Hamid Abid, Kaur Jyotdeep
Department of Biochemistry, Postgraduate Institute of Medical Education and Research, Sector 12, Chandigarh, India.
Alcohol. 2007 Sep;41(6):441-6. doi: 10.1016/j.alcohol.2007.05.002.
The folic acid transport across epithelial cell membrane of the intestine is an essential step for its absorption, conservation, and homeostasis in the body. In this study, we sought to examine the kinetics of binding to intestinal brush border membrane (BBM) considering intestinal malabsorption as the major contributing factor to alcohol-induced folate deficiency. Male Wistar rats were fed 1g/kg body weight/day ethanol (20% solution) orally for 3 months. We studied [(3)H]-folic acid binding to the intestinal BBM and acidic pH-dependent binding was observed to be associated with reduced maximal binding (B(max)) in chronic ethanol-fed group. However, under such conditions, there was no significant effect of ethanol ingestion on K(d) and pH optimum of the binding process. Increasing the osmolarity at pH 5.5 had no effect on the binding of folate to BBM, thus confirming that the observed changes in B(max) values were due to site-specific binding to the extravesicular sites. Importantly, ethanol ingestion disturbs the S-S status at the binding site besides interfering with the Na(+) and divalent cation dependency of the binding process. These results highlight the possible mechanism of folate malabsorption at primary absorptive site during alcoholism.
叶酸穿过肠道上皮细胞膜的转运是其在体内吸收、保存和维持稳态的关键步骤。在本研究中,鉴于肠道吸收不良是酒精性叶酸缺乏的主要促成因素,我们试图研究叶酸与肠刷状缘膜(BBM)结合的动力学。将雄性Wistar大鼠每日经口给予1g/kg体重的乙醇(20%溶液),持续3个月。我们研究了[³H] - 叶酸与肠BBM的结合情况,观察到在慢性乙醇喂养组中,酸性pH依赖性结合与最大结合量(Bmax)降低有关。然而,在此条件下,乙醇摄入对结合过程的解离常数(Kd)和最适pH没有显著影响。在pH 5.5时增加渗透压对叶酸与BBM的结合没有影响,从而证实观察到的Bmax值变化是由于与细胞外位点的特异性结合所致。重要的是,乙醇摄入除了干扰结合过程对Na⁺和二价阳离子的依赖性外,还会扰乱结合位点的S - S状态。这些结果突出了酒精中毒时主要吸收部位叶酸吸收不良的可能机制。