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2005

Journal Article

Improved photobiological H-2 production in engineered green algal cells

Kruse, O., Rupprecht, J., Bader, K. P., Thomas-Hall, S., Schenk, P. M., Finazzi, G. and Hankamer, B. (2005). Improved photobiological H-2 production in engineered green algal cells. Journal of Biological Chemistry, 280 (40), 34170-34177. doi: 10.1074/jbc.M503840200

Improved photobiological H-2 production in engineered green algal cells

2005

Book Chapter

Structural analysis of the photosystem II core/antenna holocomplex by electron microscopy

Hankamer, Ben, Barber, James and Nield, Jon (2005). Structural analysis of the photosystem II core/antenna holocomplex by electron microscopy. Photosystem II : The light-driven water : Plastoquinone oxidoreductase. (pp. 403-424) edited by Thomas J. Wydrzynski and Kimiyuki Satoh. Dordrecht, The Netherlands: Springer. doi: 10.1007/1-4020-4254-x_19

Structural analysis of the photosystem II core/antenna holocomplex by electron microscopy

2004

Journal Article

Organization of the AAA(+) adaptor protein PspA is an oligomeric ring

Hankamer, B. D., Elderkin, S. L., Buck, M. and Nield, J. (2004). Organization of the AAA(+) adaptor protein PspA is an oligomeric ring. Journal of Biological Chemistry, 279 (10), 8862-8866. doi: 10.1074/jbc.M307889200

Organization of the AAA(+) adaptor protein PspA is an oligomeric ring

2004

Journal Article

Crystal structure of a central stalk subunit C and reversible association/dissociation of vacuole-type ATPase

Iwata, M., Imamura, H., Stambouli, E., Ikeda, C., Tamakoshi, M., Nagata, K., Makyio, H., Hankamer, B., Barber, J., Yoshida, M., Yokoyama, K. and Iwata, S. (2004). Crystal structure of a central stalk subunit C and reversible association/dissociation of vacuole-type ATPase. Proceedings of The National Academy of Sciences of The United States of America, 101 (1), 59-64. doi: 10.1073/pnas.0305165101

Crystal structure of a central stalk subunit C and reversible association/dissociation of vacuole-type ATPase

2003

Journal Article

Membrane-protein crystallization in cubo: Temperature-dependent phase behaviour of monoolein-detergent mixtures

Sennoga, Charles, Heron, Andrew, Seddon, John M., Templer, Richard H. and Hankamer, Ben (2003). Membrane-protein crystallization in cubo: Temperature-dependent phase behaviour of monoolein-detergent mixtures. Acta Crystallographica Section D: Biological Crystallography, 59 (2), 239-246. doi: 10.1107/S0907444902020772

Membrane-protein crystallization in cubo: Temperature-dependent phase behaviour of monoolein-detergent mixtures

2003

Conference Publication

Automatic particle picking of biological molecules imaged by electron microscopy

Banks, J. E., Rothnagel, A.R. and Hankamer, B. (2003). Automatic particle picking of biological molecules imaged by electron microscopy. Image and Vision Computing New Zealand 2003, Massey University, Palmerston North, NZ, 26-28 November 2003. Massey University, NZ: Institute of Information Sciences & Technology.

Automatic particle picking of biological molecules imaged by electron microscopy

2002

Book Chapter

Morphological aspects of in cubo membrane protein crystallisation

Sennoga, C., Hankamer, B., Heron, A., Seddon, J. M., Barber, J. and Templer, R. H. (2002). Morphological aspects of in cubo membrane protein crystallisation. Biophysical Chemistry: Membranes and Proteins. (pp. 221-236) edited by Richard H. Templer and Robin Leatherbarrow. Cambridge, UK: Royal Society of Chemistry. doi: 10.1039/9781847550255-00221

Morphological aspects of in cubo membrane protein crystallisation

2002

Journal Article

Electron Crystallographic Study of Photosystem II of the Cyanobacterium Synechococcus Elongatus

Da Fonseca, P., Morris, E. P., Hankamer, B. and Barber, J. (2002). Electron Crystallographic Study of Photosystem II of the Cyanobacterium Synechococcus Elongatus. Biochemistry, 41 (16), 5163-5167. doi: 10.1021/bi0120650

Electron Crystallographic Study of Photosystem II of the Cyanobacterium Synechococcus Elongatus

2001

Journal Article

Relationship Between Excitation Energy Transfer, Trapping, and Antenna Size in Photosystem II

Barter, L. M. C., Bianchietti, M., Jeans, C., Schilstra, M. J., Hankamer, B., Diner, B. A., Barber, J., Durrant, J. R. and Klug, D. R. (2001). Relationship Between Excitation Energy Transfer, Trapping, and Antenna Size in Photosystem II. Biochemistry, 40 (13), 4026-4034. doi: 10.1021/bi001724q

Relationship Between Excitation Energy Transfer, Trapping, and Antenna Size in Photosystem II

2001

Journal Article

Subunit Positioning and Transmembrane Helix Organisation in the Core Dimer of Photosystem II

Hankamer, B., Morris, E., Nield, J., Carne, A. and Barber, J. (2001). Subunit Positioning and Transmembrane Helix Organisation in the Core Dimer of Photosystem II. Febs Letters, 504 (3), 142-151. doi: 10.1016/S0014-5793(01)02766-1

Subunit Positioning and Transmembrane Helix Organisation in the Core Dimer of Photosystem II

2001

Journal Article

Three-dimensional Structure of the Photosystem II Core Dimer of Higher Plants Determined by Electron Microscopy

Hankamer, B., Morris, E., Nield, J., Gerle, C. and Barber, J. (2001). Three-dimensional Structure of the Photosystem II Core Dimer of Higher Plants Determined by Electron Microscopy. Journal of Structural Biology, 135 (3), 262-269. doi: 10.1006/jsbi.2001.4405

Three-dimensional Structure of the Photosystem II Core Dimer of Higher Plants Determined by Electron Microscopy

2000

Journal Article

Phosphatidylglycerol is involved in the dimerization of photosystem II

Kruse, Olaf, Hankamer, Ben, Konczak, Carsten, Gerle, Christoph, Morris, Ed, Radunz, Alfons, Schmid, Georg H. and Barber, James (2000). Phosphatidylglycerol is involved in the dimerization of photosystem II. Journal of Biological Chemistry, 275 (9), 6509-6514. doi: 10.1074/jbc.275.9.6509

Phosphatidylglycerol is involved in the dimerization of photosystem II

2000

Conference Publication

Three-dimensional structure of photosystem II determined by electron crystallography

Morris, EP, Hankamer, BD and Barber, J (2000). Three-dimensional structure of photosystem II determined by electron crystallography. BETHESDA: BIOPHYSICAL SOCIETY.

Three-dimensional structure of photosystem II determined by electron crystallography

1999

Journal Article

Similarity between electron donor side reactions in the solubilized Photosystem II-LHC II supercomplex and Photosystem-II-containing membranes

Schilstra, MJ, Nield, J, Dorner, W, Hankamer, B, Carradus, M, Barter, LMC, Barber, J and Klug, DR (1999). Similarity between electron donor side reactions in the solubilized Photosystem II-LHC II supercomplex and Photosystem-II-containing membranes. Photosynthesis Research, 60 (2-3), 191-198. doi: 10.1023/A:1006203401278

Similarity between electron donor side reactions in the solubilized Photosystem II-LHC II supercomplex and Photosystem-II-containing membranes

1999

Journal Article

Subunit positioning in photosystem II revisited

Barber, J, Nield, J, Morris, EP and Hankamer, B (1999). Subunit positioning in photosystem II revisited. Trends in Biochemical Sciences, 24 (2), 43-45. doi: 10.1016/S0968-0004(98)01348-6

Subunit positioning in photosystem II revisited

1999

Journal Article

Revealing the structure of the oxygen-evolving core dimer of photosystem II by cryoelectron crystallography

Hankamer, B, Morris, EP and Barber, J (1999). Revealing the structure of the oxygen-evolving core dimer of photosystem II by cryoelectron crystallography. Nature Structural Biology, 6 (6), 560-564. doi: 10.1038/9341

Revealing the structure of the oxygen-evolving core dimer of photosystem II by cryoelectron crystallography

1998

Journal Article

Localization of the 23-kDa subunit of the oxygen-evolving complex of photosystem II by electron microscopy

Boekema, EJ, Nield, J, Hankamer, B and Barber, J (1998). Localization of the 23-kDa subunit of the oxygen-evolving complex of photosystem II by electron microscopy. European Journal of Biochemistry, 252 (2), 268-276. doi: 10.1046/j.1432-1327.1998.2520268.x

Localization of the 23-kDa subunit of the oxygen-evolving complex of photosystem II by electron microscopy

1998

Conference Publication

Towards the elucidation of the structure of photosystem II at high resolution

Barber, J, Rhee, KH, Morris, E, Hankamer, B, Nield, J, Boekema, E and Kuhlbrandt, W (1998). Towards the elucidation of the structure of photosystem II at high resolution. BETHESDA: BIOPHYSICAL SOCIETY.

Towards the elucidation of the structure of photosystem II at high resolution

1998

Conference Publication

Three-dimensional structure of the spinach photosystem II core complex

Nield, J, Orlova, E, Hankamer, B, Dorner, W, Barber, J and van Heel, M (1998). Three-dimensional structure of the spinach photosystem II core complex. 14th International Congress on Electron Microscopy, Cancun Mexico, Aug 31-Sep 04, 1998. BRISTOL: IOP PUBLISHING LTD.

Three-dimensional structure of the spinach photosystem II core complex

1998

Conference Publication

Cryoelectron microscopy of photosystem two shows that CP43 and CP47 are located on opposite sides of the D1/D2 reaction center proteins

Hankamer, B, Morris, EP and Barber, J (1998). Cryoelectron microscopy of photosystem two shows that CP43 and CP47 are located on opposite sides of the D1/D2 reaction center proteins. XIth International Congress on Photosynthesis - Mechanisms and Effects, Budapest Hungary, Aug 17-22, 1998. DORDRECHT: SPRINGER.

Cryoelectron microscopy of photosystem two shows that CP43 and CP47 are located on opposite sides of the D1/D2 reaction center proteins