Anna Koster
Research Expertise
Publications
Development and validation of a potent and specific inhibitor for the CLC-2 chloride channel
Proceedings of the National Academy of Sciences / Dec 04, 2020
Koster, A. K., Reese, A. L., Kuryshev, Y., Wen, X., McKiernan, K. A., Gray, E. E., Wu, C., Huguenard, J. R., Maduke, M., & Du Bois, J. (2020). Development and validation of a potent and specific inhibitor for the CLC-2 chloride channel. Proceedings of the National Academy of Sciences, 117(51), 32711–32721. https://doi.org/10.1073/pnas.2009977117
Dynamical model of the CLC-2 ion channel reveals conformational changes associated with selectivity-filter gating
PLOS Computational Biology / Mar 30, 2020
McKiernan, K. A., Koster, A. K., Maduke, M., & Pande, V. S. (2020). Dynamical model of the CLC-2 ion channel reveals conformational changes associated with selectivity-filter gating. PLOS Computational Biology, 16(3), e1007530. https://doi.org/10.1371/journal.pcbi.1007530
A selective class of inhibitors for the CLC-Ka chloride ion channel
Proceedings of the National Academy of Sciences / Apr 18, 2018
Koster, A. K., Wood, C. A. P., Thomas-Tran, R., Chavan, T. S., Almqvist, J., Choi, K.-H., Du Bois, J., & Maduke, M. (2018). A selective class of inhibitors for the CLC-Ka chloride ion channel. Proceedings of the National Academy of Sciences, 115(21). https://doi.org/10.1073/pnas.1720584115
Trapping the elusive aza-oxyallylic cation: new opportunities in heterocycloaddition chemistry
Tetrahedron Letters / Aug 01, 2014
Barnes, K. L., Koster, A. K., & Jeffrey, C. S. (2014). Trapping the elusive aza-oxyallylic cation: new opportunities in heterocycloaddition chemistry. Tetrahedron Letters, 55(34), 4690–4696. https://doi.org/10.1016/j.tetlet.2014.06.050
Experience
Scripps Research Institute
Postdoctoral Researcher / September, 2019 — Present
Stanford University
Graduate Student / September, 2013 — September, 2019
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