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镉对参与鱼类肠道钙吸收的基底外侧质膜蛋白的作用。

Actions of cadmium on basolateral plasma membrane proteins involved in calcium uptake by fish intestine.

作者信息

Schoenmakers T J, Klaren P H, Flik G, Lock R A, Pang P K, Bonga S E

机构信息

Department of Animal Physiology, Faculty of Science, University of Nijmegen, The Netherlands.

出版信息

J Membr Biol. 1992 May;127(3):161-72. doi: 10.1007/BF00231504.

Abstract

The inhibition of Ca(2+)-ATPase, (Na+ + K+)-ATPase and Na+/Ca2+ exchange by Cd2+ was studied in fish intestinal basolateral plasma membrane preparations. ATP driven 45Ca2+ uptake into inside-out membrane vesicles displayed a Km for Ca2+ of 88 +/- 17 nM, and was extremely sensitive to Cd2+ with an IC50 of 8.2 +/- 3.0 pM Cd2+, indicating an inhibition via the Ca2+ site. (Na+ + K+)-ATPase activity was half-maximally inhibited by micromolar amounts of Cd2+, displaying an IC50 of 2.6 +/- 0.6 microM Cd2+. Cd2+ ions apparently compete for the Mg2+ site of the (Na+ + K+)-ATPase. The Na+/Ca2+ exchanger was inhibited by Cd2+ with an IC50 of 73 +/- 11 nM. Cd2+ is a competitive inhibitor of the exchanger via an interaction with the Ca2+ site (Ki = 11 nM). Bepridil, a Na+ site specific inhibitor of Na+/Ca2+ exchange, induced an additional inhibition, but did not change the Ki of Cd2+. Also, Cd2+ is exchanged against Ca2+, albeit to a lesser extent than Ca2+. The exchanger is only partly blocked by the binding of Cd2+. In vivo cadmium that has entered the enterocyte may be shuttled across the basolateral plasma membrane by the Na+/Ca2+ exchanger. We conclude that intracellular Cd2+ ions will inhibit plasma membrane proteins predominantly via a specific interaction with divalent metal ion sites.

摘要

在鱼类肠基底外侧质膜制剂中研究了Cd2+对Ca(2+)-ATP酶、(Na+ + K+)-ATP酶和Na+/Ca2+交换的抑制作用。ATP驱动的45Ca2+摄入内翻膜囊泡显示对Ca2+的Km为88±17 nM,并且对Cd2+极其敏感,IC50为8.2±3.0 pM Cd2+,表明通过Ca2+位点产生抑制作用。(Na+ + K+)-ATP酶活性被微摩尔量的Cd2+半最大抑制,IC50为2.6±0.6 μM Cd2+。Cd2+离子显然竞争(Na+ + K+)-ATP酶的Mg2+位点。Na+/Ca2+交换体被Cd2+抑制,IC50为73±11 nM。Cd2+通过与Ca2+位点相互作用是交换体的竞争性抑制剂(Ki = 11 nM)。苄普地尔,一种Na+/Ca2+交换的Na+位点特异性抑制剂,诱导了额外的抑制作用,但没有改变Cd2+的Ki。此外,Cd2+与Ca2+进行交换,尽管程度小于Ca2+。交换体仅被Cd2+的结合部分阻断。进入肠上皮细胞的体内镉可能通过Na+/Ca2+交换体穿梭穿过基底外侧质膜。我们得出结论,细胞内Cd2+离子将主要通过与二价金属离子位点的特异性相互作用抑制质膜蛋白。

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