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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Differential effect of imipramine and related compounds on Mg2+ efflux from rat erythrocytes
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Differential effect of imipramine and related compounds on Mg2+ efflux from rat erythrocytes

机译:丙咪嗪和相关化合物对大鼠红细胞Mg2 +外排的差异作用

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摘要

The effect of imipramine on Mg2+ efflux in NaCl medium (Na+/Mg2+ antiport), on Mg2+ efflux in choline . Cl medium (choline/Mg2+ antiport) and on Mg2+ efflux in sucrose medium (Cl--coupled Mg2+ efflux) was investigated in rat erythrocytes. In non-Mg2+-loaded rat erythrocytes, imipramine stimulated Na+/Mg2+ antiport but inhibited choline/Mg2+ antiport and Cl--coupled Mg2+ efflux. The same effect could be obtained by several other compounds structurally related to imipramine. These drugs contain a cyclic hydrophobic ring structure to which a four-membered secondary or tertiary amine side chain is attached. At a physiological pH, the amine side chain expresses a cationic choline-like structure. The inhibitory effect on choline/Mg2+ antiport is lost when the amine side chain is modified or abandoned, pointing to competition of the choline-like side chain with choline or another cation at the unspecific choline antiporter or at the Cl-coupled Mg2+ efflux. Other related drugs either stimulated Na+/Mg2+ antiport and choline/Mg2+ antiport, or they were ineffective. For stimulation of Na+/ Mg2+ antiport and choline/Mg2+ antiport, there is no specific common structural motif of the drugs tested. The effects of imipramine on Na+/ Mg-2+ antiport and choline/Mg2+ antiport are not mediated by PKCalpha but are caused by a direct reaction of imipramine with these transporters. By increasing the intracellular Mg2+ concentration, the stimulation of Na+/Mg2+ antiport at a physiological intracellular Mg2+ concentration changed to an inhibition of Na+/Mg2+ antiport. This effect can be explained by the hypothesis that Mg2+ loading induced an allosteric transition of the Mg2+/Mg2+ exchanger with low Na+/Mg2+ antiport capacity to the Na+/Mg2+ antiporter with high Na+/Mg2+ antiport capacity. Both forms of the Mg2+ exchanger may be differently affected by imipramine. (C) 2004 Elsevier B.V. All rights reserved.
机译:丙咪嗪对NaCl介质中Na + / Mg 2+反端口的Mg 2+外排,胆碱中Mg 2+外排的影响。在大鼠红细胞中研究了Cl培养基(胆碱/ Mg2 +反向转运)和蔗糖培养基中Mg2 +的流出(Cl耦合的Mg2 +流出)。在未加载Mg2 +的大鼠红细胞中,丙咪嗪可刺激Na + / Mg2 +的反转运,但会抑制胆碱/ Mg2 +的反转运和Cl耦合的Mg2 +的外排。通过与丙咪嗪结构上相关的其他几种化合物可以获得相同的效果。这些药物包含环状疏水环结构,四元仲胺或叔胺侧链连接到该疏水环上。在生理pH下,胺侧链表达阳离子胆碱样结构。当胺侧链被修饰或放弃时,对胆碱/ Mg2 +反转运蛋白的抑制作用丧失,表明胆碱样侧链与胆碱或另一种阳离子在非特异性胆碱反转运蛋白或Cl偶联的Mg2 +外排中竞争。其他相关药物要么刺激Na + / Mg2 +反向转运和刺激胆碱/ Mg2 +反向转运,要么无效。对于刺激Na + / Mg2 +反向转运和胆碱/ Mg2 +反向转运,所测试药物没有特定的常见结构基序。丙咪嗪对Na + / Mg-2 +反向转运和胆碱/ Mg2 +反向转运的作用不是由PKCalpha介导,而是由丙咪嗪与这些转运蛋白的直接反应引起的。通过增加细胞内Mg2 +的浓度,在生理细胞内Mg2 +浓度下对Na + / Mg2 +反向转运蛋白的刺激变为对Na + / Mg2 +反向转运蛋白的抑制。可以通过以下假设来解释这种效果:Mg2 +负载导致具有低Na + / Mg2 +反向转运能力的Mg2 + / Mg2 +交换剂向具有高Na + / Mg2 +反向转运能力的Na + / Mg2 +反向转运蛋白的变构转变。丙咪嗪可能会同时影响两种形式的Mg2 +交换剂。 (C)2004 Elsevier B.V.保留所有权利。

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