Suppr超能文献

球形红假单胞菌单次闪光后的延迟荧光。

Delayed fluorescence from Rhodopseudomonas sphaeroides following single flashes.

作者信息

Carithers R P, Parson W W

出版信息

Biochim Biophys Acta. 1976 Jul 9;440(1):215-32. doi: 10.1016/0005-2728(76)90125-0.

Abstract

Delayed fluorescence from Rhodopseudomonas sphaeroides chromatophores was studied with the use of short flashes for excitation. Although the delayed fluorescence probably arises from a back-reaction between the oxidized reaction center bacteriochlorophyll complex (P+) and the reduced electron acceptor (X-), the decay of delayed fluorescence after a flash is much faster (tau1/2 approximately 120 mus) than the decay of P+X-. The rapid decay of delayed fluorescence is not due to the uptake of a proton from the solution, nor to a change in membrane potential. It correlates with small optical absorbance changes at 450 and 770 nm which could reflect a change in the state of X-. The intensity of the delayed fluorescence is 11-18-fold greater if the excitation flashes are spaced 2 s apart than it is if they are 30 s apart. The enhancement of delayed fluorescence at high flash repetition rates occurs only at redox potentials which are low enough (less than +240 mV) so that electron donors are available to reduce P+X- to PX- in part of the reaction center population. The enhancement decays between flashes as PX- is reoxidized to PX, as measured by the recovery of photochemical activity. Evidently, the reduction of P+X- to PX- leads to the storage of free energy that can be used on a subsequent flash to promote delayed fluorescence. The reduction of P+X- also is associated with a carotenoid spectral shift which decays as PX- is reoxidized to PX. Although this suggests that the free energy which supports the delayed fluorescence might be stored as a membrane potential, the ionophore gramicidin D only partially inhibits the enhancement of delayed fluorescence. With widely separated flashes, gramicidin has no effect on delayed fluorescence. At redox potentials low enough to keep X fully reduced, delayed fluorescence of the type described above does not occur, but one can detect weak luminescence which probably is due to phosphorescence of a protoporphyrin.

摘要

利用短闪光激发研究了球形红假单胞菌载色体的延迟荧光。尽管延迟荧光可能源于氧化的反应中心细菌叶绿素复合物(P +)与还原的电子受体(X -)之间的逆反应,但闪光后延迟荧光的衰减比P + X -的衰减快得多(半衰期约为120微秒)。延迟荧光的快速衰减不是由于从溶液中摄取质子,也不是由于膜电位的变化。它与450和770 nm处的小光吸收变化相关,这可能反映了X -状态的变化。如果激发闪光间隔2秒,则延迟荧光强度比间隔30秒时大11 - 18倍。在高闪光重复率下延迟荧光的增强仅发生在足够低的氧化还原电位(小于+240 mV)下,这样电子供体可用于将部分反应中心群体中的P + X -还原为PX -。随着PX -重新氧化为PX,闪光之间的增强衰减,这通过光化学活性的恢复来测量。显然,P + X -还原为PX -导致自由能的储存,该自由能可用于随后的闪光以促进延迟荧光。P + X -的还原还与类胡萝卜素光谱位移相关,随着PX -重新氧化为PX,该光谱位移衰减。尽管这表明支持延迟荧光的自由能可能以膜电位的形式储存,但离子载体短杆菌肽D仅部分抑制延迟荧光的增强。对于间隔很远的闪光,短杆菌肽对延迟荧光没有影响。在足够低的氧化还原电位下使X完全还原时,不会出现上述类型的延迟荧光,但可以检测到微弱的发光,这可能是由于原卟啉的磷光。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验