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磷脂的跨膜双层扩散:对头基结构和酰基链长度的依赖性。

Transbilayer diffusion of phospholipids: dependence on headgroup structure and acyl chain length.

作者信息

Homan R, Pownall H J

机构信息

Baylor College of Medicine, Houston, TX 77030.

出版信息

Biochim Biophys Acta. 1988 Feb 18;938(2):155-66. doi: 10.1016/0005-2736(88)90155-1.

Abstract

The kinetics and thermodynamics of the transmembrane movement (flip-flop) of fluorescent analogs of phosphatidic acid (PA), phosphatidylglycerol (PG), phosphatidylcholine (PC), and phosphatidylethanolamine (PE) were investigated to determine the contributions of headgroup composition and acyl chain length to phospholipid flip-flop. The phospholipid derivatives containing n-octanoic, n-decanoic or n-dodecanoic acid in the sn-1 position and 9-(1-pyrenyl)nonanoic acid in the sn-2 position were incorporated at 3 mol% into sonicated single-bilayer vesicles of 1-palmitoyl-2-oleoyl-sn-glycerol-3-phosphocholine (POPC). The kinetics of diffusion of the pyrene-labeled phospholipids from the outer and inner monolayers of the host vesicles to a large pool of POPC acceptor vesicles were monitored by the time-dependent decrease of pyrene excimer fluorescence. The observed kinetics of transfer were biexponential, with a fast component due to the spontaneous transfer of pyrenyl phospholipids in the outer monolayer of labeled vesicles and a slower component due to diffusion of pyrenyl phospholipid from the inner monolayer of the same vesicles. Intervesicular transfer rates decreased approx. 8-fold for every two carbons added to the first acyl chain. Correspondingly, the free energy of activation for transfer increased approx. 1.3 kcal/mol. With the exception of PE, the intervesicular transfer rates for the different headgroups within a homologous series were nearly the same, with the PC derivative being the fastest. Transfer rates for the PE derivatives were 5-to 7-fold slower than the rates observed for PC. Phospholipid flip-flop, in contrast, was strongly dependent on headgroup composition with a smaller dependence on acyl chain length. At pH 7.4, flip-flop rates increased in the order PC less than PG less than PA less than PE, where the rates for PE were at least 10-times greater than those of the homologous PC derivative. Activation energies for flip-flop were large, and ranged from 38 kcal/mol for the longest acyl chain derivative of PC to 25 kcal/mol for the PE derivatives. Titration of the PA headgroup at pH 4.0 produced an approx. 500-fold increase in the flip-flop rate of PA, while the activation energy decreased 10 kcal/mol. Increasing acyl chain length reduced phospholipid flip-flop rates, with the greatest change observed for the PC analogs, which exhibited an approx. 2-fold decrease in flip-flop rate for every two methylene carbons added to the acyl chain at the sn-1 position.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

研究了磷脂酸(PA)、磷脂酰甘油(PG)、磷脂酰胆碱(PC)和磷脂酰乙醇胺(PE)的荧光类似物跨膜运动(翻转)的动力学和热力学,以确定头基组成和酰基链长度对磷脂翻转的影响。将在sn-1位含有正辛酸、正癸酸或正十二酸且在sn-2位含有9-(1-芘基)壬酸的磷脂衍生物以3 mol%的比例掺入1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱(POPC)的超声处理单层囊泡中。通过芘激基荧光随时间的下降来监测芘标记的磷脂从主体囊泡的外层和内层单分子层扩散到大量POPC受体囊泡中的动力学。观察到的转移动力学是双指数的,快速成分是由于芘基磷脂在标记囊泡外层的自发转移,较慢成分是由于芘基磷脂从同一囊泡内层的扩散。每向第一条酰基链添加两个碳原子,囊泡间转移速率大约降低8倍。相应地,转移的活化自由能大约增加1.3 kcal/mol。除PE外,同系物系列中不同头基的囊泡间转移速率几乎相同,PC衍生物最快。PE衍生物的转移速率比PC观察到的速率慢5到7倍。相比之下,磷脂翻转强烈依赖于头基组成,对酰基链长度的依赖性较小。在pH 7.4时,翻转速率按PC<PG<PA<PE的顺序增加,其中PE的速率至少是同源PC衍生物的10倍以上。翻转的活化能很大,范围从PC最长酰基链衍生物的38 kcal/mol到PE衍生物的25 kcal/mol。在pH 4.0时滴定PA头基使PA的翻转速率增加约500倍,而活化能降低10 kcal/mol。增加酰基链长度会降低磷脂翻转速率,PC类似物的变化最大,在sn-1位的酰基链每添加两个亚甲基碳原子,翻转速率大约降低2倍。(摘要截取自400字)

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