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用[125I]碘叠氮香豆素对(钠钾)-ATP酶进行光亲和标记。

Photoaffinity labeling of (Na+K+)-ATPase with [125I]iodoazidocymarin.

作者信息

Lowndes J M, Hokin-Neaverson M, Ruoho A E

出版信息

J Biol Chem. 1984 Aug 25;259(16):10533-8.

PMID:6088504
Abstract

A radioiodinated, photoactive cardiac glycoside derivative, 4'-(3-iodo-4-azidobenzene sulfonyl)cymarin (IAC) was synthesized and used to label (Na+K+)-ATPase in crude membrane fractions. In the dark, IAC inhibited the activity of (Na+K+)-ATPase in electroplax microsomes from Electrophorus electricus with the same I50 as cymarin. [125I]IAC binding, in the presence of Mg2+ and Pi, was specific, of high affinity (KD = 0.4 microM), and reversible (k-1 = 0.11 min-1) at 30 degrees C. At 0 degree C, the complex was stable for at least 3 h, thus permitting washing before photolysis. Analysis of [125]IAC photolabeled electroplax microsomes by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) (7-14%) showed that most of the incorporated radioactivity was associated with the alpha (Mr = 98,000) and beta (Mr = 44,000) subunits of the (Na+K+)-ATPase (ratio of alpha to beta labeling = 2.5). A higher molecular weight peptide (100,000), similar in molecular weight to the brain alpha(+) subunit, and two lower molecular weight peptides (12,000-15,000), which may be proteolipid, were also labeled. Two-dimensional gel electrophoresis (isoelectric focusing then SDS-PAGE, 10%) resolved the beta subunit into 12 labeled peptides ranging in pI from 4.3 to 5.5. When (Na+K+)-ATPase in synaptosomes from monkey brain cortex was photolabeled and analyzed by SDS-PAGE (7-14%), specific labeling of the alpha(+), alpha, and beta subunits could be detected (ratio of alpha(+) plus alpha to beta labeling = 35). The results show that [125I]IAC is a sensitive probe of the cardiac glycoside binding site of (Na+K+)-ATPase and can be used to detect the presence of the alpha(+) subunit in crude membrane fractions from various sources.

摘要

合成了一种放射性碘化的光活性强心苷衍生物4'-(3-碘-4-叠氮基苯磺酰基)洋地黄毒苷(IAC),并用于标记粗膜组分中的(Na+K+)-ATP酶。在黑暗中,IAC抑制电鳗电板微粒体中(Na+K+)-ATP酶的活性,其半数抑制浓度(I50)与洋地黄毒苷相同。在Mg2+和无机磷酸(Pi)存在下,[125I]IAC的结合具有特异性、高亲和力(解离常数KD = 0.4 μM),且在30℃时可逆(解离速率常数k-1 = 0.11 min-1)。在0℃时,复合物至少稳定3小时,因此允许在光解前进行洗涤。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE,7%-14%)对[125I]IAC光标记的电板微粒体进行分析,结果表明,大部分掺入的放射性与(Na+K+)-ATP酶的α亚基(相对分子质量Mr = 98,000)和β亚基(Mr = 44,000)相关(α与β标记的比例 = 2.5)。还标记了一种分子量较高的肽(100,000),其分子量与脑α(+)亚基相似,以及两种分子量较低的肽(12,000 - 15,000),可能是蛋白脂质。二维凝胶电泳(先等电聚焦再SDS-PAGE,10%)将β亚基分离为12个标记肽段,其等电点(pI)范围为4.3至5.5。当对猴脑皮质突触体中的(Na+K+)-ATP酶进行光标记并通过SDS-PAGE(7%-14%)分析时,可检测到α(+)、α和β亚基的特异性标记(α(+)加α与β标记的比例 = 35)。结果表明,[125I]IAC是(Na+K+)-ATP酶强心苷结合位点的敏感探针,可用于检测来自各种来源的粗膜组分中α(+)亚基的存在。

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