Fleming P J, Koppel D E, Lau A L, Strittmatter P
Biochemistry. 1979 Nov 27;18(24):5458-64. doi: 10.1021/bi00591a031.
We have developed a method to measure the intramembrane position of the fluorescent tryptophanyl residue in whole cytochrome b5 and the nonpolar membrane binding segment when these molecules are bound to phospholipid vesicles [Koppel, D.E., Fleming, P., & Strittmatter, P. (1979) Biochemistry (preceding paper in this issue)]. The method utilizes excitation energy transfer from the donor tryptophanyl residue in the protein to trinitrophenyl or danysl acceptor groups on the surface of the phospholipid bilayer. It was determined that that single fluorescent tryptophanyl residue in vesicle-bound cytochrome b5 and the nonpolar segment is located approximately 20-22 A below the surface of the bilayer. This position represents a minimum depth of penetration of this portion of the cytochrome in the membrane.
我们已经开发出一种方法,用于测量全细胞色素b5以及非极性膜结合片段中荧光色氨酸残基在膜内的位置,前提是这些分子与磷脂囊泡结合 [科普尔,D.E.,弗莱明,P.,& 斯特里特马特,P.(1979年)《生物化学》(本期前一篇论文)]。该方法利用从蛋白质中供体色氨酸残基到磷脂双分子层表面上三硝基苯基或丹磺酰受体基团的激发能量转移。已确定囊泡结合的细胞色素b5和非极性片段中的单个荧光色氨酸残基位于双分子层表面以下约20 - 22埃处。该位置代表细胞色素这一部分在膜中的最小穿透深度。