Mayr G W
Eur J Biochem. 1984 Sep 17;143(3):513-20. doi: 10.1111/j.1432-1033.1984.tb08400.x.
Phosphofructokinase from muscle has been shown to be a calmodulin-binding protein [Mayr, G.W. and Heilmeyer, L.M.G., Jr (1983) FEBS Lett. 159, 51-57]. Details of the influence of calmodulin on the aggregation state, the conformation and the catalytic properties of phosphofructokinase have been studied by enzymatic and light-scattering analyses. Calmodulin acts as a Ca2+-dependent hysteretic inhibitor of the highly active enzyme. At least one mole of calmodulin binds to each protomer of the enzyme, induces a shift from the highly active tetrameric towards an inactive dimeric state and slowly changes the conformation of the dimers. Dissociation of calmodulin from conformationally changed dimers by removal of Ca2+ stops the inactivation. Without a significant regain of catalytic activity large polymers are rapidly formed. For a reactivation of the inactivated enzyme, calmodulin has to remain associated and the incubation conditions must be changed in a way to allow for a back isomerization and reassociation of dimers. The isomerization reaction is promoted by Mg . ATP, the reassociation reaction most effectively by fructose bisphosphate. A model for the calmodulin-phosphofructokinase interaction is proposed.
肌肉中的磷酸果糖激酶已被证明是一种钙调蛋白结合蛋白[迈尔,G.W.和海尔迈尔,L.M.G.,Jr(1983年)《欧洲生物化学学会联合会快报》159,51 - 57]。通过酶促分析和光散射分析研究了钙调蛋白对磷酸果糖激酶的聚集状态、构象和催化特性的影响细节。钙调蛋白作为高活性酶的一种钙依赖性滞后抑制剂。至少一摩尔钙调蛋白与酶的每个原体结合,诱导其从高活性的四聚体状态转变为无活性的二聚体状态,并缓慢改变二聚体的构象。通过去除钙离子使钙调蛋白从构象改变的二聚体上解离会停止失活。在催化活性没有显著恢复的情况下,会迅速形成大聚合物。为了使失活的酶重新激活,钙调蛋白必须保持结合状态,并且孵育条件必须改变,以允许二聚体发生反向异构化和重新结合。异构化反应由Mg·ATP促进,重新结合反应最有效地由果糖二磷酸促进。提出了一个钙调蛋白 - 磷酸果糖激酶相互作用的模型。