首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Stability of the two-dimensional lattice of bacteriorhodopsin reconstituted in partially fluorinated phosphatidylcholine bilayers
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Stability of the two-dimensional lattice of bacteriorhodopsin reconstituted in partially fluorinated phosphatidylcholine bilayers

机译:在部分氟化的磷脂酰胆碱双层中重构的细菌磷脂二维晶格的稳定性

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摘要

This study aims to investigate bacteriorhodopsin (bR) molecules reconstituted in lipid bilayers composed of di (nonafluorotetradecanoyl)-phosphatidylcholine (F4-DMPC), a partially fluorinated analogue of dimyristoyl-phosphatidylcholine (DMPC) to clarify the effects of partially fluorinated hydrophobic chains of lipids on protein's stability. Calorimetry measurements showed that the chain-melting transition of F4-DMPC/bR systems occurs at 3.5 degrees C, whereas visible circular dichroism (CD) and X-ray diffraction measurements showed that a two-dimensional (2D) hexagonal lattice formed by bR trimers in F4-DMPC bilayers remains intact even above 30 degrees C, similar to bR in a native purple membrane. Complete dissociation of the trimers into the monomers detected by visible CD almost coincides with the complete melting of 2D lattice observed by X-ray diffraction, in which both take place at around 65 degrees C (10 degrees C lower than that for bR in a native purple membrane). However, it is extremely high in comparison with the bR reconstituted in DMPC bilayers in which the dissociation of bR timer in DMPC bilayers occurs near the chain-melting transition temperature of DMPC bilayers at approximately 18 degrees C. In order to explore the rationale behind the difference in stability, a further investigation of the detailed structural features of pure F4-DMPC bilayers was performed by analyzing the lamellar diffraction data using simple electron density models. The results suggested that the perfluoroalkyl groups do not exhibit any conformation change even if the chain-melting transition occurs, which is likely to contribute to the stability of the 2D hexagonal lattice formed by the bR trimers.
机译:本研究旨在研究在由二(非氟二烷酰基) - 磷脂酰胆碱(F4-DMPC)组成的脂质双层中重构的脂质双层(F4-DMPC),是Divyristoyl-磷脂酰胆碱(DMPC)的部分氟化物类似物,以阐明脂质的部分氟化疏水链的影响论蛋白质的稳定性。量热测量结果表明,F4-DMPC / BR系统的链熔化过渡发生在3.5摄氏度,而可见圆形二色(CD)和X射线衍射测量结果表明,BR三角形形成的二维(2D)六边形晶格在F4-DMPC中,双层甚至保持完整,甚至保持在30摄氏度高于30℃,类似于天然紫色膜中的BR。用可见Cd检测到的单体的完全解离几乎与X射线衍射观察到的2D晶格的完全熔化几乎一致,其中两者在约65摄氏度(10摄氏度低于本地时的10℃紫色膜)。然而,与在DMPC双层中重构的BR重构的BR重构的比较是非常高的,其中DMPC双层的BR定时器的解离发生在大约18℃的DMPC双层的链熔化温度附近。为了探讨所在的理由稳定性差异,通过使用简单的电子密度模型分析层状衍射数据来进行纯F4-DMPC双层的详细结构特征的进一步研究。结果表明,即使发生链熔化的转变,全氟烷基不会表现出任何构象变化,这可能有助于BR三角形形成的2D六方晶格的稳定性。

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