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Chlorophylls, ligands and assembly of light-harvesting complexes in chloroplasts

机译:叶绿体中的叶绿素,配体和集光复合体的组装

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摘要

Chlorophyll (Chl) b serves an essential function in accumulation of light-harvesting complexes (LHCs) in plants. In this article, this role of Chl b is explored by considering the properties of Chls and the ligands with which they interact in the complexes. The overall properties of the Chls, not only their spectral features, are altered as consequences of chemical modifications on the periphery of the molecules. Important modifications are introduction of oxygen atoms at specific locations and reduction or desaturation of sidechains. These modifications influence formation of coordination bonds by which the central Mg atom, the Lewis acid, of Chl molecules interacts with amino acid sidechains, as the Lewis base, in proteins. Chl a is a versatile Lewis acid and interacts principally with imidazole groups but also with sidechain amides and water. The 7-formyl group on Chl b withdraws electron density toward the periphery of the molecule and consequently the positive Mg is less shielded by the molecular electron cloud than in Chl a. Chl b thus tends to form electrostatic bonds with Lewis bases with a fixed dipole, such as water and, in particular, peptide backbone carbonyl groups. The coordination bonds are enhanced by H-bonds between the protein and the 7-formyl group. These additional strong interactions with Chl b are necessary to achieve assembly of stable LHCs.
机译:叶绿素(Chl)b在植物中光采复合物(LHCs)的积累中起着至关重要的作用。在本文中,通过考虑Chls的性质以及它们在复合物中相互作用的配体来探索Chlb的这种作用。由于分子周围化学修饰的结果,不仅改变了Chls的光谱特征,其总体性质也发生了变化。重要的修饰是在特定位置引入氧原子以及侧链的还原或去饱和。这些修饰影响配位键的形成,通过该配位键,Chl分子的中央Mg原子路易斯酸与蛋白质中的氨基酸侧链(作为路易斯碱)相互作用。 Chla是一种多用途的路易斯酸,主要与咪唑基团相互作用,但也与侧链酰胺和水相互作用。 Chlb上的7-甲酰基使电子密度朝着分子的外围吸收,因此,与Chla相比,正Mg受到分子电子云的屏蔽较少。因此,Chlb趋于与具有固定偶极子的路易斯碱形成静电键,所述偶极子例如为水,尤其是肽主链羰基。蛋白质和7-甲酰基之间的氢键增强了配位键。与Chlb的这些额外的强相互作用是实现稳定LHC组装所必需的。

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