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在嘌呤碱基中被取代的NAD+类似物作为聚(ADP-核糖)转移酶的底物。

NAD+ analogs substituted in the purine base as substrates for poly(ADP-ribosyl) transferase.

作者信息

Oei S L, Griesenbeck J, Buchlow G, Jorcke D, Mayer-Kuckuk P, Wons T, Ziegler M

机构信息

Institut für Biochemie, Freie Universität Berlin, Germany.

出版信息

FEBS Lett. 1996 Nov 11;397(1):17-21. doi: 10.1016/s0014-5793(96)01137-4.

Abstract

Poly(ADP-ribosyl) transferase (pADPRT) catalyzes the transfer of the ADP-ribose moiety from NAD+ onto proteins as well as onto protein-bound ADP-ribose. As a result, protein-bound polymers of ADP-ribose are formed. pADPRT itself contains several acceptor sites for ADP-ribose polymers and may attach polymers to itself (automodification). In this study the influence of substitutions in the purine base of NAD+ on the polymerization reaction was investigated. The adenine moiety of NAD+ was replaced by either guanine, hypoxanthine or 1,N6-ethenoadenine. These analogs served as substrates for polymer synthesis as judged from the extent of automodification of the enzyme and the sizes of the polymers formed. Time course experiments revealed that 1,N6-etheno NAD+ (epsilon-NAD+) and nicotinamide hypoxanthine dinucleotide (NHD+) were rather poor substrates as compared to NAD+. Synthesis of GDP-ribose polymers from nicotinamide guanine dinucleotide (NGD+) was more efficient, but still significantly slower than poly(ADP-ribosyl)ation of the enzyme using NAD+. The size of the different polymers appeared to correlate with these observations. After 30 min of incubation in the presence of 1 mM substrate, polymers formed from epsilon-NAD+ or NHD+ contained up to 30 epsilon-ADP-ribose or IDP-ribose units, respectively. Using NGD+ as substrate polymers consisted of more than 60 GDP-ribose units, an amount similar to that achieved by poly(ADP-ribosyl)ation in the presence of only 0.1 mM NAD+ as substrate. These results suggest that the presence of an amino group in the purine base of NAD+ may facilitate catalysis. Substitution of the nicotinamide moiety of NAD+ with 3-acetylpyridine had no detectable effect on polymer formation. Oligomers of GDP-ribose and epsilon-ADP-ribose exhibited a slower mobility in polyacrylamide gels as compared to ADP-ribose or IDP-ribose oligomers. This feature of the two former analogs as well as their markedly attenuated polymerization by pADPRT provide valuable tools for the investigation of the enzymatic mechanism of this protein. Moreover, polymers of epsilon-ADP-ribose may be useful for studying enzymes degrading poly(ADP-ribose) owing to the fluorescence of this analog. Digestion of epsilon-ADPR polymers with snake venom phosphodiesterase was accompanied by a significant fluorescence enhancement.

摘要

聚(ADP - 核糖基)转移酶(pADPRT)催化将ADP - 核糖部分从NAD⁺转移到蛋白质以及与蛋白质结合的ADP - 核糖上。结果,形成了与蛋白质结合的ADP - 核糖聚合物。pADPRT本身含有几个ADP - 核糖聚合物的受体位点,并可能将聚合物连接到自身(自动修饰)。在本研究中,研究了NAD⁺嘌呤碱基中的取代对聚合反应的影响。NAD⁺的腺嘌呤部分被鸟嘌呤、次黄嘌呤或1,N⁶ - 乙烯腺嘌呤取代。从酶的自动修饰程度和形成的聚合物大小判断,这些类似物用作聚合物合成的底物。时间进程实验表明,与NAD⁺相比,1,N⁶ - 乙烯NAD⁺(ε - NAD⁺)和烟酰胺次黄嘌呤二核苷酸(NHD⁺)是相当差的底物。从烟酰胺鸟嘌呤二核苷酸(NGD⁺)合成GDP - 核糖聚合物更有效,但仍明显慢于使用NAD⁺对该酶进行聚(ADP - 核糖基)化反应。不同聚合物的大小似乎与这些观察结果相关。在1 mM底物存在下孵育30分钟后,由ε - NAD⁺或NHD⁺形成的聚合物分别含有多达30个ε - ADP - 核糖或IDP - 核糖单元。使用NGD⁺作为底物时,聚合物由超过60个GDP - 核糖单元组成,这一数量与仅以0.1 mM NAD⁺作为底物进行聚(ADP - 核糖基)化反应所达到的数量相似。这些结果表明,NAD⁺嘌呤碱基中氨基的存在可能促进催化作用。用3 - 乙酰吡啶取代NAD⁺的烟酰胺部分对聚合物形成没有可检测到的影响。与ADP - 核糖或IDP - 核糖寡聚物相比,GDP - 核糖和ε - ADP - 核糖的寡聚物在聚丙烯酰胺凝胶中迁移较慢。这两种前体类似物的这一特性以及它们被pADPRT显著减弱的聚合作用为研究该蛋白质的酶促机制提供了有价值的工具。此外,由于这种类似物的荧光,ε - ADP - 核糖聚合物可能有助于研究降解聚(ADP - 核糖)的酶。用蛇毒磷酸二酯酶消化ε - ADPR聚合物伴随着显著的荧光增强。

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