Silberstein B R, Epel B L, Malkin S, Gromet-Elhanan Z
Eur J Biochem. 1977 Oct 17;80(1):135-41. doi: 10.1111/j.1432-1033.1977.tb11865.x.
Light-induced difference spectra between 400 and 640 nm of Rhodospirillum rubrum chromatophores were performed in the presence and absence of exogenous electron donor/acceptor systems and compared with the chemical oxidation spectrum. The results indicate that the component previously defined as P430 is not a unique entity but rather represents different species, or a mixture of species, under various conditions. Under all conditions in which the reaction center bacteriochlorophyll is reversibly photooxidized, as indicated by the bleaching around 600 nm, it is also contributing to the absorbance increase around 430 nm. In one case, in presence of reduced dichloroindophenol and in the absence of oxygen, the photooxidation of reaction center bacteriochlorophyll is fully supressed. Under these conditions an irreversible change around 430 nm is still observed and seems to be due to the Soret band of b-type cytochrome. In the presence of reduced dichloroindophenol and absence of oxygen there is a marked inhibition of photophosphorylation. This inhibition is apparently due to the complete reduction of the cyclic electron carriers. Addition of the low potential dye benzyl viologen facilitates an almost complete recovery of the reversible photooxidation of reaction center bacteriochlorophyll as well as of photophosphorylation. These results indicate that the apparent mid-point potential of the primary electron acceptor in Rhodospirillum rubrum chromatophores is probably in the range of that of benzyl viologen (E'o = - 340 mV).
在有和没有外源电子供体/受体系统的情况下,对红螺菌载色体在400至640纳米之间的光诱导差异光谱进行了测定,并与化学氧化光谱进行了比较。结果表明,先前定义为P430的组分不是一个独特的实体,而是在各种条件下代表不同的物种或物种混合物。在所有反应中心细菌叶绿素被可逆光氧化的条件下,如600纳米左右的漂白所示,它也导致430纳米左右的吸光度增加。在一种情况下,在存在还原型二氯靛酚且无氧的情况下,反应中心细菌叶绿素的光氧化被完全抑制。在这些条件下,仍观察到430纳米左右的不可逆变化,这似乎是由于b型细胞色素的索雷特带所致。在存在还原型二氯靛酚且无氧的情况下,光磷酸化受到明显抑制。这种抑制显然是由于循环电子载体的完全还原。添加低电位染料苄基紫精有助于反应中心细菌叶绿素的可逆光氧化以及光磷酸化几乎完全恢复。这些结果表明,红螺菌载色体中初级电子受体的表观中点电位可能在苄基紫精的中点电位范围内(E'o = - 340 mV)。