Suhadolnik R J, Lee C, Karikó K, Li S W
Department of Biochemistry, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.
Biochemistry. 1987 Nov 3;26(22):7143-9. doi: 10.1021/bi00396a041.
The chiral and achiral phosphorothioate analogues of 2',5'-oligoadenylates (2-5A) have been enzymatically synthesized from the Sp and Rp isomers of adenosine 5'-O-(2-thiotriphosphate) [(Sp)-ATP beta S and (Rp)-ATP beta S, respectively] and adenosine 5'-O-(3-thiotriphosphate) (ATP gamma S) by 2-5A synthetase from L929 cells and lysed rabbit reticulocytes. These 2',5'-phosphorothioate analogues were separated, purified, and structurally characterized. While ATP gamma S and (Sp)-ATP beta S were as efficient substrates for the 2-5A synthetase as was ATP, (Rp)-ATP beta S was more than 50-fold less efficient a substrate. The beta- and gamma-phosphorothioates were more resistant to enzymatic hydrolysis than was authentic 2-5A. Compared to 2-5A, there were marked differences in the biological activities of the 2',5'-phosphorothioates as determined by (i) binding to 2-5A-dependent endoribonuclease (RNase L), (ii) activation of RNase L to hydrolyze RNA, and (iii) inhibition of protein synthesis in intact L929 cells. These studies extend previous reports on the elucidation of the stereochemical requirements of 2-5A synthetase and RNase L [Karikó, K., Sobol, R. W., Jr., Suhadolnik, L., Li, S. W., Reichenbach, N. L., Suhadolnik, R. J., Charubala, R., & Pfleiderer, W. (1987) Biochemistry (first of three papers in this issue); Karikó, K., Li, S. W., Sobol, R. W., Jr., Suhadolnik, R. J., Charubala, R., & Pfleiderer, W. (1987) Biochemistry (second of three papers in this issue)] with the phosphorothioate analogues of 2-5A.(ABSTRACT TRUNCATED AT 250 WORDS)
通过L929细胞和裂解的兔网织红细胞中的2-5A合成酶,从腺苷5'-O-(2-硫代三磷酸)的Sp和Rp异构体(分别为(Sp)-ATPβS和(Rp)-ATPβS)以及腺苷5'-O-(3-硫代三磷酸)(ATPγS)酶促合成了2',5'-寡腺苷酸(2-5A)的手性和非手性硫代磷酸酯类似物。对这些2',5'-硫代磷酸酯类似物进行了分离、纯化和结构表征。虽然ATPγS和(Sp)-ATPβS作为2-5A合成酶的底物与ATP一样有效,但(Rp)-ATPβS作为底物的效率要低50倍以上。β-和γ-硫代磷酸酯比天然的2-5A更耐酶促水解。与2-5A相比,2',5'-硫代磷酸酯在以下方面的生物学活性存在显著差异:(i)与2-5A依赖性核糖核酸酶(RNase L)结合;(ii)激活RNase L以水解RNA;(iii)抑制完整L929细胞中的蛋白质合成。这些研究扩展了先前关于阐明2-5A合成酶和RNase L立体化学要求的报道[卡里科,K.,索博尔,R.W.,Jr.,苏哈多尔尼克,L.,李,S.W.,赖兴巴赫,N.L.,苏哈多尔尼克,R.J.,查鲁巴拉,R.,&普弗莱德雷尔,W.(1987)生物化学(本期三篇论文中的第一篇);卡里科,K.,李,S.W.,索博尔,R.W.,Jr.,苏哈多尔尼克,R.J.,查鲁巴拉,R.,&普弗莱德雷尔,W.(1987)生物化学(本期三篇论文中的第二篇)],涉及2-5A的硫代磷酸酯类似物。(摘要截短于250字)