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不稳定锌(II)在肾脏和MDCK细胞中的细胞内分布及锌转运体表达

Intracellular distribution of labile Zn(II) and zinc transporter expression in kidney and MDCK cells.

作者信息

Ranaldi Giulia, Perozzi Giuditta, Truong-Tran Ai, Zalewski Peter, Murgia Chiara

机构信息

Instituto Nazionale de Ricerca per gli Alimenti e la Nutrizione, 00178 Rome, Italy.

出版信息

Am J Physiol Renal Physiol. 2002 Dec;283(6):F1365-75. doi: 10.1152/ajprenal.00094.2002. Epub 2002 Aug 13.

Abstract

Kidneys play a key role in zinc balance. The portion of Zn(II) that enters the glomerular filtrate is efficiently reabsorbed along the nephron through a mechanism yet to be identified. We used the Zn(II)-specific fluorophore Zinquin to visualize intracellular Zn(II) accumulated in the kidney epithelium and compared it with the intracellular localization of the vesicular zinc transporter ZnT4 both in vivo and in vitro. The Madin-Darby canine kidney (MDCK) cell line, stably overexpressing rat ZnT4, was used as a tissue culture model of the kidney epithelium. Zinquin labeling of MDCK cells revealed rapid internalization of Zn(II) and compartmentalization in intracellular bodies interspersed throughout the cytoplasm. In polarized kidney cells, ZnT4 protein was localized on the membrane of intracellular vesicles concentrated around the nucleus, mostly on the basal side. Results of double stainings demonstrated that ZnT4-containing vesicles do not overlap with Zn(II) bodies. Zinquin fluorescence, confirmed by autometallography in rat kidney, indicated that consistent with its physiological role, the central glomerulus was weakly stained, whereas the epithelium that lines convoluted tubules was strongly labeled. Double staining of rat kidney with Zinquin and anti-ZnT4 antibodies confirmed the in vitro observations, as Zinquin fluorescence appeared to be distinct from ZnT4 immunofluorescence. To gain further insight into which of the known zinc transporters might be involved in Zn(II) metabolism in the kidney, we have also characterized by RT-PCR the expression of other proteins involved in Zn(II) transport. All of the mRNAs examined [ZnT1, -T2, -T4, and human Zrt, Irt-like protein 1 (hZIP1)], with the exception of hZIP2, were present in adult rat kidney.

摘要

肾脏在锌平衡中起关键作用。进入肾小球滤液的锌离子(Zn(II))部分通过一种尚未明确的机制沿肾单位被有效重吸收。我们使用锌离子特异性荧光团锌喹来观察在肾上皮细胞中积累的细胞内锌离子,并在体内和体外将其与囊泡锌转运体ZnT4的细胞内定位进行比较。稳定过表达大鼠ZnT4的Madin-Darby犬肾(MDCK)细胞系被用作肾上皮细胞的组织培养模型。MDCK细胞的锌喹标记显示锌离子迅速内化并分隔在散布于整个细胞质中的细胞内小体中。在极化的肾细胞中,ZnT4蛋白定位于围绕细胞核聚集的细胞内囊泡膜上,主要位于基底侧。双重染色结果表明,含ZnT4的囊泡与锌离子小体不重叠。大鼠肾脏中的自动金相术证实了锌喹荧光,表明与其生理作用一致,肾小球中央染色较弱,而曲管内衬的上皮细胞染色强烈。用锌喹和抗ZnT4抗体对大鼠肾脏进行双重染色证实了体外观察结果,因为锌喹荧光似乎与ZnT4免疫荧光不同。为了进一步深入了解哪些已知的锌转运体可能参与肾脏中的锌离子代谢,我们还通过逆转录聚合酶链反应(RT-PCR)对参与锌离子转运的其他蛋白质的表达进行了表征。除了hZIP2外,所有检测的mRNA [ZnT1、-T2、-T4和人类锌调节转运蛋白、铁调节转运蛋白样蛋白1(hZIP1)] 在成年大鼠肾脏中均有表达。

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