Huang Li, Ming Ming, Liu Jia, Liu Jian, Li Qing-Guo, Ding Jian-Dong
Department of Physiology and Biophysics, School of Life Sciences, Fudan University, Shanghai 200433, China.
Sheng Wu Hua Xue Yu Sheng Wu Wu Li Xue Bao (Shanghai). 2003 Apr;35(4):391-5.
Bacteriorhodopsin is a membrane protein of halobacteria and functions as a light-driven protein pump. After we isolated bR from cultured halobacteria, bR was mixed with amphiphilic DPPC under different pH. The liposomes were formed after sonication. The remaining biological activity of bR as a proton pump was then verified and pulsed-light-induced proton movement was detected, while liposomes were observed via TEM and light scattering. Although there was no noticeable difference in morphologies of both vesicles formed at pH=2.5 and pH=7.0, the orientations of bR in both liposomes were found to be opposite under these two conditions. This experiment confirmed that the protein bR, when self-assembling into liposomes under acid medium, kept the similar orientation as in the natural plasmid membrane. Such a normal-orientation was, however, different from most of reports in the literature about liposomes prepared under normal neutral conditions.
细菌视紫红质是嗜盐菌的一种膜蛋白,作为光驱动蛋白泵发挥作用。我们从培养的嗜盐菌中分离出细菌视紫红质(bR)后,将其在不同pH值下与两亲性二棕榈酰磷脂酰胆碱(DPPC)混合。超声处理后形成脂质体。然后验证了bR作为质子泵的剩余生物活性,并检测了脉冲光诱导的质子运动,同时通过透射电子显微镜(TEM)和光散射观察脂质体。尽管在pH = 2.5和pH = 7.0条件下形成的两种囊泡形态没有明显差异,但发现在这两种条件下,bR在两种脂质体中的取向相反。该实验证实,蛋白质bR在酸性介质中自组装成脂质体时,保持了与天然质膜中相似的取向。然而,这种正常取向与文献中大多数关于在正常中性条件下制备脂质体的报道不同。