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Spectral Features of Canthaxanthin in HCP2. A QM/MM Approach

机译:HCP2中Canthaxanthin的光谱特征。 qm / mm方法

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摘要

The increased interest in sequencing cyanobacterial genomes has allowed the identification of new homologs to both the N-terminal domain (NTD) and C-terminal domain (CTD) of the Orange Carotenoid Protein (OCP). The N-terminal domain homologs are known as Helical Carotenoid Proteins (HCPs). Although some of these paralogs have been reported to act as singlet oxygen quenchers, their distinct functional roles remain unclear. One of these paralogs (HCP2) exclusively binds canthaxanthin (CAN) and its crystal structure has been recently characterized. Its absorption spectrum is significantly red-shifted, in comparison to the protein in solution, due to a dimerization where the two carotenoids are closely placed, favoring an electronic coupling interaction. Both the crystal and solution spectra are red-shifted by more than 50 nm when compared to canthaxanthin in solution. Using molecular dynamics (MD) and quantum mechanical/molecular mechanical (QM/MM) studies of HCP2, we aim to simulate these shifts as well as obtain insight into the environmental and coupling effects of carotenoid–protein interactions.
机译:对序列细菌基因组的兴趣增加允许鉴定橙色类胡萝卜素蛋白(OCP)的N-末端结构域(NTD)和C末端结构域(CTD)的新同源物。 N-末端结构域同源物称为螺旋类胡萝卜素蛋白(HCP)。虽然据报道,一些这些副病毒术称为单次氧猝灭剂,但它们的独特功能作用仍然不清楚。其中一种副蛋白酶(HCP2)专门结合Canthaxanthin(CAN),其晶体结构已被特征在于。与溶液中的蛋白质相比,它的吸收光谱是显着的,由于溶液中的蛋白质,由于密切放置两种类胡萝卜素,有利于电子耦合相互作用。与溶液在溶液中相比,晶体和溶液光谱两者都被大于50nm的红色移位。使用分子动力学(MD)和量子机械/分子机械(QM / mm)研究HCP2,我们的目的是模拟这些换档,并获得洞察类胡萝卜素蛋白质相互作用的环境和偶联效果。

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