Chemistry - A European Journal · 2005 · 83 citations · 39 references
We report two crystal structures of a synthetic porphyrin molecule which was programmed for self-assembly. The same groups which ensure that bacteriochlorophylls c, d, and e can self-assemble into the chlorosomal nanorods, the photosynthetic antenna system of some green bacteria, have been engineered into desired positions of the tetrapyrrolic macrocycle. In the case of the 5,15-meso-substituted anchoring groups, depending upon the concentration, by using the same crystallization solvents, either a tetragonal or a layered structure of porphyrin stacks were encountered. Surprisingly, pi-pi interactions combined with extensive dispersive interactions, which also encompass cyclohexane, one of the crystallization solvents, win over putative hydrogen bonding. We are aware that our compounds differ considerably from the natural bacteriochlorophylls, but based upon our findings, we now question the hydrogen-bonding network, previously proposed to organize stacks of bacteriochlorophylls. Transmission electron microscopy (TEM), atomic force microscopy (AFM), and small-angle X-ray scattering (SAXS) on various isomeric compounds support our challenge of current models for the chlorosomal antenna as these show structures, astonishingly similar to those of chlorosomes.
39
Architecture of the Photosynthetic Oxygen-Evolving Center
Kristina N. Ferreira, T.M. Iverson, Karim Maghlaoui et al. · Science · 2004 · 3.3K citations
Three-dimensional structure of cyanobacterial photosystem I at 2.5 Å resolution
Patrick Jordan, Petra Fromme, Horst Tobias Witt et al. · Nature · 2001 · 2.5K citations
Encyclopedia of nanoscience and nanotechnology
Choice Reviews Online · 2005 · 2.1K citations
Crystal structure of photosystem II from Synechococcus elongatus at 3.8 Å resolution
Athina Zouni, H. T. Witt, Jan Kern et al. · Nature · 2001 · 1.9K citations