首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >SUGAR TRANSPORT HETEROGENEITY IN THE KIDNEY - TWO INDEPENDENT TRANSPORTERS OR DIFFERENT TRANSPORT MODES THROUGH AN OLIGOMERIC PROTEIN .1. GLUCOSE TRANSPORT STUDIES
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SUGAR TRANSPORT HETEROGENEITY IN THE KIDNEY - TWO INDEPENDENT TRANSPORTERS OR DIFFERENT TRANSPORT MODES THROUGH AN OLIGOMERIC PROTEIN .1. GLUCOSE TRANSPORT STUDIES

机译:肾脏中糖的运输异质性-两种通过寡聚蛋白的独立运输或不同运输方式.1。葡萄糖运输研究

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The kinetics of Na+/D-glucose cotransport (SGLT) were reevaluated in rabbit renal brush border membrane vesicles isolated from the whole kidney cortex using a fast-sampling, rapid-filtration apparatus (FSRFA, US patent #5,330,717) for uptake measurements. Our results confirm SGLT heterogeneity in this preparation, and both high (HAG) and low (LAG) affinity glucose transport pathways can be separated over the 15-30 degrees C range of temperatures. It is further shown that: (i) Na+ is an essential activator of both HAG and LAG; (ii) similar energies of activation can be estimated from the linear Arrhenius plots constructed from the V-max data of HAG and LAG, thus suggesting that the lipid composition and/or the physical state of the membrane do not affect much the functioning of SGLT; (iii) similar V-max values are observed for glucose and galactose transport through HAG and LAG, thus demonstrating that the two substrates share the same carrier agencies; and (iv) phlorizin inhibits both HAG and LAG competitively and with equal potency (K-i = 15 mu M). Individually, these data do not allow us to resolve conclusively whether the kinetic heterogeneity of SGLT results from the expression in the proximal tubule of either two independent transporters (rSGLT1 acid rSGLT2) or from a unique transporter (rSGLT1) showing allosteric kinetics. Altogether and compared to the kinetic characteristics of the cloned SGLT1 and SGLT2 systems, they do point to a number of inconsistencies that lead us to conclude the latter possibility, although it is recognized that the two alternatives are not mutually exclusive. It is further suggested, from the differences in the K-m values of HAG transport in the kidney as compared to the small intestine and SGLT1 cRNA-injected oocytes, that renal SGLT1 activity is somehow modulated, maybe through heteroassociation with (a) regulatory subunit(s) that might also contribute quite significantly to sugar transport heterogeneity in the kidney proximal tubule. [References: 70]
机译:使用快速采样,快速过滤装置(FSRFA,美国专利#5,330,717)进行摄取测量,重新评估从全肾皮质分离出的兔肾刷缘膜囊泡中Na + / D-葡萄糖共转运的动力学(SGLT)。我们的结果证实了该制剂中SGLT的异质性,并且高(HAG)和低(LAG)亲和力葡萄糖转运途径均可在15-30摄氏度的温度范围内分离。进一步表明:(i)Na +是HAG和LAG的必要活化剂; (ii)可以从HAG和LAG的V-max数据构建的线性阿伦尼乌斯图估计相似的活化能,因此表明脂质组成和/或膜的物理状态对SGLT的功能影响不大。 ; (iii)通过HAG和LAG观察到的葡萄糖和半乳糖的相似的V-max值,从而表明两种底物共享相同的载体; (iv)Phlorizin以同等效力(K-i = 15μM)竞争性抑制HAG和LAG。单独地,这些数据不允许我们最终确定SGLT的动力学异质性是由两个独立的转运蛋白(rSGLT1酸rSGLT2)在近端小管中的表达还是由表现出变构动力学的独特转运蛋白(rSGLT1)引起的。总体而言,与克隆的SGLT1和SGLT2系统的动力学特征相比,它们确实指出了许多不一致之处,尽管我们认识到这两种选择并不互斥,但它们导致我们得出了后者的可能性。从与小肠和SGLT1 cRNA注射的卵母细胞相比,肾脏中HAG转运的Km值的差异进一步表明,肾脏SGLT1活性可能以某种方式被调节,可能是通过与(a)调节亚基的杂合),这也可能对肾脏近端小管中的糖转运异质性有很大贡献。 [参考:70]

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