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C-8修饰的ATP类似物对酿酒酵母聚腺苷酸聚合酶的链终止及抑制作用。

Chain termination and inhibition of Saccharomyces cerevisiae poly(A) polymerase by C-8-modified ATP analogs.

作者信息

Chen Lisa S, Sheppard Terry L

机构信息

Department of Chemistry and the Robert H. Lurie Comprehensive Cancer Center, Northwestern University, Evanston, Illinois 60208-3113, USA.

出版信息

J Biol Chem. 2004 Sep 24;279(39):40405-11. doi: 10.1074/jbc.M401752200. Epub 2004 Jul 19.

Abstract

The nucleotide substrate specificity of yeast poly(A) polymerase (yPAP) toward various C-2- and C-8-modified ATP analogs was examined. 32P-Radiolabeled RNA oligonucleotide primers were incubated with yPAP in the absence of ATP to assay polyadenylation using unnatural ATP substrates. The C-2-modified ATP analogs 2-amino-ATP and 2-chloro (Cl)-ATP were excellent substrates for yPAP. 8-Amino-ATP, 8-azido-ATP, and 8-aza-ATP all produced chain termination of polyadenylation, and no primer extension was observed with the C-8-halogenated derivatives 8-Br-ATP and 8-Cl-ATP. The effects of modified ATP analogs on ATP-dependent poly(A) tail synthesis by yPAP were also examined. Whereas C-2 substitution (2-amino-ATP and 2-Cl-ATP) had little effect on poly(A) tail length, C-8 substitution produced moderate (8-amino-ATP, 8-azido-ATP, and 8-aza-ATP) to substantial (8-Br-ATP and 8-Cl-ATP) reduction in poly(A) tail length. To model the biochemical consequences of 8-Cl-Ado incorporation into RNA primers, a synthetic RNA primer containing a 3'-terminal 8-Cl-AMP residue was prepared. Polyadenylation of this modified RNA primer by yPAP in the presence of ATP was blocked completely. To probe potential mechanisms of inhibition, two-dimensional NMR spectroscopy experiments were used to examine the conformation of two C-8-modified AMP nucleotides, 8-Cl-AMP and 8-amino-AMP. C-8 substitution in adenosine analogs shifted the ribose sugar pucker equilibrium to favor the DNA-like C-2'-endo form over the C-3'-endo (RNA-like) conformation, which suggests a potential mechanism for polyadenylation inhibition and chain termination. Base-modified ATP analogs may exert their biological effects through polyadenylation inhibition and thus may provide useful tools for investigating polyadenylation biochemistry within cells.

摘要

研究了酵母多聚腺苷酸聚合酶(yPAP)对各种C-2和C-8修饰的ATP类似物的核苷酸底物特异性。在不存在ATP的情况下,将32P放射性标记的RNA寡核苷酸引物与yPAP一起孵育,以使用非天然ATP底物测定多聚腺苷酸化。C-2修饰的ATP类似物2-氨基-ATP和2-氯(Cl)-ATP是yPAP的优良底物。8-氨基-ATP、8-叠氮基-ATP和8-氮杂-ATP均导致多聚腺苷酸化的链终止,并且未观察到C-8卤化衍生物8-溴-ATP和8-氯-ATP的引物延伸。还研究了修饰的ATP类似物对yPAP依赖ATP的多聚腺苷酸尾合成的影响。虽然C-2取代(2-氨基-ATP和2-氯-ATP)对多聚腺苷酸尾长度影响不大,但C-8取代导致多聚腺苷酸尾长度适度(8-氨基-ATP、8-叠氮基-ATP和8-氮杂-ATP)至显著(8-溴-ATP和8-氯-ATP)缩短。为了模拟8-氯腺苷掺入RNA引物的生化后果,制备了一种含有3'-末端8-氯-AMP残基的合成RNA引物。在ATP存在下,yPAP对这种修饰的RNA引物的多聚腺苷酸化被完全阻断。为了探究潜在的抑制机制,使用二维核磁共振光谱实验来研究两种C-8修饰的AMP核苷酸8-氯-AMP和8-氨基-AMP的构象。腺苷类似物中的C-8取代使核糖糖环构象平衡向有利于DNA样的C-2'-内型形式而非C-3'-内型(RNA样)构象转变,这提示了多聚腺苷酸化抑制和链终止的潜在机制。碱基修饰的ATP类似物可能通过多聚腺苷酸化抑制发挥其生物学效应,因此可能为研究细胞内的多聚腺苷酸化生物化学提供有用的工具。

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