Section of Plant Biology, Cornell University, Ithaca, New York 14853.
Proc Natl Acad Sci U S A. 1981 Sep;78(9):5583-7. doi: 10.1073/pnas.78.9.5583.
Chromatophores of Rhodopseudomonas sphaeroides yield the antenna complex B850 in either of two states, depending on the method of isolation. Methods using dodecyl (= lauryl) dimethylamine oxide yield B850 with an absorption spectrum like that in vivo: the bands at 800 and 850 nm, due to the bacteriochlorophyll (Bchl) components Bchl-800 and Bchl-850, are in ratio A(800)/A(850) = 0.65 +/- 0.05. When B850 is isolated by methods using dodecyl sulfate, the Bchl-800 is attenuated or absent. Bchl assays of these materials and of the isolated antenna complex B875 yielded the following extinction coefficients, +/-SD, on the basis of the molarity of Bchl: For B875, epsilon(875) = 126 +/- 8 mM(-1) cm(-1). For B850 in the normal (high-Bchl-800) state, epsilon(850) = 132 +/- 10 mM(-1) cm(-1). For the individual components of Bchl in B850, epsilon(850) of Bchl-850 = 184 +/- 13 mM(-1) cm(-1) and epsilon(800) of Bchl-800 = 213 +/- 28 mM(-1) cm(-1). With these coefficients the molecular ratio of Bchl-850 to Bchl-800 equals 1.8 +/- 0.4 for B850 in the high-Bchl-800 state. Starting with B850 depleted of Bchl-800, the addition of dodecyldimethylamine oxide restored the 800-nm absorption band. The 850-nm band became shifted toward the blue, narrowed, and slightly attenuated, and its associated circular dichroism became 20% more intense. Free Bchl added with dodecyldimethylamine oxide accelerated the restoration of Bchl-800 and retarded the attenuation of Bchl-850. We conclude that free Bchl can interact reversibly with a binding site for Bchl-800 in the B850 complex, with dodecyl sulfate favoring dissociation and dodecyldimethylamine oxide promoting association. Thus the reversible dissociation of a native chlorophyll-protein complex has now been demonstrated.
球形红杆菌的类囊体在两种状态下产生天线复合物 B850,具体取决于分离方法。使用十二烷基(= 月桂基)二甲基氧化胺的方法可得到与体内相似的吸收光谱:800nm 和 850nm 处的带归因于细菌叶绿素(Bchl)组分 Bchl-800 和 Bchl-850,A(800)/A(850)的比值为 0.65 +/- 0.05。当 B850 用十二烷基硫酸钠的方法分离时,Bchl-800 被削弱或不存在。对这些材料和分离的天线复合物 B875 的 Bchl 测定得出以下消光系数,标准偏差(SD),基于 Bchl 的摩尔浓度:对于 B875,epsilon(875)= 126 +/- 8 mM(-1)cm(-1)。对于正常(高 Bchl-800)状态下的 B850,epsilon(850)= 132 +/- 10 mM(-1)cm(-1)。对于 B850 中 Bchl 的各个组分,Bchl-850 的 epsilon(850)= 184 +/- 13 mM(-1)cm(-1),Bchl-800 的 epsilon(800)= 213 +/- 28 mM(-1)cm(-1)。用这些系数,高 Bchl-800 状态下 Bchl-850 与 Bchl-800 的分子比为 1.8 +/- 0.4。从缺乏 Bchl-800 的 B850 开始,加入十二烷基二甲基氧化胺可恢复 800nm 吸收带。850nm 带向蓝移,变窄,略微减弱,其相关圆二色性增加 20%。加入十二烷基二甲基氧化胺的游离 Bchl 可加速 Bchl-800 的恢复并减缓 Bchl-850 的衰减。我们得出结论,游离 Bchl 可与 B850 复合物中 Bchl-800 的结合位点可逆相互作用,十二烷基硫酸钠有利于解离,十二烷基二甲基氧化胺促进结合。因此,现在已经证明了天然叶绿素-蛋白质复合物的可逆解离。