Khalmuradov A G, Muliavko N A
Biokhimiia. 1984 Jan;49(1):20-4.
The rate of incorporation of nicotinamide-[adenosine-U-14C]adenine dinucleotide [( Ado-U-14C]NAD) into histones and the poly(ADPR) polymerase activity of chromatin suggest that the NAD-dependent ADP-ribosylation of histones depends on the rate of NAD hydrolysis by glycohydrolase in chicken liver nuclei. With a rise in the NAD-glycohydrolase activity after treatment of nuclei with Triton X-100 the synthesis of poly(ADP-ribose) via the poly(ADPR)polymerase reaction is augmented, as a result of which the rate of [Ado-U-14C]NAD incorporation into total histones is increased. On the contrary, the decrease of NAD-glycohydrolase hydrolysis after treatment of nuclei with SDS lowers the poly(ADPR)polymerase activity and [Ado-U-14C]NAD incorporation into histones. Under these conditions, i. e. different rates of glycohydrolase hydrolysis of NAD in the nuclei, some redistribution of [Ado U-14C]NAD incorporation into individual histones occurs.
烟酰胺 - [腺苷 - U - 14C]腺嘌呤二核苷酸[(Ado - U - 14C)NAD]掺入组蛋白的速率以及染色质的聚(ADPR)聚合酶活性表明,组蛋白的NAD依赖性ADP - 核糖基化取决于鸡肝细胞核中糖水解酶对NAD的水解速率。用Triton X - 100处理细胞核后,随着NAD - 糖水解酶活性的升高,通过聚(ADPR)聚合酶反应合成的聚(ADP - 核糖)增加,结果是[(Ado - U - 14C)NAD]掺入总组蛋白的速率增加。相反,用SDS处理细胞核后NAD - 糖水解酶水解的减少降低了聚(ADPR)聚合酶活性以及[(Ado - U - 14C)NAD]掺入组蛋白的量。在这些条件下,即细胞核中NAD的糖水解酶水解速率不同时,[(Ado U - 14C)NAD]掺入各个组蛋白的情况会发生一些重新分布。