Saga Yoshitaka, Tanaka Aiko, Yamashita Madoka, Shinoda Toshiyuki, Tomo Tatsuya, Kimura Yukihiro
Department of Chemistry, Faculty of Science and Engineering, Kindai University, Osaka, Japan.
Graduate School of Science, Tokyo University of Science, Tokyo, Japan.
Photochem Photobiol. 2022 Jan;98(1):169-174. doi: 10.1111/php.13491. Epub 2021 Sep 3.
The interactions of chlorophyll (Chl) and bacteriochlorophyll (BChl) pigments with the polypeptides in photosynthetic light-harvesting proteins are responsible for controlling the absorption energy of (B)Chls in protein matrixes. The binding pocket of B800 BChl a in LH2 proteins, which are peripheral light-harvesting proteins in purple photosynthetic bacteria, is useful for studying such structure-property relationships. We report the reconstitution of Chl f, which has the formyl group at the 2-position, in the B800 cavity of LH2 from the purple bacterium Rhodoblastus acidophilus. The Q absorption band of Chl f in the B800 cavity was shifted by 14 nm to longer wavelength compared to that of the corresponding five-coordinated monomer in acetone. This redshift was larger than that of Chl a and Chl b. Resonance Raman spectroscopy indicated hydrogen bonding between the 2-formyl group of Chl f and the LH2 polypeptide. These results suggest that this hydrogen bonding contributes to the Q redshift of Chl f. Furthermore, the Q redshift of Chl f in the B800 cavity was smaller than that of Chl d. This may have arisen from the different patterns of hydrogen bonding between Chl f and Chl d and/or from the steric hindrance of the 3-vinyl group in Chl f.
叶绿素(Chl)和细菌叶绿素(BChl)色素与光合捕光蛋白中的多肽之间的相互作用,负责控制蛋白质基质中(B)Chls的吸收能量。LH2蛋白中的B800 BChl a结合口袋是紫色光合细菌中的外周捕光蛋白,可用于研究此类结构-性质关系。我们报道了在嗜酸红假单胞菌的LH2的B800腔中重建在2位具有甲酰基的Chl f。与在丙酮中的相应五配位单体相比,B800腔中Chl f的Q吸收带向更长波长移动了14nm。这种红移比Chl a和Chl b的红移更大。共振拉曼光谱表明Chl f的2-甲酰基与LH2多肽之间存在氢键。这些结果表明,这种氢键有助于Chl f的Q红移。此外,B800腔中Chl f的Q红移小于Chl d的Q红移。这可能是由于Chl f和Chl d之间氢键模式的不同和/或Chl f中3-乙烯基的空间位阻引起的。