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四氧化锇固定的化学性质以及通过X射线光电子能谱对膜进行染色

The chemical nature of osmium tetroxide fixation and staining of membranes by x-ray photoelectron spectroscopy.

作者信息

White D L, Andrews S B, Faller J W, Barrnett R J

出版信息

Biochim Biophys Acta. 1976 Jul 1;436(3):577-92. doi: 10.1016/0005-2736(76)90442-9.

Abstract

X-ray photoelectron spectroscopy was used to determine the oxidation states of osmium compounds present in erythrocyte ghost preparations and related systems treated with osmium tetroxide. Osmium tetroxide and cholesterol, codeposited at -100 degrees C, began to react at -70 degrees C, and Os(VI) was formed. Similarly, Os(VI) was detected for the known cholesterol-osmate ester prepared and purified chemically. However, osmium tetroxide applied in phosphate buffer (pH 7.2) gave rise to large proportions of Os(IV) and Os(III) species in addition to Os(VI) compounds. Egg phosphatidylcholine likewise produced a mixture of Os(VI), Os(IV), and Os(III), but dipalmitoyl phosphatidylcholine failed to give significant amounts of osmium containing products under identical conditions. Glutaraldehyde gave a mixture of compounds with the same osmium oxidation states when allowed to react with aqueous osmium tetroxide. Unfixed and glutaraldehyde-fixed erythrocyte ghosts also produced mixtures of Ss(VI), Os(IV) and Os(III) under conditions identical to those of normal tissue processing. Additionally, the mixture of adducts initially formed by treatment with osmium tetroxide was further reduced by dehydration of the tissue with ethanol, rpesulting in a final mixture which was 50-60% Os(III). The results support a scheme for the reaction os osmium tetroxide with tissues in which the initial reaction site is the double bonds of unsaturated lipids to form Os(VI) derivatives. Subsequent hydrolysis and further reduction yield complexes of Os(IV) and Os(III). A mixture of these three states is present in membrane specimens during microscopic observation. Os(VI) and Os(IV) could be present as osmate esters and osmium dioxide, respectively; Os(III) could be present as an oxo- or amino complex(es). The photoelectron spectrum of intact erythrocyte ghosts can be synthesized from the spectra of phospholipid and cholesterol only, suggesting the predominance of the reaction with lipids in the fixation process.

摘要

利用X射线光电子能谱法测定了红细胞膜空壳制剂及用四氧化锇处理的相关体系中锇化合物的氧化态。四氧化锇与胆固醇在-100℃共沉积,在-70℃开始反应,并生成了Os(VI)。同样,对于化学制备和纯化的已知胆固醇锇酸盐酯,也检测到了Os(VI)。然而,在磷酸盐缓冲液(pH 7.2)中应用的四氧化锇,除了Os(VI)化合物外,还产生了大量的Os(IV)和Os(III)物种。卵磷脂同样产生了Os(VI)、Os(IV)和Os(III)的混合物,但在相同条件下,二棕榈酰磷脂酰胆碱未能产生大量含锇产物。戊二醛与四氧化锇水溶液反应时,得到了具有相同锇氧化态的化合物混合物。未固定和戊二醛固定的红细胞膜空壳在与正常组织处理相同的条件下,也产生了Os(VI)、Os(IV)和Os(III)的混合物。此外,用四氧化锇处理最初形成的加合物混合物,通过用乙醇对组织进行脱水进一步还原,最终混合物中Os(III)占50 - 60%。这些结果支持了四氧化锇与组织反应的一种机制,其中初始反应位点是不饱和脂质的双键,形成Os(VI)衍生物。随后的水解和进一步还原产生了Os(IV)和Os(III)的络合物。在显微镜观察期间,膜标本中存在这三种状态的混合物。Os(VI)和Os(IV)可能分别以锇酸盐酯和二氧化锇的形式存在;Os(III)可能以氧代或氨基络合物的形式存在。完整红细胞膜空壳的光电子能谱仅由磷脂和胆固醇的光谱合成,这表明在固定过程中与脂质的反应占主导地位。

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