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镧离子与磷脂酰丝氨酸囊泡的相互作用:结合、相变、渗漏、31P核磁共振及融合

Interactions of La2+ with phosphatidylserine vesicles: binding, phase transition, leakage, 31P-NMR and fusion.

作者信息

Hammoudah M M, Nir S, Bentz J, Mayhew E, Stewart T P, Hui S W, Kurland R J

出版信息

Biochim Biophys Acta. 1981 Jul 6;645(1):102-14. doi: 10.1016/0005-2736(81)90517-4.

Abstract

The interaction of La2+ with phosphatidylserine vesicles is studied by differential scanning calorimetry, 140La binding, 31P-NMR chemical shifts and relaxation rates, carboxyfluorescein and [14C]sucrose release, X-ray diffraction and freeze-fracture electron microscopy. In the presence of La3+ concentrations above 1 mM and an incubation temperature of 38 degrees C, i.e., at the phase transition temperature of the complex La/phosphatidylserine, the binding ratio of La/lipid exceeds a 1/3 ratio, reaching saturation at a 1/2 ratio. Analysis, employing a modified Gouy-Chapman equation, indicates a significant increase in the intrinsic binding constant of La/phosphatidylserine when the La3+ concentrations exceeds the threshold concentration for leakage. The analysis illustrates that at the molecular level the binding of La3+ can be comparable to or even weaker than that of Ca2+, but that even when present at smaller concentrations La3+ competes with and partially displaces Ca2+ from membranes or other negatively charged surfaces. The results suggest that the sequence La3+ greater than Ca2+ greater than Mg2+ reflects both the binding strength of these cations to phosphatidylserine as well as their ability to induce leakage, enhancement of 31P spin-lattice relaxation rates, fusion and other structural changes. The leakage, fusion, and other structural changes are more pronounced at the phase transition temperature of the La/lipid complex.

摘要

通过差示扫描量热法、¹⁴⁰La结合、³¹P-NMR化学位移和弛豫速率、羧基荧光素和[¹⁴C]蔗糖释放、X射线衍射以及冷冻断裂电子显微镜研究了La²⁺与磷脂酰丝氨酸囊泡的相互作用。在La³⁺浓度高于1 mM且孵育温度为38℃的情况下,即在配合物La/磷脂酰丝氨酸的相变温度下,La/脂质的结合比超过1/3的比例,在1/2的比例时达到饱和。采用修正的古伊-查普曼方程进行分析表明,当La³⁺浓度超过泄漏阈值浓度时,La/磷脂酰丝氨酸的固有结合常数显著增加。分析表明,在分子水平上,La³⁺的结合可能与Ca²⁺相当甚至更弱,但即使以较低浓度存在时,La³⁺也会与Ca²⁺竞争并部分取代膜或其他带负电荷表面上的Ca²⁺。结果表明,La³⁺>Ca²⁺>Mg²⁺这一顺序既反映了这些阳离子与磷脂酰丝氨酸的结合强度,也反映了它们诱导泄漏、增强³¹P自旋 - 晶格弛豫速率、融合及其他结构变化的能力。在La/脂质配合物的相变温度下,泄漏、融合及其他结构变化更为明显。

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