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Items by Whitley, Paul

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Number of items: 16.

Helsby, M. A., Leader, P. M., Fenn, J. R., Gulsen, T., Bryant, C., Doughton, G., Sharpe, B., Whitley, P., Caunt, C. J., James, K., Pope, A. D., Kelly, D. H. and Chalmers, A. D., 2014. CiteAb : A searchable antibody database that ranks antibodies by the number of times they have been cited. BMC Cell Biology, 15 (1), 6.

Koumanov, F., Pereira, V. J., Whitley, P. R. and Holman, G. D., 2012. GLUT4 Traffic through an ESCRT-III-Dependent Sorting Compartment in Adipocytes. PLoS ONE, 7 (9), e44141.

Dukes, J. D., Whitley, P. and Chalmers, A. D., 2012. The PIKfyve inhibitor YM201636 blocks the continuous recycling of the tight junction proteins claudin-1 and claudin-2 in MDCK cells. PLoS ONE, 7 (3), e28659.

Chalmers, A. and Whitley, P., 2012. Continuous endocytic recycling of tight junction proteins: how and why? Essays in Biochemistry, 53, pp. 41-54.

Dukes, J. D., Whitley, P. and Chalmers, A. D., 2011. The MDCK variety pack: choosing the right strain. BMC Cell Biology, 12, 43.

Dukes, J. D., Fish, L., Richardson, J. D., Blaikley, E., Burns, S., Caunt, C. J., Chalmers, A. D. and Whitley, P., 2011. Functional ESCRT machinery is required for constitutive recycling of claudin-1 and maintenance of polarity in vertebrate epithelial cells. Molecular Biology of the Cell, 22 (17), pp. 3192-3205.

Whitley, P., Hinz, S. and Doughty, J., 2009. Arabidopsis FAB1/PIKfyve proteins are essential for development of viable pollen. Plant Physiology, 151 (4), pp. 1812-1822.

Bangs, F., Yin, Y., Paton, R., Prescott, A., James, J., Davey, M., Whitley, P., Genikhovich, G., Technau, U. and Briscoe, J., 2009. The developmental mutant talpid3 lacks primary cilia. Mechanisms of Development, 126, S262.

Yin, Y., Bangs, F., Paton, I. R., Prescott, A., James, J., Davey, M. G., Whitley, P., Genikhovich, G., Technau, U., Burt, D. W. and Tickle, C., 2009. The Talpid3 gene (KIAA0586) encodes a centrosomal protein that is essential for primary cilia formation. Development, 136 (4), pp. 655-664.

Dukes, J. D., Richardson, J. D., Simmons, R. and Whitley, P., 2008. A dominant-negative ESCRT-III protein perturbs cytokinesis and trafficking to lysosomes. Biochemical Journal, 411 (2), pp. 233-239.

Dukes, J. D., Lee, H., Hagen, R., Reaves, B. J., Layton, A. N., Galyov, E. E. and Whitley, P., 2006. The secreted Salmonella dublin phosphoinositide phosphatase, SopB, localizes to PtdIns(3)P-containing endosomes and perturbs normal endosome to lysosome trafficking. Biochemical Journal, 395, pp. 239-247.

Whitley, P., Gibbard, A. M., Koumanov, F., Oldfield, S., Kilgour, E. E., Prestwich, G. D. and Holman, G. D., 2002. Identification of centaurin-alpha 2: a phosphatidylinositide-binding protein present in fat, heart and skeletal muscle. European Journal of Cell Biology, 81 (4), pp. 222-230.

Fluckiger, S., Fijten, H., Whitley, P., Blaser, K. and Crameri, R., 2002. Cyclophilins, a new family of cross-reactive allergens. European Journal of Immunology, 32 (1), pp. 10-17.

Kronqvist, M., Johansson, E., Whitley, P., Olsson, S., Gafvelin, G., Scheynius, A. and van Hage-Hamsten, M., 2001. A hypoallergenic derivative of the major allergen of the dust mite Lepidoglyphus destructor, Lep d 2.6Cys, induces less IgE reactivity and cellular response in the skin than recombinant Lep d 2. International Archives of Allergy and Immunology, 126 (1), pp. 41-49.

Eriksson, T. L. J., Rasool, O., Huecas, S., Whitley, P., Crameri, R., Appenzeller, U., Gafvelin, G. and van Hage-Hamsten, M., 2001. Cloning of three new allergens from the dust mite Lepidoglyphus destructor using phage surface display technology. European Journal of Biochemistry, 268 (2), pp. 287-294.

Eriksson, T. L. J., Rasool, O., Whitley, P., Crameri, R. and van Hage-Hamsten, M., 2000. Cloning of two allergens from the dust mite Lepidoglyphus destructor using phage display technology. Journal of Allergy and Clinical Immunology, 105 (1 Supplement part 2), S229.

This list was generated on Tue Jul 22 15:57:53 2014 IST.