Turner R J, Moran A
Am J Physiol. 1982 Apr;242(4):F406-14. doi: 10.1152/ajprenal.1982.242.4.F406.
The glucose transport properties of brush border membrane vesicles from the outer cortex (early proximal tubule) and outer medulla (late proximal tubule) of rabbit kidney were studied. In the outer cortical preparation the behavior of the sodium-dependent component of D-glucose flux indicated the presence of a low-affinity transport system with Km congruent to 6 mM and Vmax congruent to 10 nmol.min-1.mg protein-1 as measured under zero trans conditions at 40 mM NaCl and 17 degrees C. By contrast, in the outer medullary preparation this component of flux behaved as a high-affinity system with Km congruent to 0.35 mM and Vmax congruent to 4 nmol.min-1.mg protein-1. Differences in transport specificity between the two preparations were also indicated and glucose uptake by the outer cortical vesicles was significantly more sensitive to inhibition by phlorizin. These results suggest the existence of two distinct sodium-dependent D-glucose transport systems in the renal proximal tubule brush border membrane. The kinetic studies presented here were done under zero trans sodium and glucose conditions. The rationale and methodology for carrying out these measurements reliably are discussed in detail.
对兔肾外皮质(近端小管早期)和外髓质(近端小管晚期)刷状缘膜囊泡的葡萄糖转运特性进行了研究。在外皮质制剂中,D - 葡萄糖通量的钠依赖性成分的行为表明存在一种低亲和力转运系统,在40 mM NaCl和17℃的零转运条件下测量,其Km约为6 mM,Vmax约为10 nmol·min⁻¹·mg蛋白⁻¹。相比之下,在外髓质制剂中,该通量成分表现为高亲和力系统,Km约为0.35 mM,Vmax约为4 nmol·min⁻¹·mg蛋白⁻¹。还表明了两种制剂之间转运特异性的差异,外皮质囊泡对葡萄糖的摄取对根皮苷抑制更为敏感。这些结果表明在肾近端小管刷状缘膜中存在两种不同的钠依赖性D - 葡萄糖转运系统。这里呈现的动力学研究是在零转运钠和葡萄糖条件下进行的。详细讨论了可靠进行这些测量的基本原理和方法。