Schron C M, Washington C, Blitzer B L
J Clin Invest. 1985 Nov;76(5):2030-3. doi: 10.1172/JCI112205.
In rabbit jejunal, but not ileal brush border membrane vesicles, an outwardly directed OH- gradient (pH 7.7 inside, pH 5.5 outside) markedly stimulated the initial velocity of folate (0.1 microM) uptake compared with uptake in the absence of a pH gradient. Under pH gradient conditions, folate was transiently accumulated at a concentration four times that found at equilibrium (over-shoot), implying uphill transport of the vitamin. Equilibrium folate uptake was inversely proportional to medium osmolality, suggesting uptake into an osmotically sensitive space. pH gradient-stimulated folate uptake was markedly reduced by inhibitors of anion exchange (4,4'-diisothiocyano-2,2'-disulfonic acid stilbene; 4-acetamido-4-isothiocyanostilbene-2,2'-disulfonic acid; furosemide), and was saturable (folate Km = 0.19 +/- 0.02 microM; Vmax = 12.8 +/- 0.4 pmol X mg protein-1 X min-1). Imposition of an inside-positive electrical potential did not stimulate folate uptake, suggesting that stimulation by a pH gradient was not due to an induced electrical potential. In contrast, an inwardly directed Na+ or K+ gradient did not stimulate folate uptake. These findings provide evidence for a carrier on the jejunal brush border membrane that mediates folate/OH- exchange (or H+/folate co-transport), and are consonant with the known presence of an outwardly directed OH- gradient in vivo (brush border acid microclimate), an acidic pH optimum for intestinal folate uptake, and the primary role of the jejunum in folate absorption.
在兔空肠而非回肠的刷状缘膜囊泡中,与无pH梯度时的叶酸摄取相比,外向性OH -梯度(内部pH 7.7,外部pH 5.5)显著刺激了叶酸(0.1微摩尔)摄取的初始速率。在pH梯度条件下,叶酸会短暂积累至平衡浓度的四倍(超射),这意味着该维生素的上坡转运。平衡叶酸摄取与培养基渗透压呈反比,提示摄取进入一个对渗透压敏感的空间。pH梯度刺激的叶酸摄取被阴离子交换抑制剂(4,4'-二异硫氰基-2,2'-二磺酸芪;4-乙酰氨基-4-异硫氰基芪-2,2'-二磺酸;速尿)显著降低,且具有饱和性(叶酸Km = 0.19 ± 0.02微摩尔;Vmax = 12.8 ± 0.4皮摩尔×毫克蛋白-1×分钟-1)。施加内向正电势并未刺激叶酸摄取,这表明pH梯度的刺激并非由于诱导的电势。相反,内向性Na+或K+梯度并未刺激叶酸摄取。这些发现为存在于空肠刷状缘膜上介导叶酸/OH -交换(或H+/叶酸共转运)的载体提供了证据,并且与体内已知的外向性OH -梯度(刷状缘酸性微环境)、肠道叶酸摄取的最适酸性pH以及空肠在叶酸吸收中的主要作用相一致。