首页> 外文期刊>American Journal of Physiology >Biotin uptake by human proximal tubular epithelial cells: cellular and molecular aspects.
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Biotin uptake by human proximal tubular epithelial cells: cellular and molecular aspects.

机译:人类近端肾小管上皮细胞对生物素的吸收:细胞和分子方面。

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摘要

Cellular and molecular regulation of renal biotin uptake in humans is not well defined. The contribution of the human Na(+)-dependent multivitamin transporter (hSMVT) to carrier-mediated biotin uptake by human proximal tubular epithelial cells is not clear. The aim of this study was to address these issues, with the human-derived proximal tubular epithelial HK-2 cells used as a model. First, we characterized the mechanism of biotin uptake by these cells and obtained evidence for involvement of an Na(+)-, temperature-, and energy-dependent carrier-mediated uptake system. This system was inhibited by the biotin structural analog desthiobiotin, pantothenic acid, and lipoate. These findings suggest involvement of the hSMVT system in the uptake process. This was confirmed by demonstrating that the hSMVT system is expressed in HK-2 cells at the protein and mRNA levels and by selective silencing of the hSMVT gene with the use of gene-specific small interfering RNAs, which led to specific and significant inhibition of carrier-mediated biotin uptake. Of the two recently cloned promoters of the hSMVT gene, promoter 1 was more active than promoter 2 in these cells. Pretreatment of HK-2 cells with modulators of PKC- and Ca(2+)/calmodulin-mediated pathways (but not those that modulate PKA-, protein tyrosine kinase-, or nitric oxide-mediated pathways) led to significant alterations in biotin uptake. Maintaining the HK-2 cells in a biotin-deficient growth medium led to a marked upregulation in biotin transport, which was associated with an increase in hSMVT protein and RNA levels and an increase in activity of the hSMVT promoters. These results demonstrate that biotin uptake by human renal epithelial cells occurs via the hSMVT system and that the process is regulated by intracellular PKC- and Ca(2+)/calmodulin-mediated pathways. The uptake process appears to be adaptively regulated by extracellular biotin level, which involves transcriptional regulatory mechanism(s).
机译:人体对肾脏生物素摄取的细胞和分子调控尚不清楚。人类Na(+)依赖的多种维生素转运蛋白(hSMVT)对人类近端肾小管上皮细胞对载体介导的生物素摄取的贡献尚不清楚。这项研究的目的是使用人类衍生的近端肾小管上皮HK-2细胞作为模型来解决这些问题。首先,我们表征了这些细胞摄取生物素的机制,并获得了涉及Na(+)-,温度和能量依赖的载体介导的摄取系统的证据。该系统被生物素结构类似物去硫生物素,泛酸和硫辛酸酯抑制。这些发现表明hSMVT系统参与了摄取过程。通过证实hSMVT系统在HK-2细胞中以蛋白质和mRNA水平表达,并通过使用基因特异性小干扰RNA选择性沉默hSMVT基因,从而证实对载体的特异性和显着抑制,证实了这一点。介导的生物素摄取。在hSMVT基因的两个最近克隆的启动子中,启动子1在这些细胞中比启动子2更有活性。 HK-2细胞用PKC-和Ca(2 +)/钙调蛋白介导的通路(但不是调节PKA,蛋白酪氨酸激酶或一氧化氮介导的通路)的调节剂预处理导致生物素摄取的显着改变。将HK-2细胞维持在生物素缺乏型生长培养基中会导致生物素转运明显上调,这与hSMVT蛋白和RNA水平的增加以及hSMVT启动子活性的增加有关。这些结果表明人类肾上皮细胞通过hSMVT系统摄取生物素,并且该过程受细胞内PKC-和Ca(2 +)/钙调蛋白介导的途径调节。摄取过程似乎受到细胞外生物素水平的适应性调节,这涉及转录调节机制。

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