Nishida E, Kumagai H, Ohtsuki I, Sakai H
J Biochem. 1979 May;85(5):1257-66.
We examined the effect of porcine brain Ca2+-dependent regulator (CDR) protein on microtubule (MT) assembly from microtubular proteins isolated from porcine brain by temperature-dependent cycles of assembly-disassembly. CDR exhibited a potent inhibitory effect on MT assembly in the presence of Ca2+, whereas it had little or no effect on the extent of MT assembly in the absence of Ca2+. The increase in KCl concentration greatly potentiated the Ca2+-dependent inhibitory effect of CDR. The effect of CDR was reversible in a Ca2+ concentration-dependent manner, and the extent of inhibition by CDR at a fixed concentration of free Ca2+ was roughly proportional to the concentration of CDR. Moreover, the Ca2+ concentration required for the half-maximal inhibition of MT assembly from a fixed concentration of purified microtubular proteins (PMP) decreased with increasing CDR concentration. On the basis of these results, together with data on the Ca2+-dependent association of CDR and tubulin (J. Biochem., accompanying paper), we propose the following model; Ca2+ + CDR in equilibrium Ca2+-CDR Ca2+-CDR + tubulin in equilibrium Ca2+-CDR-tubulin (nonpolymerizable).
我们通过温度依赖性的组装-解聚循环,研究了猪脑钙离子依赖性调节蛋白(CDR)对从猪脑分离的微管蛋白组装微管(MT)的影响。在有钙离子存在的情况下,CDR对MT组装表现出强烈的抑制作用,而在没有钙离子时,它对MT组装程度几乎没有影响。氯化钾浓度的增加极大地增强了CDR的钙离子依赖性抑制作用。CDR的作用以钙离子浓度依赖性方式可逆,并且在固定游离钙离子浓度下,CDR的抑制程度大致与CDR浓度成正比。此外,从固定浓度的纯化微管蛋白(PMP)中半最大抑制MT组装所需的钙离子浓度随CDR浓度增加而降低。基于这些结果,结合关于CDR与微管蛋白的钙离子依赖性结合的数据(《生物化学杂志》,同期论文),我们提出以下模型:钙离子 + CDR 处于平衡状态 Ca2+-CDR,Ca2+-CDR + 微管蛋白 处于平衡状态 Ca2+-CDR-微管蛋白(不可聚合)。