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通过添加酸性磷脂和冻融超声处理在大脂质体中重建钠通道。

Reconstitution of sodium channels in large liposomes formed by the addition of acidic phospholipids and freeze-thaw sonication.

作者信息

Miguel V, Balbi D, Castillo C, Villegas R

机构信息

Instituto Internacional de Estudios Avanzados (IDEA), Caracas, Venezuela.

出版信息

J Membr Biol. 1992 Jul;129(1):37-47. doi: 10.1007/BF00232053.

Abstract

Phosphatidylcholine (PC) alone or with phosphatidylethanolamine (PE) are sufficient for the reconstitution of Na+ channels in planar lipid bilayers. However, when Na+ channels were first reconstituted into liposomes using the freeze-thaw-sonication method, addition of acidic phospholipids, such as phosphatidylserine (PS), to the neutral phospholipids was necessary to obtain a significant toxin-modulated 22Na uptake. To further investigate the acidic phospholipid effect on reconstitution into liposomes, Na+ channels purified from Electrophorus electricus electrocytes were reconstituted into liposomes of different composition by freeze-thaw sonication and the effect of batrachotoxin and tetrodotoxin on the 22Na flux was measured. The results revealed that, under our experimental conditions, the presence of an acidic phospholipid was also necessary to obtain a significant neurotoxin-modulated 22Na influx. Though neurotoxin-modulated 22Na fluxes have been reported in proteoliposomes made with purified Na+ channels and PC alone, the 22Na fluxes were smaller than those found using lipid mixtures containing acidic phospholipids. Electron microscopy of negatively stained proteoliposomes prepared with PC, PC/PS (1:1 molar ratio), and PS revealed that the acidic phospholipid increases the size of the reconstituted proteoliposomes. The increment in size caused by the acidic phospholipid, due to the associated increase in internal volume for 22Na uptake and in area for Na+ channel incorporation, appears to be responsible for the large neurotoxin-modulated 22Na fluxes observed.

摘要

单独的磷脂酰胆碱(PC)或与磷脂酰乙醇胺(PE)一起,对于在平面脂质双分子层中重建钠通道是足够的。然而,当使用冻融超声法首次将钠通道重建到脂质体中时,向中性磷脂中添加酸性磷脂,如磷脂酰丝氨酸(PS),对于获得显著的毒素调节的22Na摄取是必要的。为了进一步研究酸性磷脂对重建到脂质体中的影响,通过冻融超声将从电鳗电细胞中纯化的钠通道重建到不同组成的脂质体中,并测量了蛙毒素和河豚毒素对22Na通量的影响。结果表明,在我们的实验条件下,酸性磷脂的存在对于获得显著的神经毒素调节的22Na内流也是必要的。尽管在仅用纯化的钠通道和PC制成的蛋白脂质体中已经报道了神经毒素调节的22Na通量,但22Na通量比使用含有酸性磷脂的脂质混合物时发现的通量要小。用PC、PC/PS(1:1摩尔比)和PS制备的负染蛋白脂质体的电子显微镜观察表明,酸性磷脂增加了重建的蛋白脂质体的大小。酸性磷脂引起的大小增加,由于22Na摄取的内部体积和钠通道掺入的面积相关增加,似乎是观察到的大量神经毒素调节的22Na通量的原因。

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