts are selected. Separation of nucleotides labelled with tritium is conducted using ion exchange chromatography on DEAE cellulose. Molar activity of nucleotides labelled with tritium equals molar activity of initial (5.6-/sup 3/H) uracil, and radiochemical purity constitutes more than 95%.}
journal = []
volume = {26:3}
journal type = {AC}
place = {USSR}
year = {1984}
month = {Jan}
}