首页> 美国卫生研究院文献>Biophysical Journal >Differential scanning calorimetry of thermotropic phase transitions in vitaminylated lipids: aqueous dispersions of N-biotinyl phosphatidylethanolamines.
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Differential scanning calorimetry of thermotropic phase transitions in vitaminylated lipids: aqueous dispersions of N-biotinyl phosphatidylethanolamines.

机译:维生素化脂质中的热致相变的差示扫描量热法:N-生物素基磷脂酰乙醇胺的水分散体。

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摘要

The thermotropic phase behavior of a homologous series of saturated diacyl phosphatidylethanolamines in which the headgroup is N-derivatized with biotin has been investigated by differential scanning calorimetry. In 1 M NaCl, derivatives with acyl chainlengths from C(12:0) to C(20:0) all exhibit sharp chain-melting phase transitions, which are reversible with a hysteresis of 1.5 degrees or less, except for the C(12:0) lipid which has a transition temperature below 0 degree C. The transition enthalpy and the transition entropy depend approximately linearly on the lipid chainlength, with incremental values per CH2 group that are very similar to those obtained for the corresponding underivatized phosphatidylethanolamines in aqueous dispersion. The chainlength-independent contribution to the transition enthalpy is significantly smaller than that for the underivatized phosphatidylethanolamines, and that for the transition entropy is much smaller; the latter suggesting that the N-biotinylated phosphatidylethanolamine headgroups are differently hydrated from those of the underivatized lipids. The gel-to-fluid phase transition temperatures of the N-biotinylated lipids are lower than those of the parent phosphatidylethanolamines, and their chainlength dependence conforms well with that predicted by assuming that the transition enthalpy and entropy are linearly dependent on chainlength. Although the chain-melting phase behavior is generally similar to that of the parent phosphatidylethanolamines, the gel phases (and the fluid phases in the case of chainlengths C(12:0) to C(16:0)) have a different lyotropic structure in the two cases, and this is reflected in the chainlength-independent contributions to the thermodynamic parameters. In the absence of salt, the thermotropic phase behavior of aqueous dispersions of the N-biotinyl phosphatidylethanolamines is considerably more complex. The transition temperatures are consistently lower than those in 1 M NaCI, but the transitions are broader, contain multiple peaks and exhibit a much larger hysteresis between heating and cooling scans. Additionally, the lipids with shorterchainlengths exhibit metastability in the absence of salt, converting from a micellar solution to a lamellar gel phase only after incubation at low temperature with freeze-thaw cycling.
机译:已经通过差示扫描量热法研究了其中头基被生物素N-衍生化的饱和二酰基磷脂酰乙醇胺的同源系列的热致变相行为。在1 M NaCl中,酰基链长从C(12:0)到C(20:0)的衍生物都表现出尖锐的链熔化相变,除了C(12 :0)具有低于0摄氏度的转变温度的脂质。转变焓和转变熵近似线性地取决于脂质链长,每个CH2基团的增量值与在水分散体中相应的未衍生磷脂酰乙醇胺获得的值非常相似。与未衍生的磷脂酰乙醇胺相比,不依赖链长的对过渡焓的贡献要小得多,而对过渡熵的贡献则小得多。后者表明N-生物素化的磷脂酰乙醇胺头基与未衍生脂质的水合程度不同。 N-生物素化脂质的凝胶-流体相变温度低于母体磷脂酰乙醇胺,其链长依赖性与假设过渡焓和熵线性依赖于链长的预测值相符。尽管链熔化相的行为通常与母体磷脂酰乙醇胺相似,但凝胶相(以及在链长为C(12:0)至C(16:0)的情况下为液相)的溶相结构不同。两种情况,这反映在链长对热力学参数的影响上。在没有盐的情况下,N-生物素基磷脂酰乙醇胺的水分散体的热致相行为相当复杂。转变温度始终低于1 M NaCl中的转变温度,但转变范围更宽,包含多个峰并在加热和冷却扫描之间显示出更大的滞后。另外,具有较短链长的脂质在不存在盐的情况下表现出亚稳定性,仅在低温下用冻融循环孵育后才从胶束溶液转变为层状凝胶相。

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