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肾皮质刷状缘和基底外侧膜流动性的静态和动态成分:胆固醇的作用

Static and dynamic components of renal cortical brush border and basolateral membrane fluidity: role of cholesterol.

作者信息

Molitoris B A, Hoilien C

机构信息

Department of Medicine, University of Colorado Health Sciences Center, Denver.

出版信息

J Membr Biol. 1987;99(3):165-72. doi: 10.1007/BF01995697.

Abstract

Static polarization and differential polarized phase fluorimetry studies on rat renal cortical brush border (BBM) and basolateral membranes (BLM) were undertaken to determine the membrane components responsible for differences in BBM and BLM fluidity, whether these differences were due to the order or dynamic components of membrane fluidity and if a fluidity gradient existed within the bilayer. Surface membrane proteins rigidified both BBM and BLM fluidity. Neutral lipid extraction, on the other hand, caused a larger decrease in BBM than BLM fluorescence polarization (0.104 vs. 0.60, P less than 0.01) using diphenyl hexatriene (DPH). Cholesterol addition to phospholipid fractions restored membrane fluidity to total lipid values in both BBM and BLM phospholipids. The response to cholesterol in the BBM was biphasic, while the BLM response was linear. Lateral mobility, quantitated using dipyrenylpropane, was similar in both BBM and BLM fractions at 35 degrees C. BBM and BLM differed primarily in the order component of membrane fluidity as DPH-limiting anisotropy (r infinity) (0.212 vs. 0.154, P less than 0.01) differed markedly between the two membrane fractions. The two membrane components also differed with respect to 2 and 12-anthroyloxy stearate (2-AS, 12-AS) probes, indicating a difference in the dynamic component of membrane fluidity may also be present. DPH and 12-AS probes were also used to quantitate inner core membrane fluidity and showed the BBM was less fluid than the BLM for intact membranes, total lipid extracts and phospholipids.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

开展了对大鼠肾皮质刷状缘(BBM)和基底外侧膜(BLM)的静态极化和差示极化相荧光测定研究,以确定导致BBM和BLM流动性差异的膜成分,这些差异是否归因于膜流动性的有序或动态成分,以及双层膜内是否存在流动性梯度。表面膜蛋白使BBM和BLM的流动性均僵化。另一方面,使用二苯基己三烯(DPH)进行中性脂质提取时,BBM的荧光极化降低幅度大于BLM(0.104对0.60,P小于0.01)。向磷脂组分中添加胆固醇可使BBM和BLM磷脂的膜流动性恢复至总脂质值。BBM对胆固醇的反应呈双相,而BLM的反应呈线性。在35℃下,使用二芘基丙烷定量的横向流动性在BBM和BLM组分中相似。BBM和BLM主要在膜流动性的有序成分方面存在差异,因为两种膜组分之间的DPH极限各向异性(r∞)(0.212对0.154,P小于0.01)存在显著差异。这两种膜成分在2-和12-蒽氧基硬脂酸酯(2-AS,12-AS)探针方面也存在差异,表明膜流动性的动态成分可能也存在差异。DPH和12-AS探针还用于定量内核膜流动性,结果显示对于完整膜、总脂质提取物和磷脂,BBM的流动性低于BLM。(摘要截短于250字)

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