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Nature|October 12, 2001
Oxyphotobacteria. Antenna ring around photosystem IT S Bibby, J Nield, F Partensky, et al.FEBS Letters|September 5, 2001
Subunit positioning and transmembrane helix organisation in the core dimer of photosystem IIB Hankamer, E Morris, J Nield, et al.Plant Molecular Biology|May 1, 1997
Self-incompatibility in the grasses: evolutionary relationship of the S gene from Phalaris coerulescens to homologous sequences in other grassesX Li, N Paech, J Nield, et al.Journal of Structural Biology|November 28, 2001
Three-dimensional structure of the photosystem II core dimer of higher plants determined by electron microscopyB Hankamer, E Morris, J Nield, et al.Nature|August 29, 2003
Low-light-adapted Prochlorococcus species possess specific antennae for each photosystemT S Bibby, I Mary, J Nield, et al.European Journal of Biochemistry|January 15, 1997
Isolation and biochemical characterisation of monomeric and dimeric photosystem II complexes from spinach and their relevance to the organisation of photosystem II in vivoB Hankamer, J Nield, D Zheleva, et al.The Journal of Biological Chemistry|May 16, 2000
Three-dimensional structure of Chlamydomonas reinhardtii and Synechococcus elongatus photosystem II complexes allows for comparison of their oxygen-evolving complex organizationJ Nield, O Kruse, J Ruprecht, et al.Nature Structural Biology|January 14, 2000
3D map of the plant photosystem II supercomplex obtained by cryoelectron microscopy and single particle analysisJ Nield, E V Orlova, E P Morris, et al.Proceedings of the National Academy of Sciences of the United States of America|January 3, 1995
Supramolecular structure of the photosystem II complex from green plants and cyanobacteriaE J Boekema, B Hankamer, D Bald, et al.Pageof 2