4.0 Article

The Synthesis and Biological Activity of 3,3'-Dimethyl-L-Selenocystine, a New Selenocystine Derivative

Journal

RUSSIAN JOURNAL OF BIOORGANIC CHEMISTRY
Volume 45, Issue 4, Pages 241-247

Publisher

MAIK NAUKA/INTERPERIODICA/SPRINGER
DOI: 10.1134/S1068162019040083

Keywords

amino acids; 3,3 '-dimethyl-L-selenocystine; proline; selenium; L-selenocystine; serum

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Using the known synthesis of L-selenocystine,3,3'-diseleno-bis (2-aminopropionic acid), from beta-chloroalanine, a structural analog of natural sulfur-containing amino acids capable of accumulating selenium in the body, we synthesized a new selenium-containing amino acid 3,3'-dimethyl-L-selenocystine () from alpha-amino-beta-chlorobutyric acid. It was shown that, similarly to the selenium released from natural L-selenocystine, the selenium from 3,3'-dimethyl-L-selenocystine accumulated in rat liver, muscles, and serum, where its concentration exceeded that of the control by 40.63, 14.07 and 22.98%, respectively. A close degree of selenium accumulation in the tissues implied a similar metabolic pathway of the amino acids and biological availability of the trace element from the synthesized amino acid. L-Selenocystine and 3,3'-dimethyl-L-selenocystine decreased concentrations of free amino acids in rat serum by 12.17 and 11.78%, respectively. The most significant reduction, by 74.6 and 66.4% respectively, was observed for proline, a marker of organism stress. Accumulation of selenium in liver and serum indicated close metabolism of L-selenocystine and its derivative 3,3'-dimethyl-L-selenocystine.

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