Wesierska-Gadek J, Sauermann G
Institut für Tumorbiologie-Krebsforschung der Universität Wien, Austria.
Eur J Biochem. 1988 May 2;173(3):675-9. doi: 10.1111/j.1432-1033.1988.tb14051.x.
The competition between poly(ADP-ribose) and DNA for binding of the histones H1, H3 and H4 was studied, using a membrane filter-binding test. Poly(ADP-ribose) differently affected the interaction between DNA and the individual histones. While poly(ADP-ribose) effectively competed with DNA for binding of histone H4, it equally competed with DNA for binding of histone H3 and only inefficiently competed with DNA for binding of histone H1. Moreover, preformed complexes were correspondingly affected by the addition of competing polynucleotides, thereby also indicating the reversibility of complex formation. The competition capacity of DNA for histone H4 binding did not depend on DNA size. Competition experiments with poly(A) also indicated that poly(ADP-ribose) preferentially affected DNA-histone H4 interaction. The significance of the differing binding properties is discussed with regard to the possible molecular function of poly(ADP-ribose), especially with regard to its potential effect on nucleosome structure.
采用膜滤器结合试验研究了聚(ADP - 核糖)与DNA竞争组蛋白H1、H3和H4结合的情况。聚(ADP - 核糖)对DNA与单个组蛋白之间的相互作用有不同影响。聚(ADP - 核糖)能有效与DNA竞争组蛋白H4的结合,与DNA竞争组蛋白H3结合的能力相当,而与DNA竞争组蛋白H1结合的效率较低。此外,预先形成的复合物会相应地受到竞争性多核苷酸添加的影响,这也表明复合物形成具有可逆性。DNA竞争组蛋白H4结合的能力不取决于DNA大小。用聚(A)进行的竞争实验也表明聚(ADP - 核糖)优先影响DNA - 组蛋白H4的相互作用。结合特性差异的意义在聚(ADP - 核糖)可能的分子功能方面进行了讨论,特别是其对核小体结构的潜在影响。