CESAM & Departamento de Biologia, Universidade de Aveiro, 3810-193 Aveiro, Portugal.
J Inorg Biochem. 2013 Nov;128:208-14. doi: 10.1016/j.jinorgbio.2013.06.011. Epub 2013 Jun 24.
The ability of aluminium to inhibit the (Na(+)/K(+))ATPase activity has been observed by several authors. During chronic dietary exposure to AlCl3, brain (Na(+)/K(+))ATPase activity drops, even if no alterations of catalytic subunit protein expression and of energy charge potential are observed. The aluminium effect on (Na(+)/K(+))ATPase activity seems to implicate the reduction of interacting protomers within the oligomeric ensemble of the membrane-bound (Na(+)/K(+))ATPase. The activity of (Na(+)/K(+))ATPase is altered by the microviscosity of lipid environment. We studied if aluminium inhibitory effect on (Na(+)/K(+))ATPase is modified by alterations in synaptosomal membrane cholesterol content. Adult male Wistar rats were submitted to chronic dietary AlCl3 exposure (0.03 g/day of AlCl3) and/or to colestipol, a hypolidaemic drug (0.31 g/day) during 4 months. The activity of (Na(+)/K(+))ATPase was studied in brain cortex synaptosomes with different cholesterol contents. Additionally, we incubate synaptosomes with methyl-β-cyclodextrin for both enrichment and depletion of membrane cholesterol content, with or without 300 μM AlCl3. This enzyme activity was significantly reduced by micromolar AlCl3 added in vitro and when aluminium was orally administered to rats. The oral administration of colestipol reduced the cholesterol content and concomitantly inhibited the (Na(+)/K(+))ATPase. The aluminium inhibitory effect on synaptosomal (Na(+)/K(+))ATPase was reduced by cholesterol depletion both in vitro and in vivo.
几位作者观察到铝具有抑制(Na(+)/K(+))ATPase 活性的能力。在慢性膳食暴露于 AlCl3 的情况下,大脑(Na(+)/K(+))ATPase 活性下降,即使没有观察到催化亚基蛋白表达和能量电荷势能的改变。铝对(Na(+)/K(+))ATPase 活性的影响似乎涉及到膜结合(Na(+)/K(+))ATPase 寡聚体中相互作用的亚基的减少。(Na(+)/K(+))ATPase 的活性受脂质环境微粘度的影响。我们研究了铝对(Na(+)/K(+))ATPase 的抑制作用是否因突触体膜胆固醇含量的改变而改变。成年雄性 Wistar 大鼠接受慢性膳食 AlCl3 暴露(每天 0.03 g AlCl3)和/或考来替泊(一种降脂药,每天 0.31 g)4 个月。(Na(+)/K(+))ATPase 的活性在皮质突触体中进行研究,这些突触体具有不同的胆固醇含量。此外,我们用甲基-β-环糊精孵育突触体,以增加和减少膜胆固醇含量,同时添加或不添加 300 μM AlCl3。这种酶的活性在体外添加微摩尔 AlCl3和口服给予大鼠时显著降低。考来替泊的口服给药降低了胆固醇含量,并同时抑制了(Na(+)/K(+))ATPase。在体外和体内,胆固醇耗竭均降低了铝对突触体(Na(+)/K(+))ATPase 的抑制作用。