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膜融合研究。III. 钙诱导相变的作用。

Studies on membrane fusion. III. The role of calcium-induced phase changes.

作者信息

Papahadjopoulos D, Vail W J, Newton C, Nir S, Jacobson K, Poste G, Lazo R

出版信息

Biochim Biophys Acta. 1977 Mar 17;465(3):579-98. doi: 10.1016/0005-2736(77)90275-9.

Abstract

The interaction of phosphatidylserine vesicles with Ca2+ and Mg2+ has been examined by several techniques to study the mechanism of membrane fusion. Data are presented on the effects of Ca2+ and Mg2+ on vesicle permeability, thermotropic phase transitions and morphology determined by differential scanning calorimetry, X-ray diffraction, and freeze-fracture electron microscopy. These data are discussed in relation to information concerning Ca2+ binding, charge neutralization, molecular packing, vesicle aggregation, phase transitions, phase separations and vesicle fusion. The results indicate that at Ca2+ concentrations of 1.0-2.0 mM, a highly cooperative phenomenon occurs which results in increased vesicle permeability, aggregation and fusion of the vesicles. Under these conditions the hydrocarbon chains of the lipid bilayers undergo a phase change from a fluid to a crystalline state. The aggregation of vesicles that is observed during fusion is not sufficient range of 2.0-5.0 mM induces aggregation of phosphatidylserine vesicles but no significant fusion nor a phase change. From the effect of variations in pH, temperature, Ca2+ and Mg2+ concentration on the fusion of vesicles, it is concluded that the key event leading to vesicle membrane fusion is the isothermic phase change induced by the bivalent metals. It is proposed that this phase change induces a transient destabilization of the bilayer membranes that become susceptible to fusion at domain boundaries.

摘要

已通过多种技术研究了磷脂酰丝氨酸囊泡与Ca2+和Mg2+的相互作用,以探讨膜融合机制。本文给出了Ca2+和Mg2+对囊泡通透性、热致相变以及通过差示扫描量热法、X射线衍射和冷冻断裂电子显微镜测定的形态学影响的数据。结合有关Ca2+结合、电荷中和、分子堆积、囊泡聚集、相变、相分离和囊泡融合的信息对这些数据进行了讨论。结果表明,在Ca2+浓度为1.0 - 2.0 mM时,会发生一种高度协同的现象,导致囊泡通透性增加、囊泡聚集和融合。在这些条件下,脂质双层的烃链经历从流体状态到结晶状态的相变。在融合过程中观察到的囊泡聚集不足以在2.0 - 5.0 mM范围内诱导磷脂酰丝氨酸囊泡聚集,但不会导致明显的融合或相变。从pH值、温度、Ca2+和Mg2+浓度变化对囊泡融合的影响得出结论,导致囊泡膜融合的关键事件是二价金属诱导的等温相变。有人提出,这种相变会引起双层膜的瞬时不稳定,使其在结构域边界处易于融合。

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