首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >A spin labelling study of immunomodulating peptidoglycan monomer and adamantyltripeptides entrapped into liposomes.
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A spin labelling study of immunomodulating peptidoglycan monomer and adamantyltripeptides entrapped into liposomes.

机译:包裹脂质体的免疫调节肽聚糖单体和金刚烷三肽的自旋标记研究。

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摘要

The interaction of immunostimulating compounds, the peptidoglycan monomer (PGM) and structurally related adamantyltripeptides (AdTP1 and AdTP2), respectively, with phospholipids in liposomal bilayers were investigated by electron paramagnetic resonance spectroscopy. (1) The fatty acids bearing the nitroxide spin label at different positions along the acyl chain were used to investigate the interaction of tested compounds with negatively charged multilamellar liposomes. Electron spin resonance (ESR) spectra were studied at 290 and 310 K. The entrapment of the adamantyltripeptides affected the motional properties of all spin labelled lipids, while the entrapment of PGM had no effect. (2) Spin labelled PGM was prepared and the novel compound bearing the spin label attached via the amino group of diaminopimelic acid was chromatographically purified and chemically characterized. The rotational correlation time of the spin labelled molecule dissolved in buffer at pH 7.4 was studied as a function of temperature. The conformational change was observed above 300 K. The same effect was observed with the spin labelled PGM incorporated into liposomes. Such effect was not observed when the spin labelled PGM was studied at alkaline pH, probably due to the hydrolysis of PGM molecule. The study of possible interaction with liposomal membrane is relevant to the use of tested compounds incorporated into liposomes, as adjuvants in vivo.
机译:通过电子顺磁共振波谱研究了免疫刺激化合物,肽聚糖单体(PGM)和结构相关的金刚烷基三肽(AdTP1和AdTP2)与脂质体双层中磷脂的相互作用。 (1)沿着酰基链在不同位置带有氮氧化物自旋标记的脂肪酸用于研究被测化合物与带负电荷的多层脂质体的相互作用。在290和310 K下研究了电子自旋共振(ESR)光谱。金刚烷三肽的包埋影响了所有自旋标记脂质的运动性质,而PGM的包埋则没有影响。 (2)制备了自旋标记的PGM,并通过色谱纯化和化学表征了带有通过二氨基庚二酸的氨基连接的带有自旋标记的新型化合物。研究了自旋标记分子在pH 7.4下溶解在缓冲液中的旋转相关时间与温度的关系。在300 K以上观察到构象变化。掺入脂质体中的自旋标记的PGM观察到相同的效果。当在碱性pH下研究自旋标记的PGM时未观察到这种效果,这可能是由于PGM分子的水解所致。与脂质体膜可能相互作用的研究与体内掺入佐剂的被测化合物的使用有关。

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