Different Oxidation Pathways of 2-Selenouracil and 2-Thiouracil, Natural Components of Transfer RNA

被引:3
|
作者
Kulik, Katarzyna [1 ]
Sadowska, Klaudia [2 ]
Wielgus, Ewelina [1 ]
Pacholczyk-Sienicka, Barbara [2 ]
Sochacka, Elzbieta [2 ]
Nawrot, Barbara [1 ]
机构
[1] Polish Acad Sci, Ctr Mol & Macromol Studies, Sienkiewicza 112, PL-90363 Lodz, Poland
[2] Lodz Univ Technol, Inst Organ Chem, Zeromskiego 116, PL-90924 Lodz, Poland
关键词
2-thiouridine; 2-selenouridine; 2-thiouracil; 2-selenouracil; oxidative stress; modified nucleoside; tRNA; ORGANOSELENIUM CHEMISTRY; HYDROGEN-PEROXIDE; DESULFURATION; SELENIUM; 2-THIOURIDINE; ANALOGS; SULFUR;
D O I
10.3390/ijms21175956
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Sulfur- and selenium-modified uridines present in the wobble position of transfer RNAs (tRNAs) play an important role in the precise reading of genetic information and tuning of protein biosynthesis in all three domains of life. Both sulfur and selenium chalcogens functionally operate as key elements of biological molecules involved in the protection of cells against oxidative damage. In this work, 2-thiouracil (S2Ura) and 2-selenouracil (Se2Ura) were treated with hydrogen peroxide at 1:0.5, 1:1, and 1:10 molar ratios and at selected pH values ranging from 5 to 8. It was found that Se2Ura was more prone to oxidation than its sulfur analog, and if reacted with H(2)O(2)at a 1:1 or lower molar ratio, it predominantly produced diselenide Ura-Se-Se-Ura, which spontaneously transformed to a previously unknown Se-containing two-ring compound. Its deselenation furnished the major reaction product, a structure not related to any known biological species. Under the same conditions, only a small amount of S2Ura was oxidized to form Ura-SO2H and uracil (Ura). In contrast, 10-fold excess hydrogen peroxide converted Se2Ura and S2Ura into corresponding Ura-SeOnH and Ura-SOnH intermediates, which decomposed with the release of selenium and sulfur oxide(s) to yield Ura as either a predominant or exclusive product, respectively. Our results confirmed significantly different oxidation pathways of 2-selenouracil and 2-thiouracil.
引用
收藏
页码:1 / 18
页数:18
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