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突变型LLC-PK1细胞顶端膜囊泡中钠氢交换体活性增加。

Increased Na(+)-H+ antiporter activity in apical membrane vesicles from mutant LLC-PK1 cells.

作者信息

Reilly R F, Haggerty J G, Aronson P S, Adelberg E A, Slayman C W

机构信息

Department of Medicine, Yale University School of Medicine, New Haven, Connecticut 06510.

出版信息

Am J Physiol. 1991 Apr;260(4 Pt 1):C738-44. doi: 10.1152/ajpcell.1991.260.4.C738.

Abstract

In whole cell experiments, the PKE20 mutant of the renal epithelial cell line LLC-PK1 displays a severalfold elevation of Na(+)-H+ antiporter activity at the apical surface (J.G. Haggerty, N. Agarwal, R.F. Reilly, E. A. Adelberg, and C.W. Slayman. Proc. Natl. Acad. Sci. USA 85: 6797-6801, 1988). The present study was undertaken to explore the properties of the mutant at the membrane level. Apical membrane vesicles were prepared by the magnesium-aggregation technique, with a similar enrichment (ca. 10-fold) of the marker enzyme gamma-glutamyltranspeptidase in vesicles from parent and mutant cell lines. In both cases, 22Na influx was stimulated by an inside-acid pH gradient, inhibited by ethylisopropylamiloride (EIPA), and unaffected by valinomycin, indicating that it was mediated by Na(+)-H+ antiport. Quantitatively, PKE20 vesicles showed a 4.2-fold increase in the maximal velocity of Na(+)-H+ antiporter activity compared with the parent, with only minor increases in the activity of two other Na(+)-dependent transporters (14-56% for alpha-methylglucoside and L-glutamate). Dose-response curves for EIPA indicated that the increased Na(+)-H+ antiport activity in PKE20 vesicles was due to an increased activity of the relatively amiloride-resistant form of the Na(+)-H+ antiporter with little or no change in the amiloride-sensitive form. No differences in polypeptide composition of the two vesicle preparations could be detected by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Taken together, the results indicate that the mutation in PKE20 is expressed at the membrane level and is specific for the relatively amiloride-resistant Na(+)-H+ antiporter.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在全细胞实验中,肾上皮细胞系LLC-PK1的PKE20突变体在顶端表面的Na(+)-H+反向转运体活性升高了数倍(J.G. 哈格蒂、N. 阿加瓦尔、R.F. 赖利、E.A. 阿德尔伯格和C.W. 斯莱曼。《美国国家科学院院刊》85: 6797 - 6801, 1988)。本研究旨在探索该突变体在膜水平的特性。通过镁聚集技术制备顶端膜囊泡,亲本细胞系和突变体细胞系的囊泡中标记酶γ-谷氨酰转肽酶的富集程度相似(约10倍)。在两种情况下,22Na内流受到胞内酸性pH梯度的刺激,被乙基异丙基氨氯吡咪(EIPA)抑制,且不受缬氨霉素影响,表明其由Na(+)-H+反向转运介导。定量分析表明,与亲本相比,PKE20囊泡中Na(+)-H+反向转运体活性的最大速度增加了4.2倍,而其他两种Na(+)-依赖性转运体的活性仅略有增加(α-甲基葡萄糖苷和L-谷氨酸增加了14 - 56%)。EIPA的剂量反应曲线表明,PKE20囊泡中Na(+)-H+反向转运活性增加是由于相对氨氯吡咪抗性形式的Na(+)-H+反向转运体活性增加,而氨氯吡咪敏感形式几乎没有变化。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳未检测到两种囊泡制剂多肽组成的差异。综上所述,结果表明PKE20中的突变在膜水平表达,且对相对氨氯吡咪抗性的Na(+)-H+反向转运体具有特异性。(摘要截短至250字)

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