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阴离子磷脂 DMPG 的熔融态:新的层状相和多孔双层模型。

Melting regime of the anionic phospholipid DMPG: new lamellar phase and porous bilayer model.

机构信息

Facoltà di Scienze, Dipartimento SAIFET, Sezione di Scienze Fisiche, Università Politecnica delle Marche and CNISM, Ancona, Italy.

出版信息

Langmuir. 2010 May 4;26(9):6484-93. doi: 10.1021/la9039623.

Abstract

Aqueous dispersions of the anionic phospholipid dimyristoyl phosphatidylglycerol (DMPG) at pH above the apparent pK of DMPG and concentrations in the interval 70-300 mM have been investigated by small (SAXS) and wide-angle X-ray scattering, differential scanning calorimetry, and polarized optical microscopy. The order-disorder transition of the hydrocarbon chains occurs along an interval of about 10 degrees C (between T(m)(on) approximately 20 degrees C and T(m)(off) approximately 30 degrees C). Such melting regime was previously characterized at lower concentrations, up to 70 mM DMPG, when sample transparency was correlated with the presence of pores across the bilayer. At higher concentrations considered here, the melting regime persists but is not transparent. Defined SAXS peaks appear and a new lamellar phase L(p) with pores is proposed to exist above 70 mM DMPG, starting at approximately 23 degrees C (approximately 3 degrees C above T(m)(on)) and losing correlation after T(m)(off). A new model for describing the X-ray scattering of bilayers with pores, presented here, is able to explain the broad band attributed to in-plane correlation between pores. The majority of cell membranes have a net negative charge, and the opening of pores across the membrane tuned by ionic strength, temperature, and lipid composition is likely to have biological relevance.

摘要

在 pH 值高于阴离子磷脂二肉豆蔻酰磷脂酰甘油 (DMPG) 的表观 pK 值且浓度在 70-300mM 之间的条件下,通过小角(SAXS)和广角 X 射线散射、差示扫描量热法和偏光显微镜研究了 DMPG 的水基分散体。烃链的有序-无序转变发生在大约 10°C 的间隔内(在约 20°C 的 T(m)(on)和约 30°C 的 T(m)(off)之间)。这种熔融机制在较低浓度下,直至 70mM DMPG 时,曾被以前的研究进行过特征描述,当时样品透明度与双层膜中存在的孔相关联。在考虑到的更高浓度下,熔融机制仍然存在,但不透明。出现了明确的 SAXS 峰,并提出在高于 70mM DMPG 时存在具有孔的新层状相 L(p),起始于约 23°C(约高于 T(m)(on)3°C),并在 T(m)(off)后失去相关性。这里提出的一种新模型能够解释归因于孔之间平面相关性的宽带,用于描述具有孔的双层膜的 X 射线散射。大多数细胞膜带有净负电荷,通过离子强度、温度和脂质组成来调节跨膜孔的打开,这可能具有生物学相关性。

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