Institute of Physical Biology, University of South Bohemia, 373-33 Nove Hrady, Czech Republic.
J Phys Chem B. 2010 Jul 8;114(26):8760-9. doi: 10.1021/jp101296a.
Violerythrin, a blue-colored carotenoid, has been investigated by X-ray crystallography and steady-state and ultrafast time-resolved absorption spectroscopy. The X-ray crystal structure of violerythrin shows that the molecule is nearly planar with the terminal rings positioned in the s-trans conformation. The steady-state and time-resolved spectroscopic data of violerythrin do not differ significantly from those of other carbonyl carotenoids with long (N > 10) pi-electron conjugated chains. This indicates that while the four carbonyl groups in violerythrin are critical for generating the bathochromic shift that leads to the blue color of the molecule, no dramatic changes attributable to a charge-transfer state known to affect the excited-state properties of carotenoids with short polyene chains occur. This may be due to the symmetric distribution of the carbonyl groups, which would preclude such an effect. The structural requirements for a blue, neutral, carotenoid are a planar, symmetric, cross-conjugated chromophore, containing at least 30 pi-electrons, a central polyene chain with 9 or 10 conjugated carbon-carbon double bonds connected at each end by an s-trans or trans bond to two identical, cyclic end groups, each possessing a conjugated keto group further cross-conjugated to another keto group, or a double bond in a quinoid type structure.
虾青素,一种蓝色类胡萝卜素,已经通过 X 射线晶体学和稳态及超快时间分辨吸收光谱进行了研究。虾青素的 X 射线晶体结构表明,该分子几乎呈平面状,末端环呈 s-反式构象。虾青素的稳态和时间分辨光谱数据与其他具有长(N > 10)π电子共轭链的羰基类胡萝卜素的光谱数据没有显著差异。这表明,虽然虾青素中的四个羰基对于产生导致分子呈蓝色的红移至关重要,但不会发生归因于电荷转移态的剧烈变化,已知电荷转移态会影响具有短多烯链的类胡萝卜素的激发态性质。这可能是由于羰基的对称分布,这将排除这种影响。一个蓝色、中性类胡萝卜素的结构要求是一个平面、对称、交叉共轭的发色团,含有至少 30 个π电子,一个中央多烯链,在每个末端通过 s-反式或反式键与两个相同的环状末端基团连接,每个末端基团都具有一个共轭的酮基,进一步与另一个酮基交叉共轭,或在醌型结构中具有双键。