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作为钠钾ATP酶阳离子位点探针的光不稳定氨氯地平衍生物。

Photolabile amiloride derivatives as cation site probes of the Na,K-ATPase.

作者信息

Ellis-Davies G C, Kleyman T R, Kaplan J H

机构信息

Department of Biochemistry and Molecular Biology, Oregon Health Sciences University, Portland, Oregon 97201, USA.

出版信息

J Biol Chem. 1996 Apr 26;271(17):10353-8. doi: 10.1074/jbc.271.17.10353.

Abstract

Treatment of purified canine renal Na,K-ATPase with a range of photoactivatable amiloride derivatives results in inhibition of ATPase activity prior to illumination. Inhibition by amiloride derivatives substituted on a guanidium N could not be prevented by the presence of either K or Na; however, these cations could protect the enzyme against inhibition by derivatives substituted on the 5-position of the pyrazine ring. In the case of 5-(N-ethyl-[2'-methoxy-4'-nitrobenzyl])amiloride (NENMBA), the presence of monovalent cations (Na, K, and Rb) protected the enzyme effectively against inhibition, with concentrations in the millimolar range. ATP did not prevent inhibition; furthermore, native and NENMBA-treated enzyme exhibited normal levels of high affinity [3H]ADP (and hence ATP) binding. The rate of inhibition increased with increasing concentrations of NENMBA. Extensive washing of NENMBA-inhibited enzyme did not restore ATPase activity, showing that NENMBA has an extremely slow off-rate for dissociation from its inhibitory site. Partially inhibited enzyme could be rapidly pelleted and resuspended in NENMBA-free buffer and inhibition was observed to continue, albeit at a somewhat diminished rate, suggesting that NENMBA gains access to its inhibitory site after partitioning into the lipid phase rather than directly from the aqueous solution. Photolysis of NENMBA-inhibited enzyme resulted in covalent incorporation of the reagent into the alpha-subunit of the Na,K-ATPase, as observed by separation of labeled protein on a Laemmli gel and Western analysis using a polyclonal amiloride antibody. Almost all of the covalent labeling could be prevented by the presence of Rb in the incubation and labeling medium. These results suggest that NENMBA inhibits the Na, K-ATPase by disruption of the cation transport domain rather than the catalytic domain of the enzyme and that it promises to be a useful tool for cation site localization.

摘要

用一系列可光活化的氨氯地平衍生物处理纯化的犬肾钠钾ATP酶,在光照前会导致ATP酶活性受到抑制。胍基N上被取代的氨氯地平衍生物所引起的抑制作用,无论是存在钾还是钠都无法阻止;然而,这些阳离子可以保护该酶免受吡嗪环5位上被取代的衍生物的抑制。就5-(N-乙基-[2'-甲氧基-4'-硝基苄基])氨氯地平(NENMBA)而言,单价阳离子(钠、钾和铷)的存在能有效保护该酶免受抑制,其浓度在毫摩尔范围内。ATP无法阻止抑制作用;此外,天然的和经NENMBA处理的酶表现出正常水平的高亲和力[3H]ADP(进而ATP)结合。抑制速率随NENMBA浓度的增加而增加。对NENMBA抑制的酶进行广泛洗涤并不能恢复ATP酶活性,这表明NENMBA从其抑制位点解离的速率极其缓慢。部分受抑制的酶可以快速沉淀并重新悬浮在不含NENMBA的缓冲液中,并且观察到抑制作用仍在继续,尽管速率有所降低,这表明NENMBA在分配到脂质相后进入其抑制位点,而不是直接从水溶液中进入。对NENMBA抑制的酶进行光解导致该试剂共价结合到钠钾ATP酶的α亚基中,这通过在Laemmli凝胶上分离标记蛋白以及使用多克隆氨氯地平抗体进行Western分析得以观察到。在孵育和标记介质中存在铷时,几乎所有的共价标记都可以被阻止。这些结果表明,NENMBA通过破坏该酶的阳离子转运结构域而非催化结构域来抑制钠钾ATP酶,并且它有望成为用于阳离子位点定位的有用工具。

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