Ali J A, Orphanides G, Maxwell A
Department of Biochemistry, University of Leicester, U.K.
Biochemistry. 1995 Aug 1;34(30):9801-8. doi: 10.1021/bi00030a018.
The binding of ADPNP (5'-adenylyl beta,gamma-imidodiphosphate) to the 43-kDa N-terminal fragment of the DNA gyrase B protein is found to stabilize a dimer of the protein. Analysis of the kinetics of binding of ADPNP to the fragment suggests that protein dimers can contain 1 or 2 molecules of bound nucleotide. ATP, ADP, or coumarin drugs inhibit the binding of ADPNP. The rate of dissociation of ADPNP from the 43-kDa protein is found to be very slow and unaffected by the presence of other nucleotides. These data can be accommodated by a scheme in which the 43-kDa monomer forms a short-lived complex with ADPNP that can be converted into long-lived dimer complexes containing either 1 or 2 molecules of bound ADPNP; dimer formation with 2 bound ADPNPs is strongly favored. Coumarin drugs inhibit the binding of ADPNP to the 43-kDa fragment, with novobiocin binding to the protein with a stoichiometry of 1:1 and coumermycin binding with a stoichiometry of 0.5:1.
已发现5'-腺苷β,γ-亚氨基二磷酸(ADPNP)与DNA促旋酶B蛋白的43 kDa N端片段结合可稳定该蛋白的二聚体。对ADPNP与该片段结合动力学的分析表明,蛋白二聚体可包含1个或2个结合核苷酸分子。ATP、ADP或香豆素类药物会抑制ADPNP的结合。已发现ADPNP从43 kDa蛋白上解离的速率非常缓慢,且不受其他核苷酸存在的影响。这些数据可以用一个模型来解释,即43 kDa单体与ADPNP形成一个短暂的复合物,该复合物可转化为含有1个或2个结合ADPNP分子的长寿命二聚体复合物;强烈倾向于形成含有2个结合ADPNP的二聚体。香豆素类药物抑制ADPNP与43 kDa片段的结合,新生霉素与该蛋白以1:1的化学计量比结合,香豆霉素以0.5:1的化学计量比结合。