Torrence P F, Brozda D, Alster D, Charubala R, Pfleiderer W
Laboratory of Analytical Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.
J Biol Chem. 1988 Jan 25;263(3):1131-9.
To investigate the relative importance of each of the ribose 3'-hydroxyl groups of 2-5A (ppp5' A2'p5'A2'-p5' A) in determining binding to and activation of the 2-5A-dependent endonuclease (RNase L), the 3'-hydroxyl functionality of each adenosine moiety of 2-5A trimer triphosphate was sequentially replaced by hydrogen. The analog in which the 5'-terminal adenosine was replaced by 3'-deoxyadenosine (viz. ppp5'(3'dA)-2'p5' A2'p5' A) was bound to RNase L as well as 2-5A itself and was only 3 times less potent than 2-5A as an activator of RNase L. On the other hand, when the second adenosine unit was replaced by 3'-deoxyadenosine (viz. ppp5' A2'p5'(3'dA)2'p5' A), binding to RNase L was decreased by a factor of eight relative to 2-5A trimer and, even more dramatically, there was a 500-1000-fold drop in ability to activate the 2-5A-dependent endonuclease. Finally, when the 3'-hydroxyl substituent was converted to hydrogen in the 2'-terminal residue of 2-5A, a significant increase in both binding and activation ability occurred. We conclude that only the 3'-hydroxyl group of the second (from the terminus) nucleotide residue of 2-5A is needed for effective activation of RNase L.
为了研究2-5A(ppp5'A2'p5'A2'-p5'A)的每个核糖3'-羟基在决定与2-5A依赖性核酸内切酶(RNase L)的结合及激活中的相对重要性,将2-5A三聚体三磷酸酯的每个腺苷部分的3'-羟基官能团依次用氢取代。5'-末端腺苷被3'-脱氧腺苷取代的类似物(即ppp5'(3'dA)-2'p5'A2'p5'A)与RNase L的结合情况与2-5A本身相同,作为RNase L的激活剂,其效力仅比2-5A低3倍。另一方面,当第二个腺苷单元被3'-脱氧腺苷取代时(即ppp5'A2'p5'(3'dA)2'p5'A),相对于2-5A三聚体,与RNase L的结合减少了8倍,甚至更显著的是,激活2-5A依赖性核酸内切酶的能力下降了500 - 1000倍。最后,当2-5A的2'-末端残基中的3'-羟基取代基转化为氢时,结合和激活能力均显著增加。我们得出结论,2-5A中仅第二个(从末端起)核苷酸残基的3'-羟基对于有效激活RNase L是必需的。