Shioda M, Okuhara K, Murofushi H, Mori A, Sakai H, Murakami-Murofushi K, Suzuki M, Yoshida S
Department of Physiological Chemistry and Nutrition, Faculty of Medicine, University of Tokyo, Japan.
Biochemistry. 1991 Dec 3;30(48):11403-12. doi: 10.1021/bi00112a006.
Microtubule-associated protein 2 (MAP2) isolated from porcine brains stimulated the activity of DNA polymerase alpha immunopurified from calf thymus or human lymphoma cells, in a dose-dependent manner. This stimulation was pronounced when activated DNA or poly(dA).(dT)10 was used as the template-primer. DNA polymerase alpha bound to a MAP2-immobilized column, whereas preincubation of the enzyme with unbound MAP2 prevented binding to the column. These events suggested that a physical binding occurred between the polymerase and MAP2. Kinetic analyses revealed that MAP2 decreased the Km value of the polymerase for deoxyribonucleotides, irrespective of the species of template-primer. A concomitant increase in Vmax was observed; however, the extent of the increase depended on the species of template-primer. MAP2 also decreased the Km value of the polymerase for template-primers when activated DNA of poly(dA).(dT)10 was used as the template-primer. Product analyses showed that MAP2 did not significantly alter the processivity of the polymerase and the increment of Vmax is considered to be due to an increase in the frequency of initiation of DNA synthesis. The stimulation by MAP2 occurred specifically in the activity of DNA polymerase alpha, but not DNA polymerases beta, gamma, and I from Escherichia coli. Other MAPs, tau and 190-kDa MAP, could substitute for MAP2. Thus, the specific stimulation of DNA polymerase alpha by MAPs supports the notion of a possible involvement of MAPs or MAP-like proteins in DNA replication, in vivo.
从猪脑中分离出的微管相关蛋白2(MAP2)以剂量依赖的方式刺激了从小牛胸腺或人淋巴瘤细胞中免疫纯化的DNA聚合酶α的活性。当使用活化的DNA或聚(dA)·(dT)10作为模板引物时,这种刺激作用尤为明显。DNA聚合酶α与固定有MAP2的柱结合,而该酶与未结合的MAP2预孵育会阻止其与柱的结合。这些现象表明聚合酶与MAP2之间发生了物理结合。动力学分析表明,无论模板引物的种类如何,MAP2都能降低聚合酶对脱氧核苷酸的Km值。同时观察到Vmax增加;然而,增加的程度取决于模板引物的种类。当使用聚(dA)·(dT)10的活化DNA作为模板引物时,MAP2也能降低聚合酶对模板引物的Km值。产物分析表明,MAP2不会显著改变聚合酶的持续合成能力,Vmax的增加被认为是由于DNA合成起始频率的增加。MAP2的刺激作用特异性地发生在DNA聚合酶α的活性上,而不是大肠杆菌的DNA聚合酶β、γ和I的活性上。其他微管相关蛋白,如tau和190 kDa的微管相关蛋白,可以替代MAP2。因此,微管相关蛋白对DNA聚合酶α的特异性刺激支持了微管相关蛋白或类微管相关蛋白可能在体内参与DNA复制的观点。