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Journal of Molecular Biology|March 7, 1997
An automated classification of the structure of protein loopsB Oliva, P A Bates, E Querol, et al.Trends in Cell Biology|November 1, 1994
The sticking point: How integrins bind to their ligandsN Hogg, R Clive Landis, P A Bates, et al.Mutation Research|August 18, 2000
The BRCA1 C-terminal domain: structure and functionT Huyton, P A Bates, X Zhang, et al.Journal of Molecular Biology|June 27, 1998
Automated classification of antibody complementarity determining region 3 of the heavy chain (H3) loops into canonical forms and its application to protein structure predictionB Oliva, P A Bates, E Querol, et al.Transactions of the Royal Society of Tropical Medicine and Hygiene|January 1, 1984
A simple method for isolating viable mature parasites of Plasmodium falciparum from culturesA R Dluzewski, I T Ling, K Rangachari, et al.The Journal of Biological Chemistry|October 9, 1998
The I domain of integrin leukocyte function-associated antigen-1 is involved in a conformational change leading to high affinity binding to ligand intercellular adhesion molecule 1 (ICAM-1)A McDowall, B Leitinger, P Stanley, et al.Journal of Molecular Biology|June 13, 1997
Recognition of analogous and homologous protein folds: analysis of sequence and structure conservationR B Russell, M A Saqi, R A Sayle, et al.Annals of Tropical Medicine and Parasitology|June 14, 2002
Towards a standard battery of microsatellite markers for the analysis of the Leishmania donovani complexM B Jamjoom, R W Ashford, P A Bates, et al.Protein Engineering|October 1, 1989
A predicted three-dimensional structure for the human immunodeficiency virus binding domains of CD4 antigenP A Bates, M J McGregor, S A Islam, et al.Protein Engineering|May 14, 1998
Recognition of analogous and homologous protein folds--assessment of prediction success and associated alignment accuracy using empirical substitution matricesR B Russell, M A Saqi, P A Bates, et al.Pageof 8