Sakakihara Y, Volpe J J
J Biol Chem. 1985 Dec 15;260(29):15413-9.
The cation specificity of dolichol kinase of mammalian brain and the potential involvement of a Ca2+-calmodulin system in regulation of this enzyme have been studied. Among 10 divalent cations examined, Zn2+ was found to be most effective for the activation of dolichol kinase of rat and calf brain and cultured C-6 glial cells. The activations with Ca2+, Co2+, and Mg2+ were 53%, 32%, and 18% of the full activation with Zn2+, respectively. No combinations of the cations could activate the enzyme as much as Zn2+ alone. A role for a Ca2+-calmodulin system in the regulation of brain dolichol kinase was not supported by our data. First, the concentration of free Ca2+ required for the maximum activation of dolichol kinase was two to three orders of magnitude greater than the concentration required by typical calmodulin-dependent enzymes. Second, neither the depletion of calmodulin from the microsomal fraction nor the addition of exogenous calmodulin caused an alteration in the activation of dolichol kinase by Ca2+ (or Zn2+). Third, antagonists of calmodulin failed to suppress the activation of the enzyme by Ca2+ (or Zn2+). The data raise the possibility that Zn2+ is involved in the regulation of dolichol kinase in brain.
对哺乳动物大脑中多萜醇激酶的阳离子特异性以及Ca2 + -钙调蛋白系统在该酶调节中的潜在作用进行了研究。在所检测的10种二价阳离子中,发现Zn2 +对大鼠和小牛大脑以及培养的C - 6神经胶质细胞中的多萜醇激酶激活最为有效。Ca2 +、Co2 +和Mg2 +的激活率分别为Zn2 +完全激活率的53%、32%和18%。没有哪种阳离子组合能像单独的Zn2 +那样有效激活该酶。我们的数据不支持Ca2 + -钙调蛋白系统在调节大脑多萜醇激酶中起作用。首先,多萜醇激酶最大激活所需的游离Ca2 +浓度比典型的钙调蛋白依赖性酶所需浓度高两到三个数量级。其次,无论是从微粒体部分耗尽钙调蛋白,还是添加外源钙调蛋白,都不会引起Ca2 +(或Zn2 +)对多萜醇激酶激活的改变。第三,钙调蛋白拮抗剂未能抑制Ca2 +(或Zn2 +)对该酶的激活。这些数据增加了Zn2 +参与大脑中多萜醇激酶调节的可能性。