Gietzen K, Sadorf I, Bader H
Biochem J. 1982 Dec 1;207(3):541-8. doi: 10.1042/bj2070541.
Acidic phospholipids, unsaturated fatty acids and limited proteolysis mimic the activating effect of calmodulin on erythrocyte Ca2+-transport ATPase and on brain cyclic nucleotide phosphodiesterase, as has been reported previously in several studies. Three different antagonists of calmodulin-induced activation of these enzymes were tested for their inhibitory potency on the stimulation produced by the other activators. Trifluoperazine and penfluridol were found to antagonize all the above mentioned types of activation of Ca2+-transport ATPase in the same concentration range. Both inhibitors also can reverse the activation of phosphodiesterase by oleic acid, phosphatidylserine and calmodulin at similar concentrations. However, in contrast with erythrocyte Ca2+-transport ATPase, activation of phosphodiesterase by limited tryptic digestion cannot be antagonized by penfluridol and trifluoperazine. Calmidazolium, formerly referred to as compound R 24571, was found to be a relatively specific inhibitor of calmodulin-induced activation of phosphodiesterase and Ca2+-transport ATPase, since antagonism of the other activators required much higher concentrations of the drug. The results suggest that the investigated drugs exert their inhibitory effect on calmodulin-regulated enzymes not solely via their binding to calmodulin but may also interfere directly with the calmodulin effector enzyme. In addition, a general mechanism of activation and inhibition of calmodulin-dependent enzymes is derived from our results.
正如先前在多项研究中所报道的,酸性磷脂、不饱和脂肪酸和有限的蛋白水解作用可模拟钙调蛋白对红细胞钙转运ATP酶和脑环核苷酸磷酸二酯酶的激活作用。测试了三种不同的钙调蛋白诱导的这些酶激活的拮抗剂对其他激活剂产生的刺激的抑制效力。发现三氟拉嗪和五氟利多在相同浓度范围内可拮抗上述所有类型的钙转运ATP酶激活。两种抑制剂在相似浓度下也能逆转油酸、磷脂酰丝氨酸和钙调蛋白对磷酸二酯酶的激活。然而,与红细胞钙转运ATP酶不同,胰蛋白酶有限消化对磷酸二酯酶的激活不能被五氟利多和三氟拉嗪拮抗。氯咪达唑(以前称为化合物R 24571)被发现是钙调蛋白诱导的磷酸二酯酶和钙转运ATP酶激活的相对特异性抑制剂,因为拮抗其他激活剂需要更高浓度的该药物。结果表明,所研究的药物对钙调蛋白调节的酶发挥抑制作用不仅是通过它们与钙调蛋白的结合,还可能直接干扰钙调蛋白效应酶。此外,从我们的结果中得出了钙调蛋白依赖性酶激活和抑制的一般机制。