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首页> 外文期刊>American Journal of Physiology >Effect of pH on L- and D-methionine uptake across the apical membrane of Caco-2 cells.
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Effect of pH on L- and D-methionine uptake across the apical membrane of Caco-2 cells.

机译:pH值对Caco-2细胞顶膜中L-和D-蛋氨酸摄取的影响。

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The transport systems involved in intestinal methionine (Met) absorption are described as Na(+)-dependent and Na(+)-independent mechanisms. However, since recent studies have suggested the importance of the H(+) gradient as a driving force for intestinal nutrient absorption, the aim of the present work was to test whether Met transport across the apical membrane of Caco-2 cells is affected by extracellular pH. The results show that l- and d-Met uptake was increased by lowering extracellular pH from 7.4 to 5.5, in both the presence and absence of Na(+). Cis-inhibition experiments revealed that inhibition of l-Met transport by 2-aminobicyclo[2,2,1]heptane-2-carboxylic acid (BCH) or l-lysine (l-Lys) was higher at a pH of 5.5. Moreover, the BCH-insensitive component was not affected by pH, whereas the l-Lys-insensitive component was increased by lowering extracellular pH, thus suggesting the participation of system L. The contribution of another mechanism, sensitive to both BCH and l-Lys, was also considered. The inhibition obtained with taurine (Tau) was also higher at a pH of 5.5, thus suggesting the involvement of system B(0,+) on pH-stimulated component. As for d-Met uptake, the results showed higher inhibition with l-Lys and Tau at a pH of 5.5 and no effect on the l-Lys- or Tau-insensitive component. In conclusion, Met transport across the apical membrane of Caco-2 cells is increased by low extracellular pH as the result of the stimulation of two transport systems functionally identified with systems L and B(0,+) for l-Met and with system B(0,+) for d-Met.
机译:参与肠蛋氨酸(Met)吸收的运输系统被描述为依赖Na(+)和Na(+)的机制。但是,由于最近的研究表明H(+)梯度作为肠道营养吸收的驱动力的重要性,所以本研究的目的是测试跨细胞Caco-2顶膜的Met转运是否受细胞外影响pH值结果表明,在存在和不存在Na(+)的情况下,通过将细胞外pH从7.4降低到5.5,都会增加l-和d-Met的摄取。顺式抑制实验表明2-氨基双环[2,2,1]庚烷-2-羧酸(BCH)或1-赖氨酸(1-Lys)对L-Met的抑制作用在pH为5.5时更高。此外,对BCH不敏感的组分不受pH的影响,而对L-Lys不敏感的组分则通过降低细胞外pH值而增加,从而表明系统L的参与。对BCH和L-Lys敏感的另一种机制的贡献,也被考虑。在pH为5.5时,用牛磺酸(Tau)获得的抑制作用也更高,因此表明系统B(0,+)参与了pH刺激的组分。至于d-Met的摄取,结果显示在pH为5.5时,对I-Lys和Tau的抑制作用更高,并且对不对I-Lys或Tau不敏感的组分产生影响。总之,由于刺激了两个功能上被识别为L-Met的系统L和B(0,+)以及系统B的运输系统,低的细胞外pH值增加了跨Caco-2细胞顶膜的Met运输。 (0,+)对于d-Met。

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