Burlando B, Bonomo M, Caprì F, Mancinelli G, Pons G, Viarengo A
Dipartimento di Scienze dell'Ambiente e della Vita, Università del Piemonte Orientale "A. Avogadro", Via Bellini 25 G, 15100 Alessandria, Italy.
Comp Biochem Physiol C Toxicol Pharmacol. 2004 Dec;139(4):201-7. doi: 10.1016/j.cca.2004.11.001.
Deregulation of Ca2+ homeostasis can produce serious effects on cell functioning due to an alteration of Ca2+ signaling. The aim of this study was to evaluate variations in plasma membrane Ca2+-ATPase (PMCA) induced in mussels by in vivo exposure to Cu2+ or Hg2+. PMCA activity was assayed using a cytochemical method allowing localization and in situ quantification of Ca2+-ATPase on cryostat tissue sections. The effects of fixed concentrations of Cu2+ (0.6 microM) or Hg2+ (1.3 microM) were evaluated after different times of exposure (1, 4, 6 days), while those of increasing amounts of Cu2+ (0.3, 0.6, 1.3 microM) or of Hg2+ (0.6, 1.3, 2.4 microM) were evaluated after 4 days. Cu2+ produces dose-dependent inhibition of PMCA in the digestive gland, with a minimum at the fourth day of treatment and a recovery at the sixth day. Conversely, Hg2+ induces a significant rise of PMCA activity, with a maximum at the fourth day. Similar results have been found after biochemical assay of PMCA, using plasma membranes obtained from density-gradient separation of gill homogenates. PMCA expression has been assessed by immunoprecipitation and Western immunoblotting on digestive gland homogenates, showing an induction after exposure to Hg2+ but not to Cu2+. In conclusion, Cu2+ does not vary PMCA expression but reduces PMCA activity, indicating PMCA inhibition; conversely, Hg2+ increases PMCA expression more than PMCA activity, suggesting that it also produces PMCA inhibition, but the induction of PMCA expression leads to a net increase in enzyme activity.
由于Ca2+信号的改变,Ca2+稳态的失调会对细胞功能产生严重影响。本研究的目的是评估贻贝在体内暴露于Cu2+或Hg2+后诱导的质膜Ca2+-ATP酶(PMCA)的变化。使用细胞化学方法测定PMCA活性,该方法可对低温恒温器组织切片上的Ca2+-ATP酶进行定位和原位定量。在不同暴露时间(1、4、6天)后评估固定浓度的Cu2+(0.6微摩尔)或Hg2+(1.3微摩尔)的影响,而在4天后评估增加量的Cu2+(0.3、0.6、1.3微摩尔)或Hg2+(0.6、1.3、2.4微摩尔)的影响。Cu2+对消化腺中的PMCA产生剂量依赖性抑制,在治疗第四天达到最小值,第六天恢复。相反,Hg2+诱导PMCA活性显著升高,在第四天达到最大值。使用从鳃匀浆密度梯度分离获得的质膜对PMCA进行生化测定后也发现了类似结果。通过对消化腺匀浆进行免疫沉淀和Western免疫印迹评估PMCA表达,结果显示暴露于Hg2+后有诱导作用,但暴露于Cu2+后没有。总之,Cu2+不会改变PMCA表达,但会降低PMCA活性,表明存在PMCA抑制;相反,Hg2+增加PMCA表达的程度超过PMCA活性,这表明它也会产生PMCA抑制,但PMCA表达的诱导导致酶活性净增加。