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细菌视紫红质的皮秒和稳态、可变强度及可变温度发射光谱学。

Picosecond and steady state, variable intensity and variable temperature emission spectroscopy of bacteriorhodopsin.

作者信息

Shapiro S L, Campillo A J, Lewis A, Perreault G J, Spoonhower J P, Clayton R K, Stoeckenius W

出版信息

Biophys J. 1978 Sep;23(3):383-93. doi: 10.1016/S0006-3495(78)85457-5.

Abstract

The bacteriorhodopsin emission lifetime at 77 degrees K has been obtained for different regions of the emission spectrum with single-pulse excitation. The data under all conditions yield a lifetime of 60 +/- 15 ps. Intensity effects on this lifetime have been ruled out by studying the relative emission amplitude as a function of the excitation pulse energy. We relate our lifetime to previously reported values at other temperatures by studying the relative emission quantum efficiency as a function of temperature. These variable temperature studies have indicated that an excited state with an emission maximum at 670 nm begins to contribute to the spectrum as the temperature is lowered. Within our experimental error the picosecond data seem to suggest that this new emission may arise from a minimum of the same electronic state responsible for the 77 degrees K emission at 720 nm. A correlation is noted between a 1.0-ps formation time observed in absorption by Ippen et al. (Ippen, E.P., C.V. Shank, A. Lewis, and M.A. Marcus. 1978. Subpicosecond spectroscopy of bacteriorhodopsin. Science [wash. D.C.]. 200:1279-1281 and a time extrapolated from relative quantum efficiency measurements and the 77 degrees K fluorescence lifetime that we report.

摘要

利用单脉冲激发,已获得77K下细菌视紫红质发射光谱不同区域的发射寿命。在所有条件下的数据得出寿命为60±15皮秒。通过研究相对发射幅度作为激发脉冲能量的函数,排除了强度对该寿命的影响。通过研究相对发射量子效率作为温度的函数,我们将我们的寿命与先前报道的其他温度下的值相关联。这些变温研究表明,随着温度降低,发射最大值在670nm的激发态开始对光谱有贡献。在我们的实验误差范围内,皮秒数据似乎表明这种新发射可能至少源自与77K下720nm发射相同的电子态的最小值。注意到Ippen等人在吸收中观察到的1.0皮秒形成时间(Ippen, E.P., C.V. Shank, A. Lewis, and M.A. Marcus. 1978. Subpicosecond spectroscopy of bacteriorhodopsin. Science [wash. D.C.]. 200:1279 - 1281)与从相对量子效率测量和我们报道的77K荧光寿命外推的时间之间存在相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a714/1473539/4a0b971985c7/biophysj00743-0067-a.jpg

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