Marcum J M, Dedman J R, Brinkley B R, Means A R
Proc Natl Acad Sci U S A. 1978 Aug;75(8):3771-5. doi: 10.1073/pnas.75.8.3771.
The Ca2+-dependent regulator (CDR) protein of cyclic nucleotide phosphodiesterase is a low molecular weight, acidic, Ca2+-binding protein which has been implicated in a number of Ca2+-dependent enzymatic functions. Indirect immunofluorescence has revealed that CDR is specifically associated with the chromosome-to-pole region of the mitotic apparatus during metaphase-anaphase in a pattern distinctly different from that of similar cultured cells stained with antitubulin. This characteristic localization in the mitotic half-spindle suggested a role for CDR in the control of microtubule assembly-disassembly during mitosis. Thus, CDR was examined for its effects on microtubule polymerization in vitro. It was determined that stoichiometric concentrations of CDR and a homologous Ca2+-binding protein, skeletal muscle troponin C, both inhibited and reversed microtubule assembly in a Ca2+-dependent manner. CDR-dependent inhibition of in vitro microtubule assembly occurred at physiological Ca2+ concentrations (approximately 10 micron) that, in the absence of CDR, caused only a slight reduction in polymerization. At Ca2+ concentrations in the low physiological range (less than 1 micron), no inhibition was observed. These biochemical results, together with the immunofluorescent localization of CDR in the mitotic half-spindle, provide evidence that Ca2+ is an endogenous regulator of microtubule disassembly through the activity of CDR.
环核苷酸磷酸二酯酶的钙离子依赖性调节蛋白(CDR)是一种低分子量的酸性钙离子结合蛋白,它参与了多种钙离子依赖性酶促功能。间接免疫荧光显示,在中期到后期,CDR与有丝分裂装置的染色体到极区特异性相关,其模式与用抗微管蛋白染色的类似培养细胞明显不同。在有丝分裂半纺锤体中的这种特征性定位表明CDR在有丝分裂期间微管组装 - 拆卸的控制中起作用。因此,研究了CDR对体外微管聚合的影响。已确定化学计量浓度的CDR和同源钙离子结合蛋白骨骼肌肌钙蛋白C均以钙离子依赖性方式抑制并逆转微管组装。在生理钙离子浓度(约10微摩尔)下发生CDR依赖性的体外微管组装抑制,在没有CDR的情况下,该浓度仅导致聚合略有降低。在低生理范围内(小于1微摩尔)的钙离子浓度下,未观察到抑制作用。这些生化结果,连同CDR在有丝分裂半纺锤体中的免疫荧光定位,提供了证据表明钙离子通过CDR的活性是微管拆卸的内源性调节剂。