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无β脂蛋白血症时红细胞膜脂质流动性降低。

Decreased fluidity of red cell membrane lipids in abetalipoproteinemia.

作者信息

Cooper R A, Durocher J R, Leslie M H

出版信息

J Clin Invest. 1977 Jul;60(1):115-21. doi: 10.1172/JCI108747.

Abstract

Acanthocytic red cells in patients with abetalipoproteinemia are morphologically similar to the red cells in spur cell anemia. Fluidity of membrane lipids is decreased in spur cells due to their excess cholesterol content. Acanthocyte membranes have an increased content of sphingomyelin and a decreased content of lecithin. To assess the effect of this abnormality of acanthocyte membrane lipid composition on membrane fluidity, we studied red cells from five patients with abetalipoproteinemia and four obligate heterozygote family members. Membrane fluidity was measured in terms of microviscosity ( eta) at 37 degrees C, assessed by means of the fluorescence polarization of 1,6-diphenyl-1,3,5-hexatriene. It was increased from 3.2+/-0.1 poise in normals to 4.01-4.14 poise in acanthocytes. This was associated with an increase in the sphingomyelin/lecithin ratio from 0.84+/-0.08 in normals in 1.45-1.61 in acanthocytes. The eta of acanthocyte membranes was not influenced by the degree of vitamin E deficiency. Similar changes in eta were observed in liposomes prepared from red cell lipids. Heterozygotes had normal sphingomyelin/lecithin ratios and normal values for eta. The flow activation energy for viscosity, a measure of the degree of order in the hydrophobic portion of the membrane, was decreased from 8.3 kcal/mole in normal red cells to 7.2 kcal/mole in acanthocytes, indicating that acanthocyte membrane lipids are more ordered. Variations in the sphingomyelin/lecithin mole ratio of liposomes prepared from brain sphingomyelin and egg lecithin with equimolar cholesterol caused similar changes in both eta and activation energy. The deformability of acanthocytes, assessed by means of filtration through 3-mum filters, was decreased. These studies indicate that the increased sphingomyelin/lecithin ratio of acanthocytes is responsible for their decreased membrane fluidity. As in spur cells and in red cells enriched with cholesterol in vitro, this decrease in membrane fluidity occurs coincidentally with an abnormality in cell contour and an impairment in cell deformability.

摘要

无β脂蛋白血症患者的棘红细胞在形态上与棘状细胞贫血患者的红细胞相似。由于棘状细胞中胆固醇含量过高,其膜脂质的流动性降低。棘红细胞膜中鞘磷脂含量增加,卵磷脂含量减少。为了评估棘红细胞膜脂质组成异常对膜流动性的影响,我们研究了5例无β脂蛋白血症患者和4名纯合子杂合子家庭成员的红细胞。膜流动性通过37℃时的微粘度(η)来测量,通过1,6 - 二苯基 - 1,3,5 - 己三烯的荧光偏振进行评估。其值从正常人的3.2±0.1泊增加到棘红细胞的4.01 - 4.14泊。这与鞘磷脂/卵磷脂比值从正常人的0.84±0.08增加到棘红细胞的1.45 - 1.61有关。棘红细胞膜的η不受维生素E缺乏程度的影响。从红细胞脂质制备的脂质体中也观察到类似的η变化。杂合子的鞘磷脂/卵磷脂比值正常,η值也正常。粘度的流动活化能是膜疏水部分有序程度的一种度量,从正常红细胞的8.3千卡/摩尔降至棘红细胞的7.2千卡/摩尔,表明棘红细胞膜脂质的有序程度更高。由脑鞘磷脂和蛋黄卵磷脂与等摩尔胆固醇制备的脂质体的鞘磷脂/卵磷脂摩尔比变化导致η和活化能发生类似变化。通过3微米滤器过滤评估的棘红细胞变形性降低。这些研究表明,棘红细胞鞘磷脂/卵磷脂比值增加是其膜流动性降低的原因。与棘状细胞以及体外富含胆固醇的红细胞一样,这种膜流动性降低与细胞轮廓异常和细胞变形性受损同时发生。

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