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β-胡萝卜素和番茄红素的顺反异构化:一项理论研究。

Cis-trans isomerizations of beta-carotene and lycopene: a theoretical study.

作者信息

Guo Wen-Hsin, Tu Cheng-Yi, Hu Ching-Han

机构信息

Department of Chemistry, National Changhua University of Education, Changhua 50058, Taiwan.

出版信息

J Phys Chem B. 2008 Sep 25;112(38):12158-67. doi: 10.1021/jp8019705. Epub 2008 Aug 28.

Abstract

The all-trans to mono-cis isomerizations of polyenes and two C40H56 carotenes, beta-carotene and lycopene, at the ground singlet (S0) and triplet (T1) states are studied by means of quantum chemistry computations. At the S0 state of polyenes containing n acetylene units (Pn), we find that the energy barrier of the central C=C rotation decreases with n. In contrast, however, at the T 1 state, the rotational barrier increases with n. For the C40H56 carotenes, the rotational barriers of lycopene are lower than those of their beta-carotene counterparts. This difference renders the rotational rates of lycopene to be 1-2 orders of magnitude higher than those of beta-carotene at room temperature. For both these carotenes, the barrier is lowest for the rotation toward the 13-cis isomer. The relative abundances are in the following order: all-trans > 9-cis > 13-cis > 15-cis. Although the 5-cis isomer of lycopene has the lowest energy among the cis isomers, its formation from the all-trans form is restricted, owing to a very large rotational barrier. The possible physiological implications of this study are discussed.

摘要

通过量子化学计算研究了多烯以及两种C40H56类胡萝卜素(β-胡萝卜素和番茄红素)在基态单重态(S0)和三重态(T1)下的全反式到单顺式异构化。在含有n个乙炔单元的多烯(Pn)的S0态,我们发现中心C = C旋转的能垒随n降低。然而,相比之下,在T1态,旋转能垒随n增加。对于C40H56类胡萝卜素,番茄红素的旋转能垒低于其β-胡萝卜素对应物。这种差异使得番茄红素在室温下的旋转速率比β-胡萝卜素高1 - 2个数量级。对于这两种类胡萝卜素,向13-顺式异构体旋转的能垒最低。相对丰度顺序如下:全反式>9-顺式>13-顺式>15-顺式。尽管番茄红素的5-顺式异构体在顺式异构体中能量最低,但由于非常大的旋转能垒,其从全反式形式的形成受到限制。讨论了本研究可能的生理意义。

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