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首页> 外文期刊>Chemistry and Physics of Lipids >Structure and water permeability of fully hydrated diphytanoylPC
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Structure and water permeability of fully hydrated diphytanoylPC

机译:完全水合二植烷酰PC的结构和透水性

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Diphytanoylphosphatidylcholine (DPhyPC) is a branched chain lipid often used for model membrane studies, including peptide/lipid interactions, ion channels and lipid rafts. This work reports results of volume measurements, water permeability measurements Pf, X-ray scattering from oriented samples, and X-ray and neutron scattering from unilamellar vesicles at T=30.C. We measured the volume/lipid VL = 1426±1?3. The area/lipid was found to be 80.5±1.5?2 when both X-ray and neutron data were combined with the SDP model analysis (Ku.cerka, N., Nagle, J.F., Sachs, J.N., Feller, S.E., Pencer, J., Jackson, A., Katsaras, J., 2008. Lipid bilayer structure determined by the simultaneous analysis of neutron and X-ray scattering data. Biophys. J. 95, 2356-2367); this is substantially larger than the area of DOPC which has the largest area of the common linear chain lipids. Pf was measured to be (7.0±1.0)×10-3 cm/s; this is considerably smaller than predicted by the recently proposed 3-slab model (Nagle, J.F., Mathai, J.C., Zeidel, M.L., Tristram-Nagle, S., 2008. Theory of passive permeability through lipid bilayers. J. Gen. Physiol. 131, 77-85). This disagreement can be understood if there is a diminished diffusion coefficient in the hydrocarbon core of DPhyPC and that is supported by previous molecular dynamics simulations (Shinoda, W., Mikami, M., Baba, T., Hato, M., 2004. Molecular dynamics study on the effects of chain branching on the physical properties of lipid bilayers. 2. Permeability. J. Phys. Chem. B 108, 9346-9356). While the DPhyPC head-head thickness (DHH = 36.4 ?), and Hamaker parameter (H= 4.5×10-21 J) were similar to the linear chain lipid DOPC, the bending modulus (KC = 5.2±0.5×10-21 J) was 30% smaller. Our results suggest that, from the biophysical perspective, DPhyPC belongs to a different family of lipids than phosphatidylcholines that have linear chain hydrocarbon chains.
机译:双植酰基磷脂酰胆碱(DPhyPC)是一种常用于模型膜研究的支链脂质,包括肽/脂质相互作用,离子通道和脂质筏。这项工作报告了体积测量,水渗透率测量Pf,定向样品的X射线散射以及T = 30.C下单层囊泡的X射线和中子散射的结果。我们测量了体积/脂质VL = 1426±1?3。当X射线和中子数据与SDP模型分析相结合时,发现面积/脂质为80.5±1.5?2(Ku.cerka,N.,Nagle,JF,Sachs,JN,Feller,SE,Pencer, J.,Jackson,A.,Katsaras,J.,2008。通过同时分析中子和X射线散射数据确定的脂质双层结构(Biophys.J.95,2356-2367); J.Jackson,A.,Katsuras,J.,2008。这比具有普通线性链脂质最大面积的DOPC的面积大得多。 Pf测得为(7.0±1.0)×10-3 cm / s;这远小于最近提出的三层平板模型(Nagle,JF,Mathai,JC,Zeidel,ML,Tristram-Nagle,S.,2008,通过脂质双层的被动渗透性理论,J.Gen.Physiol.Sci。,2005,48,1937)。 131,77-85)。如果在DPhyPC的烃核中扩散系数减小,并且先前的分子动力学模拟支持(Shinoda,W.,Mikami,M.,Baba,T.,Hato,M.,2004),则可以理解这种分歧。关于链支化对脂质双层的物理性质的影响的分子动力学研究; 2.渗透性,J.Phys.Chem.B 108,9346-9356。 DPhyPC头的厚度(DHH = 36.4?)和Hamaker参数(H = 4.5×10-21 J)与线性链脂质DOPC相似,而弯曲模量(KC = 5.2±0.5×10-21 J) )缩小了30%。我们的结果表明,从生物物理学的角度来看,与具有线性链烃链的磷脂酰胆碱相比,DPhyPC属于不同的脂质家族。

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