Moss J, Yost D A, Stanley S J
J Biol Chem. 1983 May 25;258(10):6466-70.
[adenine-U-14C]ADP-ribose-agmatine and [adenine-U-14C ))ADP-ribose-histone were synthesized by an NAD:arginine ADP-ribosyltransferase from [14C]NAD and agmatine and histone, respectively. The pseudo-first order rate constants for breakdown of the two components either in 0.4 N NaOH or in 0.4 M neutral hydroxylamine were identical. Hydroxylamine treatment of [14C]ADP-ribose-agmatine or [32P]ADP-ribose-histone yielded a single radioactive product which was separated by high pressure liquid chromatography and identified as ADP-ribose-hydroxamate by the formation of a ferric chloride complex. Hydrolysis of ADP-ribose-hydroxamate with snake venom phosphodiesterase resulted in the formation of 5'-AMP, consistent with the presence of a pyrophosphate bond. Incubation of ADP-ribose-[14C]agmatine, synthesized by the ADP-ribosyltransferase from NAD and [14C]agmatine, with 0.4 M neutral hydroxylamine resulted in the release of [14C]agmatine rather than phosphoribosyl[14C]agmatine. In addition, neither NAD nor ADP-ribose reacts with hydroxylamine; i.e. there was no evidence of nucleophilic attack by hydroxylamine at the pyrophosphate bond. The ADP-ribosyl-protein linkage formed by the NAD:arginine ADP-ribosyltransferase is considerably more stable to hydroxylamine than is the ADP-ribose-glutamate bond. The presence of ADP-ribose-arginine and ADP-ribose-glutamate synthesized by the ADP-ribosyltransferase and poly(ADP-ribose) synthetase, respectively, may be the chemical basis for the "hydroxylamine-stable" and "hydroxylamine-labile" bonds described by Hilz (Hilz, H. (1981) Hoppe-Seyler's Z. Physiol. Chem. 362, 1415-1425).
[腺嘌呤 - U - ¹⁴C]ADP - 核糖 - 胍丁胺和[腺嘌呤 - U - ¹⁴C]ADP - 核糖 - 组蛋白分别由NAD:精氨酸ADP - 核糖基转移酶利用[¹⁴C]NAD与胍丁胺和组蛋白合成。在0.4N NaOH或0.4M中性羟胺中,这两种成分分解的准一级速率常数相同。用羟胺处理[¹⁴C]ADP - 核糖 - 胍丁胺或[³²P]ADP - 核糖 - 组蛋白产生单一放射性产物,通过高压液相色谱分离,并通过形成氯化铁络合物鉴定为ADP - 核糖异羟肟酸。用蛇毒磷酸二酯酶水解ADP - 核糖异羟肟酸导致5'-AMP的形成,这与焦磷酸键的存在一致。由ADP - 核糖基转移酶从NAD和[¹⁴C]胍丁胺合成的ADP - 核糖 - [¹⁴C]胍丁胺与0.4M中性羟胺一起温育导致[¹⁴C]胍丁胺的释放,而不是磷酸核糖基[¹⁴C]胍丁胺。此外,NAD和ADP - 核糖都不与羟胺反应;即没有证据表明羟胺在焦磷酸键处发生亲核攻击。由NAD:精氨酸ADP - 核糖基转移酶形成的ADP - 核糖 - 蛋白质键比ADP - 核糖 - 谷氨酸键对羟胺更稳定。分别由ADP - 核糖基转移酶和聚(ADP - 核糖)合成酶合成的ADP - 核糖 - 精氨酸和ADP - 核糖 - 谷氨酸的存在可能是Hilz(Hilz,H.(1981)Hoppe - Seyler's Z. Physiol. Chem. 362,1415 - 1425)描述的“羟胺稳定”和“羟胺不稳定”键的化学基础。