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Differential scanning calorimetric study of the effect of sterol side chain length and structure on dipalmitoylphosphatidylcholine thermotropic phase behavior.

机译:差示扫描量热法研究固醇侧链长度和结构对二棕榈酰磷脂酰胆碱热致变相行为的影响。

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摘要

We have investigated the thermotropic phase behavior of dipalmitoylphosphatidylcholine (DPPC) bilayers containing a series of cholesterol analogues varying in the length and structure of their alkyl side chains. We find that upon the incorporation of up to approximately 25 mol % of any of the side chain analogues, the DPPC main transition endotherm consists of superimposed sharp and broad components representing the hydrocarbon chain melting of sterol-poor and sterol-rich phospholipid domains, respectively. Moreover, the behavior of these components is dependent on sterol side chain length. Specifically, for all sterol/DPPC mixtures, the sharp component enthalpy decreases linearly to zero by 25 mol % sterol while the cooperativity is only moderately reduced from that observed in the pure phospholipid. In addition, the sharp component transition temperature decreases for all sterol/DPPC mixtures; however, the magnitude of the decrease is dependent on the sterol side chain length. With respect to the broad component, the enthalpy initially increases to a maximum around 25 mol % sterol, thereafter decreasing toward zero by 50 mol % sterol with the exception of the sterols with very short alkyl side chains. Both the transition temperature and cooperativity of the broad component clearly exhibit alkyl chain length-dependent effects, with both the transition temperature and cooperativity decreasing more dramatically for sterols with progressively shorter side chains. We ascribe the chain length-dependent effects on transition temperature and cooperativity to the hydrophobic mismatch between the sterol and the host DPPC bilayer (see McMullen, T. P. W., Lewis, R. N. A. H., and McElhaney, R. N. (1993) Biochemistry 32:516-522). Moreover, the effective stoichiometry of sterol/DPPC interactions is altered by a significantly large degree of hydrophobic mismatch between the sterol and the DPPC bilayer. Thus the short chain sterols appear to exhibit considerable immiscibility in gel state DPPC bilayers, effectively limiting their interaction with adjacent phospholipid molecules.
机译:我们已经研究了含有一系列胆固醇类似物的烷基侧链的长度和结构不同的二棕榈酰磷脂酰胆碱(DPPC)双层的热致变相行为。我们发现,在掺入高达约25mol%的任何侧链类似物时,DPPC主过渡吸热由叠加的尖锐和宽泛的组分组成,分别代表贫固醇和富固醇磷脂结构域的烃链熔化。 。此外,这些组分的行为取决于固醇侧链的长度。具体而言,对于所有固醇/ DPPC混合物,尖锐的组分焓线性降低至25%(摩尔),为零,而协同性仅比纯磷脂中的中等降低。此外,所有固醇/ DPPC混合物的急剧组分转变温度都会降低;然而,减少的幅度取决于固醇侧链的长度。关于宽组分,焓最初增加至约25mol%固醇的最大值,然后除了具有非常短的烷基侧链的甾醇以外,向零降低50mol%的固醇。宽组分的转变温度和协同性都清楚地显示出烷基链长度依赖性的作用,对于具有越来越短的侧链的甾醇,转变温度和协同性都更加显着地降低。我们将链长依赖的转变温度和对甾醇与宿主DPPC双层之间的疏水错配的协同作用归因于其作用(参见McMullen,T.P. W.,Lewis,R.N.A. H.和McElhaney,R.N.(1993)Biochemistry 32:516-522)。此外,固醇和DPPC双层之间的疏水性错配程度非常大,从而改变了固醇/ DPPC相互作用的有效化学计量。因此,短链固醇似乎在凝胶态DPPC双层中显示出明显的不溶混性,有效地限制了它们与相邻磷脂分子的相互作用。

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