首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Bathorhodopsin intermediates from 11-cis-rhodopsin and 9-cis-rhodopsin.
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Bathorhodopsin intermediates from 11-cis-rhodopsin and 9-cis-rhodopsin.

机译:来自11-顺式视紫红质和9-顺式视紫红质的碱视紫红质中间体。

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摘要

Bathorhodopsin-rhodopsin difference spectra of native 11-cis-rhodopsin and regenerated 9-cis-rhodopsin were measured at room temperature with a double-beam laser spectrophotometer after excitation at 532 nm. A detailed analysis of data obtained at 85 psec after excitation suggests that the bathorhodopsins generated from 11-cis- and 9-cis-rhodopsin differ in their extinction coefficients and that their absorption maxima are shifted in wavelength by about 10 nm from one another. The ratio of quantum yields for photochemical production of the 11-cis-bathorhodopsin and the 9-cis-bathorhodopsin approximates 1. Implications that the early photochemical processes in vision are more complex than previously considered are explored.
机译:在532 nm激发后,在室温下用双光束激光分光光度计测量天然11-顺式-视紫红质和再生的9-顺式-视紫红质的视紫红质-视紫红质差异光谱。对激发后85 ps处获得的数据进行的详细分析表明,由11-顺式和9-顺式视紫红质产生的细胞视紫红质的消光系数不同,并且它们的吸收最大值在波长上彼此偏移约10 nm。 11-顺式-bathohodopsin和9-顺式-bathohodopsin的光化学生产的量子产率之比约为1。暗示了视觉中早期的光化学过程比以前认为的更为复杂。

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