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Auchincloss, Lisa Corwin, Laursen, Sandra L., Branchaw, Janet L., Eagan, Kevin, Graham, Mark, Hanauer, David I., Lawrie, Gwendolyn, McLinn, Colleen M., Pelaez, Nancy, Rowland, Susan, Towns, Marcy, Trautmann, NancyM., Varma-Nelson, Pratibha, Weston, Timothy J. and Dolan, Erin L. (2014) Assessment of course-based undergraduate research experiences: a meeting report. CBE Life Sciences Education, 13 1: 29-40. doi:10.1187/cbe.14-01-0004 Rowland, Susan (2012) Teaching-focused science academics supervising research students in science education: what's the problem?. Higher Education Research and Development, 31 5: 741-743. doi:10.1080/07294360.2012.702861 Rowland, Susan L., Lawrie, Gwen A., Behrendorff, James B. Y. H. and Gillam, Elizabeth M. J. (2012) Is the undergraduate research experience (URE) always best?: The power of choice in a bifurcated practical stream for a large introductory biochemistry class. Biochemistry and Molecular Biology Education, 40 1: 46-62. doi:10.1002/bmb.20576 Rowland, Susan L. (2012) Biochemistry, molecular biology, and the changing tertiary education landscape in Australia. Biochemistry and Molecular Biology Education, 40 1: 24-28. doi:10.1002/bmb.20577 Rowland, Susan L., Smith, Christopher A., Gillam, Elizabeth M. A. and Wright, Tony (2011) The concept lens diagram: A new mechanism for presenting biochemistry content in terms of "big ideas". Biochemistry and Molecular Biology Education, 39 4: 267-279. doi:10.1002/bmb.20517 Rowland, S. L. and Wood, I. (2011). Producing new forms of engaging: High-benefit assessment for undergraduate science students. In: Woolverton, Christopher J., Abstracts: 18th Annual ASM Conference for Undergraduate Educators. 18th Annual ASM Conference for Undergraduate Educators, Baltimore, MD, United States, (109-109). 2 - 5 June 2011. doi:10.1128/jmbe.v12i1.298 Rowland, Susan L., Wadsworth, Kimberly D., Robson, Scott A., Robichon, Carine, Beckwith, Jon and King, Glenn F. (2010) Evidence from artificial septal targeting and site-directed mutagenesis that residues in the extracytoplasmic beta domain of DivIB mediate its interaction with the divisomal transpeptidase PBP 2B. Journal of Bacteriology, 192 23: 6116-6125. doi:10.1128/JB.00783-10 Rowland, S., Gillam, E. M. J., Hamilton, S. E., Ramakrishna, M., Reid, A., Smith, C., Ward, L. C., Wood, I. and Wright, A. (2010). Rebuilding a generalist biochemistry course around core concepts rather than heavy content: Painting the big picture for a large mixed-learner cohort. In: 21st Biennial Conference on Chemistry Education, Denton, TX, U.S.A., (). 1-5 August 2010. Jacques, D. A., Streamer, M, Rowland, S. L., King, G. F., Guss, J. M., Trewhella, J and Langley, D. B. (2009) Structure of the sporulation histidine kinase inhibitor Sda from Bacillus subtilis and insights into its solution state. Acta Crystallographica Section D: Biological Crystallography, 65 Part 6: 574-581. doi:10.1107/S090744490901169X Wadswoth, Kimberly D., Rowland, Susan L., Harry, Elizabeth J. and King, Glenn F. (2008) The divisomal protein DivIB contains multiple epitopes that mediate its recruitment to incipient division sites. Molecular Microbiology, 67 5: 1143-1155. doi:10.1111/j.1365-2958.2008.06114.x Rowland, S. L. and King, G. F. (2007) Histidine kinases as antimicrobial targets: prospects and pitfalls. Mini-Reviews in Medicinal Chemistry, 7 11: 1144-1154. doi:10.2174/138955707782331759 Rowland, S. L., Burkholder, W. F., Cunningham, K. A., Maciejewski, M. W., Grossman, A. D. and King, G. F. (2004) Structure and mechanism of action of Sda, an inhibitor of the histidine kinases that regulate initiation of sporulation in Bacillus subtilis. Molecular Cell, 13 5: 689-701. doi:10.1016/S1097-2765(04)00084-X Szeto, T. H., Rowland, S. L., Habrukowich, C. L. and King, G. F. (2003) The MinD membrane targeting sequence is a transplantable lipid-binding helix. Journal of Biological Chemistry, 278 41: 40050-40056. doi:10.1074/jbc.M306876200 Szeto, T. H., Rowland, S. L., Rothfield, L. I. and King, G. F. (2002) Membrane localization of MinD is mediated by a C-terminal motif that is conserved across eubacteria, archaea, and chloroplasts. Proceedings of The National Academy of Sciences of The United States of America, 99 24: 15693-15698. doi:10.1073/pnas.232590599 Szeto, T. H., Rowland, S. L. and King, G. F. (2001) The dimerization function of MinC resides in a structurally autonomous C-terminal domain. Journal of Bacteriology, 183 22: 6684-6687. doi:10.1128/JB.183.22.6684-6687.2001 King, Glenn F., Shih, Yu-Ling, Maciejewski, Mark W., Bains, Naresh P. S., Pan, Borlan, Rowland, Susan L., Mullen, Gregory P. and Rothfield, Lawrence I. (2000) Structural basis for the topological specificity function of MinE. Nature Structural Biology, 7 11: 1013-1017. doi:10.1038/80917

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