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肾皮质和髓质内体的H(+)-ATP酶对Sch-28080和奥美拉唑的敏感性不同。

H(+)-ATPases of renal cortical and medullary endosomes are differentially sensitive to Sch-28080 and omeprazole.

作者信息

Sabolić I, Brown D, Verbavatz J M, Kleinman J

机构信息

Renal Unit, Massachusetts General Hospital, Boston.

出版信息

Am J Physiol. 1994 Jun;266(6 Pt 2):F868-77. doi: 10.1152/ajprenal.1994.266.6.F868.

Abstract

Adenosinetriphosphatase (ATPase) activity stimulated by K+ and inhibited by Sch-28080 (SCH), omeprazole (OME), and vanadate has been measured in microsomes from mammalian renal medulla and attributed to a kidney isoform of the H(+)-K(+)-ATPase. To determine whether the H(+)-K(+)-ATPase inhibitors could also inhibit the vacuolar (V)-type H(+)-adenosinetriphosphatase (H(+)-ATPase, i.e., H+ pump) in mammalian intracellular vesicles, we examined their effects on bafilomycin-sensitive acidification in renal cortical vesicles (CEV) and medullary endocytic vesicles (MEV). Rats were injected with fluorescein isothiocyanate-labeled dextran, and labeled endosomes were enriched from kidney tissue homogenates by differential and Percoll density gradient centrifugation. In the CEV, the V-type H+ pump was inhibited 25% by SCH and 30% by OME (100 microM each). Whereas the inhibition by OME was concentration and time dependent, the inhibition by SCH was only concentration dependent. Inhibition by these compounds was similar in the presence of 50 mM K+ (in = out) and in the complete absence of K+, thus ruling out a significant involvement of H(+)-K(+)-ATPase-mediated acidification. Inhibition, however, was not observed with 10 microM SCH and OME. The sensitivity of the V-type H+ pump to 100 microM SCH and OME in CEV was confirmed by the comparable inhibitions of intravesicular acidification observed in acridine orange fluorescence quench studies and by inhibition of Pi liberation in an ATPase assay. We also found that the V-type H+ pump in isolated rat liver endosomes is sensitive to 100 microM SCH and OME to a similar degree. In the MEV, acidification was only weakly affected by 100 microM SCH and OME, thus suggesting that H(+)-ATPases in endosomes from cortical and medullary tubules are different, possibly due to a previously described selective expression of subunit isoforms. Our finding indicates the importance of using low concentrations (< 10 microM) of OME and SCH in studies of H(+)-K(+)-ATPase in nongastric tissues to avoid misinterpretation of the data due to nonspecific inhibition of V-type H(+)-ATPases.

摘要

已测定了由钾离子刺激并受Sch - 28080(SCH)、奥美拉唑(OME)和钒酸盐抑制的腺苷三磷酸酶(ATP酶)活性,该活性存在于哺乳动物肾髓质的微粒体中,并归因于H(+) - K(+) - ATP酶的一种肾脏同工型。为了确定H(+) - K(+) - ATP酶抑制剂是否也能抑制哺乳动物细胞内囊泡中的液泡型(V型)H(+) - 腺苷三磷酸酶(H(+) - ATP酶,即H⁺泵),我们研究了它们对肾皮质囊泡(CEV)和髓质内吞囊泡(MEV)中对巴弗洛霉素敏感的酸化作用的影响。给大鼠注射异硫氰酸荧光素标记的葡聚糖,通过差速离心和Percoll密度梯度离心从肾脏组织匀浆中富集标记的内体。在CEV中,V型H⁺泵受到SCH 25%的抑制和OME 30%的抑制(各为100微摩尔)。OME的抑制作用呈浓度和时间依赖性,而SCH的抑制作用仅呈浓度依赖性。在50毫摩尔钾离子存在(内外相等)和完全不存在钾离子的情况下,这些化合物的抑制作用相似,从而排除了H(+) - K(+) - ATP酶介导的酸化作用的显著参与。然而,10微摩尔的SCH和OME未观察到抑制作用。在吖啶橙荧光猝灭研究中观察到的囊泡内酸化的类似抑制以及在ATP酶测定中对无机磷酸释放的抑制,证实了CEV中V型H⁺泵对100微摩尔SCH和OME的敏感性。我们还发现,分离的大鼠肝内体中的V型H⁺泵对同样浓度的100微摩尔SCH和OME也有相似程度的敏感性。在MEV中,100微摩尔的SCH和OME对酸化作用的影响较弱,这表明皮质和髓质肾小管内体中的H(+) - ATP酶不同,可能是由于先前描述的亚基同工型的选择性表达。我们的发现表明,在非胃组织中研究H(+) - K(+) - ATP酶时,使用低浓度(<10微摩尔)的OME和SCH很重要,以避免因V型H(+) - ATP酶的非特异性抑制而导致数据解读错误。

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