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Bourne, A.M. and Thomas, W.G. (2007). ADAMs as mediators of AngII actions. In Po Sing Leung (Ed.), Frontiers in Research of the Renin-Angiotensin System on Human Disease (pp. 273-302) Dordrecht, The Netherlands: Springer, Heidelberg. 37  
Bourne, A. M. and Thomas, W. G. (2007). ADAMs as mediators of Angiotensin II actions.. In Nigel M. Hooper and Uwe Lendeckel (Ed.), Frontiers in Research of the Renin-Angiotensin System on Human Disease (pp. 273-301) Netherlands: Springer. doi:10.1007/978-1-4020-6372-5_13 40   0
Bathgate, R. A. D., Lekgabe, E. D., McGuane, J. T., Su, Y., Pham, T., Ferraro, T., Layfield, S., Hannan, R. D., Thomas, W. G., Samuel, C. S. and Du, X.-J. (2008) Adenovirus-mediated delivery of relaxin reverses cardiac fibrosis. Molecular and Cellular Endocrinology, 280 1-2: 30-38. doi:10.1016/j.mce.2007.09.008 59   15 Cited 15 times in Scopus15 0
George, A. J., Purdue, B. W., Gould, K., Handoko, Y., Thomas, D. W., Morgan, K. A., Simpson, K. J., Thomas, W. G. and Hannan, R. D. (2012). A functional SiRNA screening approach to investigate the mechanism underlying GPCR-mediated EGFR Transactivation in Malignancy. In: Abstracts of the 22nd Biennial Congress of the European Association for Cancer Research. 22nd Biennial Congress of the European Association for Cancer Research, Barcelona Spain, (S149-S149). 07-10 July 2012. 41   0
Jones, E. S., DelBorgo, M., Bosnjak, S., Perlmutter, P., Thomas, W. G., Aguilar, M. I. and Widdop, R. E. (2012). Beta-amino acid substitution of angiotensin III imparts significant AT2 receptor selectivity and vascular function. In: 33rd Annual Scientific Meeting of the High-Blood-Pressure-Research-Council-of-Australia (HBPRCA), Perth, WA, Australia, (500-500). 6-9 December 2011. doi:10.1161/HYP.0b013e3182602164 34   0 0
Lattin, J. E., Greenwood, K. P., Daly, N. L., Kelly, G, Zidar, D. A., Clark, R. J., Thomas, W. G., Kellie, Stuart, Craik, D. J., Hume, D. A. and Sweet, M. J. (2009) Beta-arrestin 2 is required for complement C1q expression in macrophages and constrains factor-independent survival. Molecular Immunology, 47 2-3: 340-347. doi:10.1016/j.molimm.2009.09.012 107   6 Cited 9 times in Scopus9 0
Kompa, A. R., Thomas, W. G., See, F., Tzanidis, A., Hannan, R. D. and Krum, H. (2004) Cardiovascular Role of Urotensin II: Effect of Chronic Infusion in the Rat. Peptides, 25 10: 1783-1788. doi:10.1016/j.peptides.2004.03.029 44   33 Cited 32 times in Scopus32 0
Wyse, B. D., Prior, I. A., Qian, H. W., Morrow, I. C., Nixon, S., Muncke, C., Kurzchalia, T. V., Thomas, W. G., Parton, R. G. and Hancock, J. F. (2003) Caveolin interacts with the angiotensin II type 1 receptor during exocytic transport but not at the plasma membrane. Journal of Biological Chemistry, 278 26: 23738-23746. doi:10.1074/jbc.M212892200 69   85 Cited 91 times in Scopus91 0
Callander, G. E., Thomas, W. G. and Bathgate, R. A. D. (2009) Development and Optimization of MicroRNA against Relaxin-3. Annals of the New York Academy of Sciences, 1160 Relaxin and Related Peptides: Fifth International Conference: 261-264. doi:10.1111/j.1749-6632.2008.03816.x 44   5 Cited 4 times in Scopus4 0
Ballinger, M. L., Ivey, M. E., Osman, N., Thomas, W. G. and Little, P. J. (2009) Endothelin-1 activates ETA receptors on human vascular smooth muscle cells to yield proteoglycans with increased binding to LDL. Atherosclerosis, 205 2: 451-457. doi:10.1016/j.atherosclerosis.2009.01.024 53   18 Cited 18 times in Scopus18 0
Allen, A. M., Dosanjh, J. K., Erac, M., Dassanayake, S., Hannan, R. D. and Thomas, W. G. (2006) Expression of Constitutively Active Angiotensin Receptors in the Rostral Ventrolateral Medulla Increases Blood Pressure. Hypertension, 47 6: 1054-1061. doi:10.1161/01.HYP.0000218576.36574.54 48   36 Cited 37 times in Scopus37 1
Di Nicolantonio, R., Kostka, V., Kwitek, A., Jacob, H., Thomas, W. G. and Harrap, S. B. (2006) Fine mapping of Lvm1: a quantitative trait locus controlling heart size independently of blood pressure. Pulmonary Pharmacology & Therapeutics, 19 1: 70-73. doi:10.1016/j.pupt.2005.02.010 38   4 Cited 5 times in Scopus5 0
Mifune, M., Ohtsu, H., Suzuki, H., Nakashima, H., Brailoiu, E., Dun, N. J., Frank, G. D., Inagami, T., Higashiyama, S., Thomas, W. G., Eckhart, A. D., Dempsey, P. J. and Eguchi, S. (2005) G Protein Coupling and Second Messenger Generation Are Indispensable for Metalloprotease-dependent, Heparin-binding Epidermal Growth Factor Shedding Through Angiotensin II Type-1 Receptor. Journal of Biological Chemistry, 280 28: 26592-26599. doi:10.1074/jbc.M502906200 77   76 Cited 82 times in Scopus82 1
Smith N. J., Chan, H.-W., Osborne, J. E., Thomas, W. G. and Hannan, R. D. (2004) Hijacking epidermal growth factor receptors by angiotensin II: New possibilities for understanding and treating cardiac hypertrophy. Cellular and Molecular Life Sciences, 61 21: 2695-2703. doi:10.1007/s00018-004-4244-3 86   27 Cited 28 times in Scopus28 0
Cully, T. R., Purdue, B. W., Thomas, W. G., Gregorevic, P. and Launikonis, B. S. (2012). Injection of rAAV-Orai1 in adult wt and dystrophic mice up-regulates store operated calcium entry. In: Collaborative Congress of the European-Society-of-Gene-and-Cell-Therapy/French-Society-of-Cell-and-Gene-Therapy, Versailles, France, (A129-A129). 25-29 October 2012. 28   0
Vivar, Raul, Soto, C, Copaja, M, Mateluna, F, Aranguiz, P, Munoz, J P, Chiong, M, Garcia, L, Letelier, A, Thomas, W G, Lavandero, S and Diaz-Araya, G (2008) Phospholipase C/Protein kinase C pathway Mediates Angiotensin ll-Dependent Apoptosis in Neonatal Rat cardiac Fibroblasts Expressing AT1 Receptor. Journal of Cardiovascular Pharmacology, 52 2: 184-190. doi:10.1097/FJC.0b013e318181fadd 40   15 Cited 16 times in Scopus16 0
Porrello, E. R., Curl, C. L., Harrap, S. B., Thomas, W. G. and Delbridge, L. M. D. (2006) Post-natal cardiac development in an experimental model of normotensive cardiac hypertrophy. Journal of Molecular and Cellular Cardiology, 41 4: 744-744. doi:10.1016/j.yjmcc.2006.06.047 93   0 0
O'Callaghan, E.L., Bassi, J.K., Porrello, E.R., Delbridge, L.M.D., Thomas, W.G. and Allen, A.M. (2011) Regulation of angiotensinogen by angiotensin II in mouse primary astrocyte cultures. Journal of Neurochemistry, 119 1: 18-26. doi:10.1111/j.1471-4159.2011.07406.x 38   5 Cited 6 times in Scopus6 0
Huynh, J., Thomas, W. G., Aguilar, M. I. and Pattenden, L. K. (2009) Role of helix 8 in G protein-coupled receptors based on structure-function studies on the type 1 angiotensin receptor. Molecular and Cellular Endocrinology, 302 2: 118-127. doi:10.1016/j.mce.2009.01.002 67   22 Cited 24 times in Scopus24 0
Wang, Z., Chan, H. W., Thomas, W. G. and Paravicini, T. M. (2014). The function of ErbB4 receptor in the postnatal mouse heart. In: Abstracts From the 35th Annual Scientific Meeting of the HBPRCA and the 39th Annual Scientific Meeting of the AAS. 35th Annual Scientific Meeting of the High Blood Pressure Research Council of Australia (HBPRCA) / 39th Annual Scientific Meeting of the Australian-Atherosclerosis-Society (AAS), Melbourne Australia, (E161-E161). 05 - 07 December 2013. doi:10.1161/HYP.0000000000000010 12   0 0
Thomas, W. G., Qian, H. and Smith, N. J. (2004) When 6 is 9: ‘Uncoupled’ AT 1 receptors turn signalling on its head. Cellular and Molecular Life Sciences, 61 21: 2687-2694. doi:10.1007/s00018-004-4245-2 36   12 Cited 10 times in Scopus10 0