Pala I, Vig P J, Desaiah D, Srinivasan A
Department of Neurology, University of Mississippi Medical Center, Jackson 39216.
J Appl Toxicol. 1991 Dec;11(6):391-5. doi: 10.1002/jat.2550110603.
In vitro effects of organophosphorus compounds (OP), such as malathion (M), methyl parathion (MP) and ethyl parathion (EP), on calmodulin (CaM) activity and its active conformation were studied to understand the mechanism(s) of neurotoxicity, since CaM is known to regulate Ca2+ transport and the enzymes involved in signal transduction and nucleotide metabolism. The biological activity of CaM was assessed as a measure of phosphodiesterase (PDE) stimulation. The effect of OP compounds on the active conformation of CaM was determined by studying the binding of fluorescence probes, namely N-phenyl-1-naphthylamine (NPN), and changes in dansyl-calmodulin fluorescence. Dansylated calmodulin was also used to study the effect of OP compounds on complex formation between CaM and PDE. All three OP compounds inhibited the CaM activity and its active conformation in a concentration-dependent manner. Malathion was less effective in comparison to EP and MP, with IC50 values of 37 microM, 34.5 microM and 32 microM, respectively, for CaM activity. EP and MP significantly altered NPN and dansyl-calmodulin fluorescence (50 microM concentrations of OP compounds), whereas M did not show any significant effect on NPN fluorescence. All these compounds significantly affected complex formation between the dansylated CaM and PDE. These results suggest that OP compounds may be interacting with CaM, altering its active conformation, and thus may be inhibiting its biological activity.
为了理解神经毒性机制,研究了有机磷化合物(OP)如马拉硫磷(M)、甲基对硫磷(MP)和乙基对硫磷(EP)对钙调蛋白(CaM)活性及其活性构象的体外影响,因为已知CaM可调节Ca2+转运以及参与信号转导和核苷酸代谢的酶。将CaM的生物活性评估为磷酸二酯酶(PDE)刺激的一种度量。通过研究荧光探针N-苯基-1-萘胺(NPN)的结合以及丹磺酰钙调蛋白荧光的变化,确定了OP化合物对CaM活性构象的影响。丹磺酰化钙调蛋白也用于研究OP化合物对CaM与PDE之间复合物形成的影响。所有三种OP化合物均以浓度依赖性方式抑制CaM活性及其活性构象。与EP和MP相比,马拉硫磷的效果较差,对于CaM活性,其IC50值分别为37 microM、34.5 microM和32 microM。EP和MP显著改变了NPN和丹磺酰钙调蛋白的荧光(OP化合物浓度为50 microM),而M对NPN荧光没有显示出任何显著影响。所有这些化合物均显著影响丹磺酰化CaM与PDE之间的复合物形成。这些结果表明,OP化合物可能与CaM相互作用,改变其活性构象,从而可能抑制其生物活性。