Levental Ilya, Christian David A, Wang Yu-Hsiu, Madara Jonathan J, Discher Dennis E, Janmey Paul A
Department of Bioengineering, University of Pennsylvania, Philadelphia,Pennsylvania 19104, USA.
Biochemistry. 2009 Sep 1;48(34):8241-8. doi: 10.1021/bi9007879.
Biological membrane function, in part, depends upon the local regulation of lipid composition. The spatial heterogeneity of membrane lipids has been extensively explored in the context of cholesterol and phospholipid acyl-chain-dependent domain formation, but the effects of lipid head groups and soluble factors in lateral lipid organization are less clear. In this contribution, the effects of divalent calcium ions on domain formation in monolayers containing phosphatidylinositol 4,5-bisphosphate (PIP2), a polyanionic, multifunctional lipid of the cytosolic leaflet of the plasma bilayer, are reported. In binary monolayers of PIP2 mixed with zwitterionic lipids, calcium induced a rapid, PIP2-dependent surface pressure drop, with the concomitant formation of laterally segregated, PIP2-rich domains. The effect was dependent upon head-group multivalency, because lowered pH suppressed the surface-pressure effect and domain formation. In accordance with previous observations, inclusion of cholesterol in lipid mixtures induced coexistence of two liquid phases. Phase separation strongly segregated PIP2 to the cholesterol-poor phase, suggesting a role for cholesterol-dependent lipid demixing in regulating PIP2 localization and local concentration. Similar to binary mixtures, subphase calcium induced contraction of ternary cholesterol-containing monolayers; however, in these mixtures, calcium induced an unexpected, PIP2- and multivalency-dependent decrease in the miscibility phase transition surface pressure, resulting in rapid dissolution of the domains. This result emphasizes the likely critical role of subphase factors and lipid head-group specificity in the formation and stability of cholesterol-dependent domains in cellular plasma membranes.
生物膜功能部分取决于脂质组成的局部调节。膜脂的空间异质性已在胆固醇和磷脂酰基链依赖性结构域形成的背景下得到广泛研究,但脂质头部基团和可溶性因子在横向脂质组织中的作用尚不清楚。在本论文中,报道了二价钙离子对含有磷脂酰肌醇4,5-二磷酸(PIP2)的单层膜中结构域形成的影响,PIP2是质膜双层胞质小叶中的一种多阴离子、多功能脂质。在PIP2与两性离子脂质的二元单层膜中,钙诱导了快速的、依赖于PIP2的表面压力下降,并伴随形成横向分离的、富含PIP2的结构域。这种效应取决于头部基团的多价性,因为降低pH值会抑制表面压力效应和结构域形成。与先前的观察结果一致,脂质混合物中加入胆固醇会诱导两种液相共存。相分离将PIP2强烈分离到贫胆固醇相中,表明胆固醇依赖性脂质分离在调节PIP2定位和局部浓度中起作用。与二元混合物类似,亚相钙诱导含胆固醇的三元单层膜收缩;然而,在这些混合物中,钙诱导了意想不到的、依赖于PIP2和多价性的混溶相转变表面压力降低,导致结构域迅速溶解。这一结果强调了亚相因子和脂质头部基团特异性在细胞质膜中胆固醇依赖性结构域形成和稳定性中可能起的关键作用。