BETH GRACZYK
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Dance
Graczyk, B.
(September 2020). Boundaries of Touch.
Interview with Michael W., Daniel W., and Jule M. on the process of Here. Them. Now., Interact Theater Project with LGBTQIA+ artists. Published in Critical Correspondence.


Science
​1. Fong, K.K., Zelter, A., Graczyk, B., Hoyt, J.M., Riffle, M., Johnson, R., MacCoss, M., & Davis, T.N. (2018). Novel phosphorylation states of the yeast spindle pole body. Biology Open, 7(10): bio033647.
https://doi.org/10.1242/bio.033647

2. 
Fong, K.K., Sarangapani, K.K., Ysko, E.C., Riffle, M., Llauro, A., Graczyk, B., Davis, T.N., & Asbury, C.L. (2017). Direct measurement of microtubule attachment strength to yeast centrosomes. Molecular Biology of the Cell.
https://doi.org/10.1091/mbc.E17-04-0243

3. 
Fong, K.K., Graczyk, B., & Davis, T.N. (2016). Purification of fluorescently labeled Saccharomyces cerevisiae spindle pole bodies. In Methods in Molecular Biology, 1413: 189–195.
https://doi.org/10.1007/978-1-4939-3542-0_12

4. 
Han, X., Wang, Y., Aslanian, A., Fonslow, B., Graczyk, B., Davis, T.N., & Yates, J.R. III. (2014). In-line separation by capillary electrophoresis prior to analysis by top-down mass spectrometry enables sensitive characterization of protein complexes. Journal of Proteome Research, 13(12): 6078–6086.
https://doi.org/10.1021/pr500903x

5. 
Skelly, D.A., Merrihew, G.E., Riffle, M., Connelly, C.F., Kerr, E.O., Johansson, M., Jaschob, D., Graczyk, B., et al. (2013). Integrative phenomics reveals insight into the structure of phenotypic diversity in budding yeast. Genome Research, 23(9): 1496–1504.
https://doi.org/10.1101/gr.155762.113

6. 
Graczyk, B., & Davis, T.N. (2011). An assay to measure the affinity of proteins for microtubules by quantitative fluorescent microscopy. Analytical Biochemistry, 410(2): 313–315.

7. 
Fonslow, B.R., Kang, S.A., Gestaut, D.R., Graczyk, B., Davis, T.N., Sabatini, D.M., & Yates, J.R. III. (2010). Native capillary isoelectric focusing for the separation of protein complex isoforms and subcomplexes. Analytical Chemistry, 82(15): 6643–6651.
https://doi.org/10.1021/ac1012589

8. 
Gestaut, D.R., Graczyk, B., Cooper, J., Widlund, P.O., Zelter, A., Wordeman, L., Asbury, C.L., & Davis, T.N. (2008). Phosphoregulation and depolymerization-driven movement of the Dam1 complex do not require ring formation. Nature Cell Biology, 10(4): 407–414.
https://doi.org/10.1038/ncb1702

9. 
Powers, A.F., Franck, A.D., Gestaut, D.R., Cooper, J., Graczyk, B., Wei, R.R., Wordeman, L., Davis, T.N., & Asbury, C.L. (2009). The Ndc80 kinetochore complex forms load-bearing attachments to dynamic microtubule tips via biased diffusion. Cell, 136(5): 865–875.
https://doi.org/10.1016/j.cell.2009.01.015

10. 
Shimogawa, M.M., Graczyk, B., Gardner, M.K., Francis, S.E., White, E.A., Ess, M., Molk, J.N., et al. (2006). Mps1 phosphorylation of Dam1 couples kinetochores to microtubule plus ends at metaphase. Current Biology, 16(15): 1489–1501.
https://doi.org/10.1016/j.cub.2006.06.057

11. 
Hazbun, T.R., Malmström, L., Anderson, S., Graczyk, B.J., Fox, B., Riffle, M., Sundin, B.A., et al. (2003). Assigning function to yeast proteins by integration of technologies. Molecular Cell, 12(6): 1353–1365.
https://doi.org/10.1016/s1097-2765(03)00489-1
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  • Projects
    • Desire Motor
    • Thresholds
    • Curatorial
    • Publications
  • About
    • Artist Statement
    • Video
    • Press
  • Teaching
  • Calendar
  • SUPPORT