Misfeldt D S, Sanders M J
J Membr Biol. 1982;70(3):191-8. doi: 10.1007/BF01870562.
The renal cell line LLC-PK1 cultured on a membrane filter forms a functional epithelial tissue. This homogeneous cell population exhibits rheogenic Na-dependent D-glucose coupled transport. The short-circuit current (Isc) was accounted for by net apical-to-basolateral D-glucose coupled Na flux, which was 0.53 +/- 0.09(8) mueq cm-2hr-1, and Isc, 0.50 +/- 0.50(8) mueq cm-2hr-1. A linear plot of concurrent net Na vs. net D-glucose apical-to-basolateral fluxes a gave a regression coefficient of 2.08. As support for a 2:1 transepithelial stoichiometry, sodium was added in the presence of D-glucose and the response of Isc analyzed by a Hill plot. A slope of 2.08 +/- 0.06(5) was obtained confirming a requirement of 2 Na for 1 D-glucose coupled transport. A Hill plot of Isc increase to added D-glucose in the presence of Na gave a slope of 1.02 +/- 0.02(5). A direct determination of the initial rates of Na and D-glucose translocation across the apical membrane using phlorizin, a nontransported glycoside competitive inhibitor to identify the specific coupled uptake, gave a stoichiometry of 2.2. A coupling ratio of 2 for Na, D-glucose uptake, doubles the potential energy available for Na-gradient coupled D-glucose transport. In contrast to coupled uptake, the stoichiometry for Na-dependent-phlorizin binding was 1.1 +/- 0.1(8) from Hill plot analyses of Na-dependent-phlorizin binding as a function of [Na].(ABSTRACT TRUNCATED AT 250 WORDS)
在膜滤器上培养的肾细胞系LLC-PK1形成功能性上皮组织。这个同质细胞群体表现出与钠相关的生电D-葡萄糖偶联转运。短路电流(Isc)由从顶端到基底外侧的净D-葡萄糖偶联钠通量引起,其为0.53±0.09(8)微当量·厘米⁻²·小时⁻¹,而Isc为0.50±0.50(8)微当量·厘米⁻²·小时⁻¹。同时测定的从顶端到基底外侧的净钠通量与净D-葡萄糖通量的线性图给出回归系数为2.08。为支持2:1的跨上皮化学计量关系,在D-葡萄糖存在下添加钠,并通过希尔图分析Isc的响应。得到斜率为2.08±0.06(5),证实1个D-葡萄糖偶联转运需要2个钠。在钠存在下Isc对添加的D-葡萄糖增加的希尔图给出斜率为1.02±0.02(5)。使用根皮苷(一种非转运糖苷竞争性抑制剂)直接测定钠和D-葡萄糖跨顶端膜的初始转运速率以鉴定特异性偶联摄取,得到化学计量比为2.2。钠、D-葡萄糖摄取的偶联比为2,使可用于钠梯度偶联D-葡萄糖转运的势能加倍。与偶联摄取相反,根据对钠依赖性根皮苷结合作为[Na]的函数进行希尔图分析,钠依赖性根皮苷结合的化学计量比为1.1±0.1(8)。(摘要截短于250字)