Heparan sulfates are critical regulators of the inhibitory megakaryocyte-platelet receptor G6b-B Vögtle, T., Sharma, S., Mori, J., Nagy, Z., Semeniak, D., Scandola, C., Geer, M., Smith, C., Lane, J., Pollack, S., Lassila, R., Jouppila, A., Barr, A.J., Ogg, D., Howard, T., McMiken, H., Warwicker, J., Geh, C., Rowlinson, R., Abbott, W., Eckly, A., Schulze, H., Wright, G., Mazharian, A., Fütterer, K., Rajesh, S., Douglas, M. and Senis, Y. 2019. Heparan sulfates are critical regulators of the inhibitory megakaryocyte-platelet receptor G6b-B. eLife. 8 e46840. https://doi.org/10.7554/eLife.46840
Congenital macrothrombocytopenia with focal myelofibrosis due to mutations in human G6b-B is rescued in humanized mice Hofmann, I., Geer, M.J., Vögtle, T., Crispin, A., Campagna, D.R., Barr, A.J., Calicchio, M.L., Heising, S., van Geffen, J.P., Kuijpers, M.J.E., Heemskerk, J.W.M., Eble, J.A., Schmitz-Abe, K., Obeng, E.A., Douglas, M., Freson, K., Pondarré, C., Favier, R., Jarvis, G.E., Markianos, K., Turro, E., Ouwehand, W.H., Mazharian, A., Fleming, M.D. and Senis, Y. 2018. Congenital macrothrombocytopenia with focal myelofibrosis due to mutations in human G6b-B is rescued in humanized mice. Blood. 132, pp. 1399-1412. https://doi.org/10.1182/blood-2017-08-802769
2018
The biochemical basis of disease Barr, A.J. 2018. The biochemical basis of disease. Essays in Biochemistry. 62 (5), pp. 619-642 https://doi.org/10.1042/EBC20170054. https://doi.org/10.1042/EBC20170054
Automatic Selection of Molecular Descriptors using Random Forest: Application to Drug Discovery Cano, G., Garcia-Rodriguez, J., Garcia-Garcia, A, Perez-Sanchez, H., Benediktsson, J.A., Thapa, A. and Barr, A.J. 2016. Automatic Selection of Molecular Descriptors using Random Forest: Application to Drug Discovery. Expert Systems with Applications. 72, pp. 151-159. https://doi.org/10.1016/j.eswa.2016.12.008
Large-scale structural analysis of the classical human protein tyrosine phosphatome Barr, A.J., Ugochukwu, E., Lee, W.H., King, O.N.F., Filippakopoulos, P., Alfano, I., Savitsky, P., Burgess-Brown, N.A., Muller, S. and Knapp, S. 2009. Large-scale structural analysis of the classical human protein tyrosine phosphatome. Cell. 136 (2), pp. 352-363. https://doi.org/10.1016/j.cell.2008.11.038
2000
Function and regulation of chemoattractant receptors Haribabu, B., Richardson, R.M., Verghese, M.W., Barr, A.J., Zhelev, D.V. and Snyderman, R. 2000. Function and regulation of chemoattractant receptors. Immunologic Research. 22 (2-3), pp. 271-279. https://doi.org/10.1385/IR:22:2-3:271
Structures of ABCB10, a human ATP-binding cassette transporter in apo- and nucleotide-bound states Shintre, C.A., Pike, A.C.W., Li, Q., Kim, J.I., Barr, A.J., Goubin, S., Shrestha, L., Yang, J., Berridge, G., Ross, J., Stansfeld, P.J., Sansom, M.S.P., Edwards, A.M., Bountra, C., Marsden, B., von Delft, F., Bullock, A.N., Gileadi, O., Burgess-Brown, N.A. and Carpenter, E.P. 2013. Structures of ABCB10, a human ATP-binding cassette transporter in apo- and nucleotide-bound states. Proceedings of the National Academy of Sciences. 110 (24), pp. 9710-9715. https://doi.org/10.1073/pnas.1217042110
Receptor tyrosine phosphatase PTPγ is a regulator of spinal cord neurogenesis Hashemia, H., Hurley, M., Gibson, A., Panova, V., Tchetchelnitski, V., Barr, A.J. and Stoker, A.W. 2011. Receptor tyrosine phosphatase PTPγ is a regulator of spinal cord neurogenesis. Molecular and Cellular Neuroscience. 46 (2), pp. 469-482. https://doi.org/10.1016/j.mcn.2010.11.012
Phospholipase C-β 2 interacts with mitogen-activated protein kinase kinase 3 Barr, A.J., Marjoram, R.J., Xu, J. and Snyderman, R. 2002. Phospholipase C-β 2 interacts with mitogen-activated protein kinase kinase 3. Biochemical and Biophysical Research Communications. 293 (1), pp. 647-652. https://doi.org/10.1016/S0006-291X(02)00259-0
The presence of NK3 tachykinin receptors on rat uterus Barr, A.J., Watson, S.P., Bernal, A.L. and Nimmo, A.J. 1991. The presence of NK3 tachykinin receptors on rat uterus. European Journal of Pharmacology. 203 (2), pp. 287-290. https://doi.org/10.1016/0014-2999(91)90726-7
2009
Large scale structural analysis of protein tyrosine phosphatases Barr, A.J. and Knapp, S. 2009. Large scale structural analysis of protein tyrosine phosphatases. in: Bradshaw, R. and Dennis, E. (ed.) Handbook of cell signaling (2nd edition) San Diego, CA Elsevier. pp. 871-876
2000
Insect Cell systems to Study the Communication of Mammalian Receptors and G proteins Windh, R., Barr, A.J. and Manning, D.R. 2000. Insect Cell systems to Study the Communication of Mammalian Receptors and G proteins. in: Kenakin, T. and Angus, J.A. (ed.) The Pharmacology of Functional, Biochemical, and Recombinant Receptor Systems Berlin Heidelberg Springer. pp. 335-362