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LLC-PK1细胞内pH值与氨代谢之间的关系。

Relationship between intracellular pH and ammonia metabolism in LLC-PK1 cells.

作者信息

Sahai A, Laughrey E, Tannen R L

机构信息

Department of Medicine, University of Michigan, Ann Arbor 48109.

出版信息

Am J Physiol. 1990 Jan;258(1 Pt 2):F103-8. doi: 10.1152/ajprenal.1990.258.1.F103.

Abstract

Previous studies from our laboratory have confirmed that cultures of LLC-PK1 cells exhibit pH-responsive alterations in ammonia metabolism produced by changes in media bicarbonate concentration. To further elucidate the mechanism of ammonia regulation, studies were carried out using parallel cultures of still and rocked LLC-PK1 cells subjected to acute alterations in media pH by either metabolic or respiratory acid-base manipulations. When media pH was altered by modifying PCO2 levels, the response of ammonia and alanine production by rocked culture was identical to the changes observed with metabolic acid-base maneuvers. Furthermore, both metabolic and respiratory acute acidosis resulted in a fall of intracellular alpha-ketoglutarate concentrations in these cells. In contrast, standard still cultures subjected to acute acidosis/alkalosis by metabolic and respiratory manipulations did not exert any significant change in ammonia and alanine production or in intracellular alpha-ketoglutarate concentration. Measurements of intracellular pH (pHi) by the 5,5-[2-14C]dimethyloxazolidine-2,4-dione method in rocked cells demonstrated changes in pHi parallel to media pH changes induced by both metabolic and respiratory acid-base maneuvers. Despite the absence of pH-responsive ammonia-genesis in still cultured cells the pHi values were altered in a fashion similar to their rocked counterparts, indicating the lack of an effect of the pHi signal on ammonia metabolism.

摘要

我们实验室之前的研究证实,LLC-PK1细胞培养物在培养基碳酸氢盐浓度变化时,氨代谢会出现pH响应性改变。为了进一步阐明氨调节机制,我们使用静止和摇晃的LLC-PK1细胞平行培养物进行了研究,通过代谢或呼吸酸碱操作使培养基pH发生急性变化。当通过改变PCO2水平来改变培养基pH时,摇晃培养物中氨和丙氨酸产生的反应与代谢酸碱操作中观察到的变化相同。此外,代谢性和呼吸性急性酸中毒均导致这些细胞内α-酮戊二酸浓度下降。相比之下,通过代谢和呼吸操作进行急性酸中毒/碱中毒处理的标准静止培养物,其氨和丙氨酸产生或细胞内α-酮戊二酸浓度均未发生任何显著变化。通过5,5-[2-14C]二甲基恶唑烷-2,4-二酮法对摇晃细胞内pH(pHi)的测量表明,pHi的变化与代谢和呼吸酸碱操作引起的培养基pH变化平行。尽管静止培养的细胞中不存在pH响应性氨生成,但pHi值的变化方式与摇晃的细胞类似,这表明pHi信号对氨代谢没有影响。

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