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Simulation of the gel-fluid transition in a membrane composed of lipids with two connected acyl chains: application of a dimer-move step.

机译:在由具有两个连接的酰基链的脂质组成的膜中模拟凝胶-流体过渡:应用二聚体移动步骤。

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摘要

Phospholipids have been treated as dimers on a hexagonal lattice, and a move has been introduced that allows the dimers to move and change their orientation on the lattice. Simulations have been performed in which phospholipid chains have been treated as being either independent or infinitely coupled thermodynamically with regard to their conformational state. Both types of simulation have reproduced well experimental heat-capacity curves of dipalmitoyl phosphatidylcholine small unilamellar vesicles. Apart from a different gel-fluid interaction parameter and a different number of unlike nearest-neighbor contacts, most of the averages and thermodynamic quantities were essentially the same in the two types of simulation. These results indicate that the transition is not first order and validate those of previous Monte Carlo simulations that have neglected the dimeric nature of phospholipids in the sense that they show that for the thermotropic transition the approximation of phospholipids as monomers is valid.
机译:磷脂已被视为六边形晶格上的二聚体,并且已经引入了一种移动,该移动允许二聚体移动并更改其在晶格上的方向。已经进行了模拟,其中磷脂链就其构象状态而言被认为是热力学上独立的或无限地偶联的。两种模拟都很好地再现了二棕榈酰磷脂酰胆碱小单层囊泡的实验热容量曲线。除了不同的凝胶-流体相互作用参数和不同数量的不同的最近邻触点之外,在两种类型的模拟中,大多数平均值和热力学量基本相同。这些结果表明,该转变不是一阶的,并验证了先前忽略了磷脂二聚体性质的蒙特卡洛模拟的意义,因为它们表明对于热致转变,将磷脂作为单体进行近似是有效的。

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