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阳离子催化的磷脂酰甘油跨膜迁移的动力学机制表明,囊泡之间的紧密接触是一种中间状态。

The kinetic mechanism of cation-catalyzed phosphatidylglycerol transbilayer migration implies close contact between vesicles as an intermediate state.

作者信息

Lentz B R, Whitt N A, Alford D R, Burgess S W, Yates J C, Nir S

机构信息

Department of Biochemistry, University of North Carolina, Chapel Hill 27599-7260.

出版信息

Biochemistry. 1989 May 30;28(11):4575-80. doi: 10.1021/bi00437a011.

Abstract

We have investigated variations in the rate of Mn2+-catalyzed phosphatidylglycerol transbilayer migration [Lentz, Madden, & Alford (1982) Biochemistry 21, 6799] with changes in phospholipid and cation concentration over more than a 100-fold range of both parameters. The slope of a double logarithmic plot of the rate of transbilayer lipid migration versus lipid concentration was 1.7, suggesting that lipid redistribution was dependent on vesicle aggregation or collision. A model involving transitory dimerization of vesicles was able to account for the concentration dependence of the transbilayer redistribution rate. The observed variation in rate with the logarithm of Mn2+ concentration was complex: linear above 0.4 microM (corresponding to roughly 2.5 Mn2+ per vesicle) but involving a steeper dependence on Mn2+ below 0.04 microM (roughly four vesicles per Mn2+). The rate of transbilayer redistribution increased substantially between 37 and 56 degrees C, yielding a nonlinear Arrhenius plot. There was no evidence of either fusion or lipid exchange between vesicles at the low concentrations of Mn2+ needed for transbilayer redistribution. The data are consistent with a model suggesting transitory "micro-domains" of a dehydrated, interbilayer complex as involved in the transition state and are inconsistent with a model involving an inverted micelle-type structure for the transition state.

摘要

我们研究了在超过100倍的磷脂和阳离子浓度范围内,磷脂酰甘油跨双层迁移速率[伦茨、马登和阿尔福德(1982年),《生物化学》21卷,6799页]随磷脂和阳离子浓度变化的情况。跨双层脂质迁移速率与脂质浓度的双对数图的斜率为1.7,这表明脂质重新分布依赖于囊泡聚集或碰撞。一个涉及囊泡瞬时二聚化的模型能够解释跨双层重新分布速率的浓度依赖性。观察到的速率随Mn2+浓度对数的变化很复杂:在0.4微摩尔以上呈线性(大致相当于每个囊泡2.5个Mn2+),但在0.04微摩尔以下对Mn2+的依赖性更强(大致每一个Mn2+对应四个囊泡)。跨双层重新分布速率在37至56摄氏度之间大幅增加,产生了非线性的阿伦尼乌斯图。在跨双层重新分布所需的低浓度Mn2+下,没有证据表明囊泡之间存在融合或脂质交换。这些数据与一个模型一致,该模型表明脱水的跨双层复合物的瞬时“微区”参与了过渡态,并且与一个涉及过渡态为反胶束型结构的模型不一致。

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