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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effects of short-chain alcohols on the phase behavior and interdigitation of phosphatidylcholine bilayer membranes
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Effects of short-chain alcohols on the phase behavior and interdigitation of phosphatidylcholine bilayer membranes

机译:短链醇对磷脂酰胆碱双层膜相行为及间断的影响

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摘要

Solute effects on the polymorphism and phase transitions in the suspensions of dipalmitoylphosphatidylcholine (DPPC) were studied by means of carboxyfluorescein (CF) and phosphatidylethanolamine rhodamine (PERho) fluorescence, differential scanning calorimetry, and X-ray diffraction. Specifically, the shifts of the lipid chain-melting phase transition, pretransition and subtransition temperature as a function of the bulk alcohol concentration were determined calorimetrically. The chain-melting phase transition temperature, Tm, was found to depend on the chain-length of the added alcohol: for short-chain alcohols (up to n-propanol), Tm first decreases and then increases with increasing alcohol concentration. For longer-chain alcohols, however, Tm decreases over the whole investigated alcohol concentration range. The pretransition and the subtransition temperature of DPPC both decrease monotonously (but non-linearly) with increasing alcohol concentration, but the former transition disappears at some characteristic, chain-length dependent alcohol concentration, cLβi . This point in the solute-dependent phase diagram of DPPC is diagnostic of the complete hydrocarbon interdigitation. It was determined for a series of short-chain alcohols ranging from methanol through to 1-hexanol. A quantitative formula for the calculation of such limiting alcohol concentration is introduced. This formula relates the cLβi values to the free energy of transfer of alcohols from the aqueous sub-phase into the DPPC sub-phase. By using the concept of an apparent chain-length this formalism can also be used for the alcohols with polar OH-groups at the second or third position on the hydrocarbon chain. Alcohol-induced hydrocarbon interdigitation in the phospholipid bilayers is thus shown to result chiefly from the solute-induced perturbation (lateral expansion) in the lipid headgroup region. Longer-chain alcohols, which balance this effect by disordering the phospholipid chains, therefore do not induce chain interdigitation.
机译:通过羧基荧光素(CF)和磷脂酰乙醇胺罗丹明(Perho)荧光,差示扫描量热法和X射线衍射研究了对二硫代酰磷脂酰氨基磷磷胆碱(DPPC)的多态性和相转变的溶质作用。具体地,随着量散地测定脂质链 - 熔化相转变,预推翻和亚转移温度作为本体醇浓度的函数的偏移。发现链熔相转变温度Tm,取决于添加的醇的链长:对于短链醇(最多正常),Tm首先降低,然后随醇浓度的增加而增加。然而,对于长链醇,TM在整个研究的酒精浓度范围内降低。 DPPC的预推翻和亚旋转温度随着醇浓度的增加而单调(但非线性)降低,但前过渡在一些特征,链长依赖性酒精浓度下,CLβI消失。 DPPC的溶质依赖性相图中的这一点是完全碳氢化合物间隔的诊断。确定一系列从甲醇到1-己醇的短链醇。引入了计算这种限制醇浓度的定量公式。该公式将Clβi值与从含水亚阶段转移到DPPC子阶段的自由能量。通过使用表观链长的概念,这种形式主义也可用于在烃链上的第二或第三位置的极性OH-基团的醇。因此,磷脂双层中的醇诱导的烃间隔主要是主要来自脂质头组区域中的溶质诱导的扰动(横向膨胀)。长链醇,通过使磷脂链失调这种效果,因此不会诱导链间隔。

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