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首页> 外文期刊>Archives of Toxicology >Similar effects of cis-diamminedichloroplatinum(II) and cis-diammine-1,1-cyclobutanedicarboxylatoplatinum(II) on sodium-coupled glucose uptake in renal brush-border membrane vesicles.
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Similar effects of cis-diamminedichloroplatinum(II) and cis-diammine-1,1-cyclobutanedicarboxylatoplatinum(II) on sodium-coupled glucose uptake in renal brush-border membrane vesicles.

机译:顺式二氨基二氯铂(II)和顺式二氨基-1,1-环丁烷二羧基铂(II)对肾刷状边界膜囊泡中钠耦合葡萄糖摄取的相似作用。

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cis-Diamminedichloroplatinum(II) (cDDP) has been shown to interfere with reabsorption processes in renal tubular epithelia, leading to polyuria, magnesium and sodium wasting and glucosuria. cDDP inhibits the Na+-coupled uptake of methyl-alpha-D-glucopyranoside (MGP) in renal proximal tubular cells in primary culture. cis-Diammine-1,1-cyclobutane dicarboxylatoplatinum(II) (CBDCA) produces tubular injury qualitatively similar to that of cDDP with a reduced severity. CBDCA inhibits Na+-coupled MGP uptake in renal proximal tubular cells in primary culture at concentrations 20- to 30-times higher than those of cDDP. The Na+/glucose cotransport protein possesses sulphydryl groups (SH) essential for its activity. Platinum complexes have strong affinity for SH groups. We compared the direct effects of cDDP (0.04-1.0 mM) and CBDCA (1-30 mM) on Na+-coupled MGP uptake in rabbit renal brush-border membrane (BBM) vesicles. cDDP and CBDCA inhibited Na+-coupled MGP uptake in a concentration-dependent manner, mainly through a decrease in Vmax of the cotransport protein. These effects were associated with platinum binding to BBM and decreases in protein-bound SH groups. CBDCA altered Na+-coupled MGP uptake at concentrations 30-times higher than those of cDDP. When BBM vesicles were preincubated with cDDP or CBDCA, diethyldithiocarbamate (an antidote against cDDP-induced nephrotoxicity) partly restored Na+-coupled MGP uptake and reduced the amount of platinum bound to BBM, but did not restore protein-bound SH groups. These findings strongly suggest that the inhibition of Na+-coupled MGP uptake by cDDP and CBDCA is mainly mediated by direct chemical binding of platinum to essential SH groups of the cotransport protein but may also involve other nucleophilic groups, such as the SCH3 group of methionine residues.
机译:顺式-二氨基二氯铂(II)(cDDP)已显示出干扰肾小管上皮细胞的重吸收过程,从而导致多尿,镁和钠的浪费和糖尿。 cDDP在原代培养的肾近端肾小管细胞中抑制Na +偶联的甲基-α-D-吡喃葡萄糖苷(MGP)的摄取。顺式-二氨基-1,1-环丁烷二羧基铂(II)(CBDCA)在性质上类似于cDDP所产生的肾小管损伤,但严重程度降低。 CBDCA抑制原代培养的肾近端肾小管中Na +偶联的MGP摄取,其浓度比cDDP高20至30倍。 Na + /葡萄糖共转运蛋白具有对其活性必不可少的巯基(SH)。铂络合物对SH基团具有很强的亲和力。我们比较了cDDP(0​​.04-1.0 mM)和CBDCA(1-30 mM)对兔肾刷状边界膜(BBM)囊中Na +偶联的MGP摄取的直接影响。 cDDP和CBDCA主要通过共转运蛋白的Vmax降低,以浓度依赖的方式抑制Na +偶联的MGP摄取。这些作用与铂结合到BBM以及蛋白结合的SH基团减少有关。 CBDCA改变了Na +偶联的MGP的摄取,其浓度比cDDP高30倍。当将BBM囊泡与cDDP或CBDCA预孵育时,二乙基二硫代氨基甲酸酯(一种对抗cDDP诱导的肾毒性的解毒剂)部分恢复了Na +偶联的MGP的吸收并减少了与BBM结合的铂的量,但没有恢复与蛋白质结合的SH基团。这些发现强烈表明,cDDP和CBDCA抑制Na +偶联的MGP摄取主要是通过铂与共转运蛋白的必需SH基团直接化学结合来介导的,但也可能涉及其他亲核基团,例如蛋氨酸残基的SCH3基团。

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