Yusufi A N, Szczepanska-Konkel M, Dousa T P
Department of Physiology and Biophysics, Mayo Clinic and Foundation, Mayo Medical School, Rochester, Minnesota 55905.
J Biol Chem. 1988 Sep 25;263(27):13683-91.
The role of N-linked oligosaccharide side chains in the biogenesis and function of Na+-coupled transporters in renal luminal brush-border membrane (BBM) is not known. We examined the question of how in vivo inhibition by alkaloid swainsonine of alpha-mannosidase, a key enzyme in processing of glycoproteins in the Golgi apparatus, affects Na+/H+ antiport and Na+/Pi symport as well as activities of other transporters and enzymes in rat renal BBM. Administration of swainsonine to thyroparathyroidectomized rats, control or treated with 3,5,3'-triiodothyronine, markedly decreased the rate of Na+/H+ antiport, but had no effect on the rate of Na+/Pi symport across renal BBM vesicles (BBMV). Moreover, administration of swainsonine did not change activities of Na+ gradient, ([extravesicular Na+] greater than [intravesicular Na+])-dependent transport of D-glucose, L-proline, or the amiloride-insensitive 22Na+ uptake by BBMV; the activities of the BBM enzymes alkaline phosphatase, gamma-glutamyltransferase, or leucine aminopeptidase in BBMV were also not changed. The in vitro enzymatic deglycosylation of BBM by incubating freshly isolated BBMV with bacterial endoglycosidase F also resulted in a decreased rate of Na+/H+ antiport, but not Na+-coupled symports of Pi, L-proline, and D-glucose, or the activities of the BBM enzymes were not significantly affected. Similar incubation with endoglycosidase H was without effect on any of these parameters. Both the modification of BBMV glycoproteins by administration fo swainsonine in vivo as well as the in vitro incubation of BBMV with endoglycosidase F resulted in a decrease of the apparent Vmax of Na+/H+ antiport, but did not change the apparent Km of this antiporter for extravesicular Na+ and did not increase H+ conductance of BBM. Taken together, our findings suggest that intact N-linked oligosaccharide chains of the biantennary complex type in renal BBM glycoproteins are required, directly or indirectly, for the transport function of the Na+/H+ antiporter inserted into BBM of renal proximal tubules.
N-连接寡糖侧链在肾管腔刷状缘膜(BBM)中Na⁺偶联转运体的生物合成和功能中的作用尚不清楚。我们研究了生物碱苦马豆素在体内抑制高尔基体中糖蛋白加工的关键酶α-甘露糖苷酶后,如何影响大鼠肾BBM中的Na⁺/H⁺逆向转运、Na⁺/Pi同向转运以及其他转运体和酶的活性。给甲状腺甲状旁腺切除的大鼠(对照组或用3,5,3'-三碘甲状腺原氨酸处理组)注射苦马豆素,显著降低了Na⁺/H⁺逆向转运速率,但对跨肾BBM囊泡(BBMV)的Na⁺/Pi同向转运速率没有影响。此外,注射苦马豆素并没有改变Na⁺梯度依赖性([囊泡外Na⁺]大于[囊泡内Na⁺])的D-葡萄糖、L-脯氨酸转运或BBMV对amiloride不敏感的²²Na⁺摄取;BBMV中BBM酶碱性磷酸酶、γ-谷氨酰转移酶或亮氨酸氨肽酶的活性也没有改变。通过将新鲜分离的BBMV与细菌内切糖苷酶F孵育对BBM进行体外酶促去糖基化,也导致Na⁺/H⁺逆向转运速率降低,但对Pi、L-脯氨酸和D-葡萄糖的Na⁺偶联同向转运或BBM酶的活性没有显著影响。用内切糖苷酶H进行类似孵育对这些参数中的任何一个都没有影响。体内注射苦马豆素对BBMV糖蛋白的修饰以及体外将BBMV与内切糖苷酶F孵育均导致Na⁺/H⁺逆向转运的表观Vmax降低,但没有改变该逆向转运体对囊泡外Na⁺的表观Km,也没有增加BBM的H⁺传导性。综上所述,我们的研究结果表明,肾BBM糖蛋白中完整的双天线复合型N-连接寡糖链直接或间接是插入肾近端小管BBM中的Na⁺/H⁺逆向转运体转运功能所必需的。