Wright E M, van Os C H, Mircheff A K
Biochim Biophys Acta. 1980 Mar 27;597(1):112-24. doi: 10.1016/0005-2736(80)90155-8.
A high yield of membrane vesicles was prepared from the basolateral surface of rat intestinal cells using an N2 cavitation bomb and density gradient centrifugation. The membranes were enriched 10-fold and were free of significatn contamination by brush border membranes and mitochondria. The rate of D-E114C]glucose and L-E13H]glucose uptake into the vesicle was measured using a rapid filtration technique. D-Glucose equilibrated within the vesicles with a half-time 1/25th that for L-glucose. The stereospecific uptake exhibited saturation kinetics with a Km of approx. 44 mM and a V of approx. 110 nmol . mg-1 min-1 at 10 degrees C. The activation energy for the process was 14 kcal . mol-1 below 15 degrees C and it approached 3 kcal . mol-1 above 22 degrees C. Carrier-mediated uptake was eliminated in the presence of 1 mM HgCl2 and 0.5 mM phloretin. The rate of transport was unaffected by the absence or presence of sodium concentration gradients. Competition studies demonstrated that all sugars with the D-glucose pyranose ring chair conformation shared the transport system, and that, with the possible exception of the -OH group at carbon No. 1, there were no specific requirements for an equatorial -OH group at any position in the pyranose ring. In the case of alpha-methyl-D-glucoside its inability to share the D-glucose transport system may be due to steric hindrance posed by the -OCH3 group rather than by a specific requirement for a free hydroxyl group at the position in the ring. It is concluded that sugars are transported across the basolateral membrane of the intestinal epithelium by a facilitated diffusion system reminiscent of that in human red blood cells.
使用N2空化炸弹和密度梯度离心法,从大鼠肠道细胞的基底外侧表面制备了高产率的膜囊泡。膜得到了10倍的富集,且没有刷状缘膜和线粒体的明显污染。使用快速过滤技术测量了囊泡对D-[14C]葡萄糖和L-[13H]葡萄糖的摄取速率。D-葡萄糖在囊泡内达到平衡的半衰期是L-葡萄糖的1/25。立体特异性摄取表现出饱和动力学,在10℃时Km约为44 mM,V约为110 nmol·mg-1·min-1。该过程在15℃以下的活化能为14 kcal·mol-1,在22℃以上接近3 kcal·mol-1。在1 mM HgCl2和0.5 mM根皮素存在的情况下,载体介导的摄取被消除。运输速率不受钠浓度梯度存在与否的影响。竞争研究表明,所有具有D-葡萄糖吡喃糖环椅式构象的糖都共享运输系统,并且除了1号碳上的-OH基团外,吡喃糖环上任何位置的赤道-OH基团都没有特定要求。就α-甲基-D-葡萄糖苷而言,其不能共享D-葡萄糖运输系统可能是由于-OCH3基团造成的空间位阻,而不是由于环中该位置对游离羟基的特定要求。得出的结论是,糖类通过类似于人类红细胞中的易化扩散系统跨肠道上皮细胞的基底外侧膜运输。