Hamid Abid, Kaur Jyotdeep
Department of Biochemistry, Postgraduate Institute of Medical Education and Research, Chandigarh, India.
Mol Cell Biochem. 2005 Dec;280(1-2):219-25. doi: 10.1007/s11010-005-0166-0.
The binding of folic acid to the plasma membrane is an important event for its reabsorption and conservation by renal epithelium. We studied [3H] folic acid binding to the renal cortical brush border membrane vesicles (BBMV) in rats after 12 weeks of chronic ethanol ingestion. Our results demonstrated that after chronic ethanol intake, the binding of folic acid to the membrane vesicles: (1) was decreased by a mechanism that decreased B(max) without affecting K(d), (2) was insensitive to Na+ ions in the medium (3) behaved differently to divalent cations in the medium in contrast to control group. However under such conditions there was no significant effect of ethanol on pH optimum of the process. Binding was reduced at pH less than 6 but there was no effect of ethanol on binding in pH range from 6 to 8. Increasing the osmolarity at pH 5.5 had no effect on the binding of folate to BBMV, thus confirming that the observed changes in B(max) values were due to site-specific binding in the two groups. Moreover, ethanol does not impart its effect on involvement of sulfhydryl group at the binding site of folate transport system. These findings highlight the possible mechanism of perturbed renal conservation of folate during chronic alcoholism.
叶酸与质膜的结合对于其被肾上皮细胞重吸收和保存来说是一个重要事件。我们研究了慢性乙醇摄入12周后大鼠肾皮质刷状缘膜囊泡(BBMV)对[3H]叶酸的结合情况。我们的结果表明,慢性乙醇摄入后,叶酸与膜囊泡的结合:(1)通过一种降低B(max)而不影响K(d)的机制而减少;(2)对培养基中的Na+离子不敏感;(3)与对照组相比,对培养基中二价阳离子的反应不同。然而,在这种情况下,乙醇对该过程的最适pH没有显著影响。在pH小于6时结合减少,但在pH 6至8范围内乙醇对结合没有影响。在pH 5.5时增加渗透压对叶酸与BBMV的结合没有影响,从而证实观察到的B(max)值变化是由于两组中位点特异性结合所致。此外,乙醇对叶酸转运系统结合位点处巯基的参与没有影响。这些发现突出了慢性酒精中毒期间叶酸肾保存受到干扰的可能机制。