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3',5'-焦磷酸连接的核苷酸对哺乳动物核糖核酸酶的强效抑制作用。

Potent inhibition of mammalian ribonucleases by 3', 5'-pyrophosphate-linked nucleotides.

作者信息

Russo N, Shapiro R

机构信息

Center for Biochemical and Biophysical Sciences and Medicine, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 1999 May 21;274(21):14902-8. doi: 10.1074/jbc.274.21.14902.

Abstract

Molecular modeling based on the crystal structure of the complex of bovine pancreatic RNase A with the inhibitor 5'-diphosphoadenosine 3'-phosphate (ppAp) (Leonidas, D. D., Shapiro, R., Irons, L. I., Russo, N., and Acharya, K. R. (1997) Biochemistry 36, 5578-5588) was used to design new inhibitors that extend into unoccupied regions of the enzyme active site. These compounds are dinucleotides that contain an unusual 3',5'-pyrophosphate linkage and were synthesized in solution by a combined chemical and enzymatic procedure. The most potent of them, 5'-phospho-2'-deoxyuridine 3'-pyrophosphate, P' --> 5'-ester with adenosine 3'-phosphate (pdUppAp), binds to RNase A with Ki values of 27 and 220 nM at pH 5.9 and 7, respectively. These values are 6-9-fold lower than those for ppAp and 50-fold lower than that for the transition state analogue, uridine vanadate. pdUppAp has broad specificity; it is an effective inhibitor of at least two other members of the pancreatic RNase superfamily, human RNase-2 (eosinophil-derived neurotoxin) and RNase-4, which share only 36-44% sequence identity with the pancreatic enzyme. The potency of pdUppAp and the other inhibitors described here depends critically on the extended internucleotide linkage; the pyrophosphate group enhances dinucleotide binding to the three RNases by 2.1-2.9 orders of magnitude, as compared with a monophosphate. These data give further insight into the organization of the catalytic centers of the various RNases. Moreover, the new class of inhibitors provides a useful means by which to probe the biological actions of these and other related enzymes.

摘要

基于牛胰核糖核酸酶A与抑制剂5'-二磷酸腺苷3'-磷酸(ppAp)复合物的晶体结构进行分子建模(Leonidas, D. D., Shapiro, R., Irons, L. I., Russo, N., and Acharya, K. R. (1997) Biochemistry 36, 5578 - 5588),用于设计延伸至酶活性位点未占据区域的新型抑制剂。这些化合物是含有不寻常3',5'-焦磷酸键的二核苷酸,通过化学和酶促联合程序在溶液中合成。其中最有效的5'-磷酸-2'-脱氧尿苷3'-焦磷酸,P'→5'-与腺苷3'-磷酸的酯(pdUppAp),在pH 5.9和7时分别以27和220 nM的Ki值与核糖核酸酶A结合。这些值分别比ppAp低6 - 9倍,比过渡态类似物尿苷钒酸盐低50倍。pdUppAp具有广泛的特异性;它是胰腺核糖核酸酶超家族的至少另外两个成员,人核糖核酸酶-2(嗜酸性粒细胞衍生的神经毒素)和核糖核酸酶-4的有效抑制剂,它们与胰腺酶的序列同一性仅为36 - 44%。pdUppAp和本文所述的其他抑制剂的效力关键取决于延长的核苷酸间连接;与单磷酸相比,焦磷酸基团使二核苷酸与这三种核糖核酸酶的结合增强2.1 - 2.9个数量级。这些数据进一步深入了解了各种核糖核酸酶催化中心的组织。此外,新型抑制剂提供了一种有用的手段,可用于探究这些及其他相关酶的生物学作用。

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