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Fluidity properties and liquid composition of erythrocyte membranes in Chediak-Higashi syndrome

机译:Chediak-Higashi综合征的红细胞膜的流动性和液体成分

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摘要

We have earlier shown through electron spin resonance (ESR) studies of leukocytes that membranes of cells from both Chediak-Higashi syndrome (CHS) mice and humans have abnormally high fluidity. We have extended our studied to erythrocytes. Erythrocytes were labeled with the nitroxide-substituted analogue of stearic acid, 2-(3-carboxypropyl)-4,4- dimethyl-2-tridecyl-3-oxazolidinyloxyl, and ESR spectra were obtained. Order parameter, S, at 23 degrees C, was 0.661 and 0.653 for erythrocytes of normal and CHS mice (P less than 0.001). S was 0.684 for normal human erythrocytes and 0.675 (P less than 0.001) for CHS erythrocytes at 25 degrees C. Because S varies inversely to fluidity, these results indicate that CHS erythrocytes tend to have higher fluidity than normal. In vitro treatment of both mice and human CHS erythrocytes with 10 mM ascorbate returned their membrane fluidity to normal. We prepared erythrocyte ghosts and extracted them with CHCl3:CH3OH (2:1). Gas-liquid chromatography analysis showed a greater number of unsaturated fatty acids for CHS. The average number of double bonds detected in fatty acids for mice on a standard diet was 1.77 for normal and 2.02 for CHS (P less than 0.04); comparison of human erythrocytes from one normal control and one CHS patient showed a similar trend. Our results suggest that an increased proportion of unsaturated fatty acids may contribute to increased fluidity of CHS erythrocytes. Our observation that both leukocytes and erythrocytes of CHS have abnormal fluidity indicates that CHS pathophysiology may relate to a general membrane disorder.
机译:我们先前通过白细胞的电子自旋共振(ESR)研究表明,来自Chediak-Higashi综合征(CHS)小鼠和人类的细胞膜具有异常高的流动性。我们已经将研究扩展到红细胞。用硬脂酸的硝基取代类似物2-(3-羧丙基)-4,4-二甲基-2-十三烷基-3-恶唑烷二酰氧基标记红细胞,并获得ESR光谱。正常和CHS小鼠的红细胞在23摄氏度的有序参数S为0.661和0.653(P小于0.001)。在25摄氏度时,正常人的红细胞的S为0.684,CHS红细胞的S为0.675(P小于0.001)。由于S与流动性成反比,因此这些结果表明CHS红细胞倾向于比正常人具有更高的流动性。用10 mM抗坏血酸对小鼠和人CHS红细胞进行体外治疗,使它们的膜流动性恢复正常。我们准备了红细胞鬼影,并用CHCl3:CH3OH(2:1)提取了它们。气液色谱分析表明,CHS的不饱和脂肪酸数量更多。在正常饮食中,小鼠的脂肪酸中检测到的平均双键平均数量为正常人1.77,中枢神经系统为2.02(P小于0.04);一名正常对照者和一名CHS患者的人红细胞比较显示出相似的趋势。我们的结果表明,不饱和脂肪酸比例的增加可能有助于增加CHS红细胞的流动性。我们观察到CHS的白细胞和红细胞均具有异常的流动性,这表明CHS的病理生理可能与一般的膜疾病有关。

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