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体外重组的人高密度脂蛋白的结构。放射免疫分析研究。

Structure of human high density lipoprotein reassembled in vitro. Radioimmunoassay studies.

作者信息

Schonfeld G, Pfleger B, Roy R

出版信息

J Biol Chem. 1975 Oct 10;250(19):7934-50.

PMID:170277
Abstract

Immunologic approaches to studying lipoprotein structure have been limited because the methods have not been quantitative enough. Recently we reported (Schonfeld, G., and Pfleger, B. (1974) J. Clin. Invest. 54, 236-246) a radioimmunoassay for human apoprotein A-1 (ApoA-I). Only 8% of the ApoA-I of high density lipoprotein (HDL) reacted in the radioimmunoassay system consisting of rabbit anti-human ApoA-I, 125I-ApoA-I, and unlabeled ApoA-I. We suggested that the ApoA-I in HDL were poorly reactive in the radioimmunoassay because they were "masked" by lipid- or protein-protein interactions. To test this, "lipoproteins" were reconstituted from lipids and apoproteins and assayed for their reactivity in the radioimmunoassay. Apo-HDL, ApoA-I alone, or ApoA-I + ApoA-II were sonified with lecithin or with lipids extracted from HDL. Sonicates were fractionated by ultracentrifugation or by Sepharose 4B chromatography. HDLs were also made by incubating dispersed lecithin or lecithin + cholesterol with Apo-HDL, ApoA-I, or ApoA-II. The lipoproteins were analyzed for lipids and protein chemically. Apoprotein compositions were determined by polyacrylamide disc gel electrophoresis. ApoA-I content by radioimmunoassay then was compared with the ApoA-I content obtained by disc gel electrophoresis. Most reconstituted "lipoproteins" had less than the expected ApoA-I contents. Discrepancies between ApoA-I contents were greatest for lipoproteins prepared from Apo-HDL and HDL-lipids (20 to 30% of expected contents). Discrepancies were smaller for particles prepared with lecithin, with ApoA-I alone or with ApoA-I + ApoA-II (40 to 85% of expected). HDLs made by incubation were less reactive than those prepared by sonication. Thus, the reactivity of ApoA-I in the radioimmunoassay could be diminished by causing it to interact with lipids or their apoproteins, or both, suggesting that antigenic sites became masked. From this one can extrapolate that the poor reactivity of the ApoA-I in HDL isolated from plasma also may have been due to the masking of some of its antigenic determinants. The identification of the determinants involved awaits the development of radioimmunoassays for specific regions of ApoA-I.

摘要

由于方法的定量性不足,用于研究脂蛋白结构的免疫学方法受到了限制。最近我们报道了一种人载脂蛋白A-1(ApoA-I)的放射免疫测定法(Schonfeld, G., and Pfleger, B. (1974) J. Clin. Invest. 54, 236 - 246)。在由兔抗人ApoA-I、125I - ApoA-I和未标记的ApoA-I组成的放射免疫测定系统中,高密度脂蛋白(HDL)中只有8%的ApoA-I发生反应。我们认为HDL中的ApoA-I在放射免疫测定中反应性较差,因为它们被脂质或蛋白质 - 蛋白质相互作用“掩盖”了。为了验证这一点,从脂质和载脂蛋白中重构“脂蛋白”,并检测它们在放射免疫测定中的反应性。将Apo-HDL、单独的ApoA-I或ApoA-I + ApoA-II与卵磷脂或从HDL中提取的脂质一起超声处理。超声处理后的样品通过超速离心或Sepharose 4B色谱法进行分离。HDL也通过将分散的卵磷脂或卵磷脂 + 胆固醇与Apo-HDL、ApoA-I或ApoA-II孵育来制备。对这些脂蛋白进行化学脂质和蛋白质分析。通过聚丙烯酰胺圆盘凝胶电泳测定载脂蛋白组成。然后通过放射免疫测定法测定的ApoA-I含量与通过圆盘凝胶电泳获得的ApoA-I含量进行比较。大多数重构的“脂蛋白”的ApoA-I含量低于预期。由Apo-HDL和HDL脂质制备的脂蛋白,其ApoA-I含量之间的差异最大(为预期含量的20%至30%)。用卵磷脂、单独的ApoA-I或ApoA-I + ApoA-II制备的颗粒差异较小(为预期的40%至85%)。通过孵育制备的HDL比通过超声处理制备的HDL反应性更低。因此,放射免疫测定中ApoA-I的反应性可能会因其与脂质或其载脂蛋白或两者相互作用而降低,这表明抗原位点被掩盖了。由此可以推断,从血浆中分离的HDL中ApoA-I反应性较差也可能是由于其一些抗原决定簇被掩盖所致。涉及的决定簇的鉴定有待针对ApoA-I特定区域的放射免疫测定法的发展。

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