Mitidieri F, de Meis L
Departamento de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Cidade Universitária, Brazil.
Biochem J. 1995 Dec 15;312 ( Pt 3)(Pt 3):733-7. doi: 10.1042/bj3120733.
The effects of ethanol on different sarco/endoplasmic reticulum Ca(2+)-transport ATPases (SERCAs) were studied. In sarcoplasmic reticulum vesicles, ethanol concentrations varying from 5 to 20% promoted a progressive inhibition of Ca2+ uptake, enhancement of Ca2+ efflux, activation of the ATPase activity, increase of the enzyme phosphorylation by ATP and inhibition of enzyme phosphorylation by P1. The effects of ethanol on Ca2+ uptake and Ca2+ efflux were antagonized by Mg2+, P(i) and spermine. The increased efflux promoted by ethanol was antagonized by Ca2+ and thapsigargin. In brain and platelet vesicles a biphasic effect of ethanol was observed, so that activation occurred at low concentrations (5-10%) and inhibition at higher concentrations. The activation was not observed with the use of n-propanol and n-butanol. Different from the situation in sarcoplasmic reticulum, the decrease of the Ca2+ uptake in brain and platelet vesicles was associated with an inhibition of the ATPase activity. Mg2+ and P(i) antagonized the enhancement of Ca2+ efflux and the inhibition of Ca2+ uptake promoted by ethanol. However, thapsigargin and Ca2+ did not arrest the Ca2+ efflux promoted by ethanol in brain and platelet preparations. These results suggest that, in sarcoplasmic reticulum vesicles, ethanol uncouples the pump, promoting its activity as a Ca2+ channel. The SERCA isoform found in skeletal muscle has different properties from the isoforms found in brain and blood platelets.
研究了乙醇对不同的肌浆网/内质网Ca(2+) - 转运ATP酶(SERCAs)的影响。在肌浆网囊泡中,乙醇浓度从5%到20%变化时,会逐渐抑制Ca2+摄取、增强Ca2+外流、激活ATP酶活性、增加ATP对酶的磷酸化作用以及抑制P1对酶的磷酸化作用。乙醇对Ca2+摄取和Ca2+外流的影响可被Mg2+、无机磷酸(P(i))和精胺拮抗。乙醇促进的外流增加可被Ca2+和毒胡萝卜素拮抗。在脑和血小板囊泡中观察到乙醇的双相效应,即低浓度(5 - 10%)时激活,高浓度时抑制。使用正丙醇和正丁醇未观察到激活现象。与肌浆网的情况不同,脑和血小板囊泡中Ca2+摄取的减少与ATP酶活性的抑制有关。Mg2+和P(i)拮抗乙醇促进的Ca2+外流增强和Ca2+摄取抑制。然而,毒胡萝卜素和Ca2+并不能阻止乙醇在脑和血小板制剂中促进的Ca2+外流。这些结果表明,在肌浆网囊泡中,乙醇使泵解偶联,促进其作为Ca2+通道的活性。在骨骼肌中发现的SERCA同工型与在脑和血小板中发现的同工型具有不同的特性。