Lim J, Gasson C, Kaji D M
Renal Section, Veterans Affairs Medical Center, Bronx, New York 10468-3904, USA.
J Clin Invest. 1995 Nov;96(5):2126-32. doi: 10.1172/JCI118266.
We examined the effect of urea on NaK2Cl cotransport in human erythrocytes. In erythrocytes from nine normal subjects, the addition of 45 mM urea, a concentration commonly encountered in uremic subjects, inhibited NaK2Cl cotransport by 33 +/- 7%. Urea inhibited NaK2Cl cotransport reversibly, and in a concentration-dependent fashion with half-maximal inhibition at 63 +/- 10 mM. Acute cell shrinkage increased, and acute cell swelling decreased NaK2Cl cotransport in human erythrocytes. Okadaic acid (OA), a specific inhibitor of protein phosphatase 1 and 2A, increased NaK2Cl cotransport by nearly 80%, suggesting an important role for these phosphatases in the regulation of NaK2Cl cotransport. Urea inhibited bumetanide-sensitive K influx even when protein phosphatases were inhibited with OA, suggesting that urea acted by inhibiting a kinase. In cells subjected to shrinking and OA pretreatment, maneuvers expected to increase the net phosphorylation, urea inhibited cotransport only minimally, suggesting that urea acted by causing a net dephosphorylation of the cotransport protein, or some key regulatory protein. The finding that concentrations of urea found in uremic subjects inhibited NaK2Cl cotransport, a widespread transport pathway with important physiological functions, suggests that urea is not only a marker for accumulation of other uremic toxins, but may be a significant uremic toxin itself.
我们研究了尿素对人红细胞中钠钾氯协同转运体的影响。在来自9名正常受试者的红细胞中,添加45 mM尿素(这是尿毒症患者常见的浓度)可使钠钾氯协同转运体活性降低33±7%。尿素对钠钾氯协同转运体的抑制作用是可逆的,且呈浓度依赖性,半数最大抑制浓度为63±10 mM。急性细胞皱缩会增强,而急性细胞肿胀会降低人红细胞中的钠钾氯协同转运体活性。冈田酸(OA)是蛋白磷酸酶1和2A的特异性抑制剂,可使钠钾氯协同转运体活性增加近80%,这表明这些磷酸酶在钠钾氯协同转运体的调节中起重要作用。即使在用OA抑制蛋白磷酸酶时,尿素仍能抑制布美他尼敏感的钾内流,这表明尿素是通过抑制一种激酶发挥作用的。在经过皱缩和OA预处理的细胞中,预期会增加净磷酸化的操作下,尿素对协同转运体的抑制作用极小,这表明尿素是通过导致协同转运蛋白或某些关键调节蛋白的净去磷酸化发挥作用的。尿毒症患者体内发现的尿素浓度会抑制钠钾氯协同转运体(一种具有重要生理功能的广泛存在的转运途径),这一发现表明尿素不仅是其他尿毒症毒素蓄积的标志物,其本身可能也是一种重要的尿毒症毒素。