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含磷脂酰丝氨酸膜的曲率和弯曲常数。

Curvature and bending constants for phosphatidylserine-containing membranes.

作者信息

Fuller Nola, Benatti Carlos R, Rand R Peter

机构信息

Department of Biological Sciences, Brock University, St. Catharines, Ontario, Canada L2S 3A1.

出版信息

Biophys J. 2003 Sep;85(3):1667-74. doi: 10.1016/s0006-3495(03)74596-2.

Abstract

Phosphatidylserine (PS), an anionic phospholipid of significant biological relevance, forms a multilamellar phase in water with net negative surface charge at pH 7.0. In this study we mixed dioleoylPS (DOPS) with reverse hexagonal (H(II))-forming phosphatidylethanolamine (DOPE), and used x-ray diffraction and osmotic stress to quantify its spontaneous curvature (1/R(0p)) and bending modulus (K(cp)). The mixtures were stable H(II) phases from 5 to 30 mol% PS, providing 16 wt% tetradecane (td) was also added to relieve chain-packing stress. The fully hydrated lattice dimension increased with DOPS concentration. Analysis of structural changes gave an apparent R(0p) for DOPS of +144 A; opposite in sign and relatively flat compared to DOPE (-30 A). Osmotic stress of the H(II) phases did not detect a significantly different bending modulus (K(cp)) for DOPS as compared to DOPE. At pH < or = 4.0, DOPS (with no td) adopted the H(II) phase on its own, in agreement with previous results, suggesting a reversal in curvature upon protonation of the serine headgroup. In contrast, when td was present, DOPS/td formed a lamellar phase of limited swelling whose dimension increased with pH. DOPS/DOPE/td mixtures formed H(II) phases whose dimension increased both with pH and with DOPS content. With tetradecane, estimates put 1/R(0p) for DOPS at pH 2.1 at zero. Tetradecane apparently affects the degree of dissociation of DOPS at low pH.

摘要

磷脂酰丝氨酸(PS)是一种具有重要生物学意义的阴离子磷脂,在pH 7.0的水中形成具有净负表面电荷的多片层相。在本研究中,我们将二油酰磷脂酰丝氨酸(DOPS)与形成反相六方(H(II))相的磷脂酰乙醇胺(DOPE)混合,并使用X射线衍射和渗透压法来量化其自发曲率(1/R(0p))和弯曲模量(K(cp))。当添加16 wt%的十四烷(td)以缓解链堆积应力时,混合物在PS含量为5至30 mol%时形成稳定的H(II)相。完全水合的晶格尺寸随DOPS浓度增加。结构变化分析得出DOPS的表观R(0p)为 +144 Å;与DOPE(-30 Å)相比,符号相反且相对平缓。与DOPE相比,H(II)相的渗透压未检测到DOPS的弯曲模量(K(cp))有显著差异。在pH≤4.0时,DOPS(无td)自身形成H(II)相,这与先前的结果一致,表明丝氨酸头部质子化时曲率发生反转。相反,当存在td时,DOPS/td形成有限膨胀的层状相,其尺寸随pH增加。DOPS/DOPE/td混合物形成H(II)相,其尺寸随pH和DOPS含量增加。对于含有十四烷的情况,估计在pH 2.1时DOPS的1/R(0p)为零。十四烷显然影响低pH下DOPS的解离程度。

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