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Mashalidis, E. H., Kaeser, B., Terasawa, Y., Katsuyama, A., Kwon, D. - Y., Lee, K., Hong, J., Ichikawa, S., and Lee, S. - Y. (2019) Chemical logic of MraY inhibition by antibacterial nucleoside natural products. Nat Commun. 10, 2917
Coleman, J. A., Navratna, V., Antermite, D., Yang, D., Bull, J. A., and Gouaux, E. (2020) Chemical and structural investigation of the paroxetine-human serotonin transporter complex. Elife. 10.7554/eLife.56427
Zoltowski, B. D., Chelliah, Y., Wickramaratne, A., Jarocha, L., Karki, N., Xu, W., Mouritsen, H., Hore, P. J., Hibbs, R. E., Green, C. B., and Takahashi, J. S. (2019) Chemical and structural analysis of a photoactive vertebrate cryptochrome from pigeon. Proc Natl Acad Sci U S A. 116, 19449-19457
Su, C. - C., Long, F., Lei, H. - T., Bolla, J. Reddy, Do, S. V., Rajashankar, K. R., and Yu, E. W. (2012) Charged amino acids (R83, E567, D617, E625, R669, and K678) of CusA are required for metal ion transport in the Cus efflux system. J Mol Biol. 422, 429-41
French, J. B., Neau, D. B., and Ealick, S. E. (2011) Characterization of the structure and function of Klebsiella pneumoniae allantoin racemase. J Mol Biol. 410, 447-60
Leettola, C. N., Knight, M. Jane, Cascio, D., Hoffman, S., and Bowie, J. U. (2014) Characterization of the SAM domain of the PKD-related protein ANKS6 and its interaction with ANKS3. BMC Struct Biol. 14, 17
Spicer, T. P., Jiang, J., Taylor, A. B., Choi, J. Yong, P Hart, J., Roush, W. R., Fields, G. B., Hodder, P. S., and Minond, D. (2014) Characterization of selective exosite-binding inhibitors of matrix metalloproteinase 13 that prevent articular cartilage degradation in vitro. J Med Chem. 57, 9598-611
Liu, H., Forouhar, F., Seibt, T., Saneto, R., Wigby, K., Friedman, J., Xia, X., Shchepinov, M. S., Ramesh, S. Kumar, Conrad, M., and Stockwell, B. R. (2022) Characterization of a patient-derived variant of GPX4 for precision therapy. Nat Chem Biol. 18, 91-100
Artavanis-Tsakonas, K., Weihofen, W. A., Antos, J. M., Coleman, B. I., Comeaux, C. A., Duraisingh, M. T., Gaudet, R., and Ploegh, H. L. (2010) Characterization and structural studies of the Plasmodium falciparum ubiquitin and Nedd8 hydrolase UCHL3. J Biol Chem. 285, 6857-66
Liu, C., Sawaya, M. R., Cheng, P. - N., Zheng, J., Nowick, J. S., and Eisenberg, D. (2011) Characteristics of amyloid-related oligomers revealed by crystal structures of macrocyclic β-sheet mimics.. J Am Chem Soc. 133, 6736-44
Salom, D., Padayatti, P. S., and Palczewski, K. (2013) Chapter 24 - Crystallization of G Protein-Coupled Receptors. in Methods in Cell Biology (P. Conn, M. ed), pp. 451-468, Methods in Cell Biology, Academic Press, Volume 117, 451-468
Banerjee, S., Capel, M., Kourinov, I., A. Lynch, E., Murphy, F., Perry, K., Rajashankar, K.  R., Salbego, C., Schuermann, J. P., Sukumar, N., Neau, D., Withrow, J., and Ealick, S. E. (2017) Challenging Structural Biology Research at NE-CAT. BES Trienniel Review of the APS, August 15, 2017
Li, Y., Slavik, K. M., Toyoda, H. C., Morehouse, B. R., Mann, C. C. de Olive, Elek, A., Levy, S., Wang, Z., Mears, K. S., Liu, J., Kashin, D., Guo, X., Mass, T., Sebé-Pedrós, A., Schwede, F., and Kranzusch, P. J. (2023) cGLRs are a diverse family of pattern recognition receptors in innate immunity. Cell. 186, 3261-3276.e20
Slavik, K. M., Morehouse, B. R., Ragucci, A. E., Zhou, W., Ai, X., Chen, Y., Li, L., Wei, Z., Bähre, H., König, M., Seifert, R., S Y Lee, A., Cai, H., Imler, J. - L., and Kranzusch, P. J. (2021) cGAS-like receptors sense RNA and control 3'2'-cGAMP signaling in Drosophila. Nature. 10.1038/s41586-021-03743-5
Zhou, W., Mohr, L., Maciejowski, J., and Kranzusch, P. J. (2021) cGAS phase separation inhibits TREX1-mediated DNA degradation and enhances cytosolic DNA sensing. Mol Cell. 81, 739-755.e7
Demirci, H., Wang, L., Murphy, F. V., Murphy, E. L., Carr, J. F., Blanchard, S. C., Jogl, G., Dahlberg, A. E., and Gregory, S. T. (2013) The central role of protein S12 in organizing the structure of the decoding site of the ribosome. RNA. 19, 1791-801
Tamilselvan, E., and Sotomayor, M. (2024) CELSR1, a core planar cell polarity protein, features a weakly adhesive and flexible cadherin ectodomain. Structure. 10.1016/j.str.2024.01.003
Himanen, J. - P., Saha, N., and Nikolov, D. B. (2007) Cell-cell signaling via Eph receptors and ephrins. Curr Opin Cell Biol. 19, 534-42
Wong, Y. Liang, Anzola, J. V., Davis, R. L., Yoon, M., Motamedi, A., Kroll, A., Seo, C. P., Hsia, J. E., Kim, S. K., Mitchell, J. W., Mitchell, B. J., Desai, A., Gahman, T. C., Shiau, A. K., and Oegema, K. (2015) Cell biology. Reversible centriole depletion with an inhibitor of Polo-like kinase 4. Science. 348, 1155-60
Sun, Z. - W., Waybright, J. M., Beldar, S., Chen, L., Foley, C. A., Norris-Drouin, J. L., Lyu, T. - J., Dong, A., Min, J., Wang, Y. - P., James, L. I., and Wang, Y. (2022) Cdyl Deficiency Brakes Neuronal Excitability and Nociception through Promoting Kcnb1 Transcription in Peripheral Sensory Neurons. Adv Sci (Weinh). 9, e2104317
Ren, A., and Patel, D. J. (2014) c-di-AMP binds the ydaO riboswitch in two pseudo-symmetry-related pockets. Nat Chem Biol. 10, 780-6
Ha, B. Hak, and Boggon, T. J. (2018) CDC42 binds PAK4 via an extended GTPase-effector interface. Proc Natl Acad Sci U S A. 115, 531-536
Greaves, S. A., Ravindran, A., Santos, R. G., Chen, L., Falta, M. T., Wang, Y., Mitchell, A. M., Atif, S. M., Mack, D. G., Tinega, A. N., Maier, L. A., Dai, S., Pinilla, C., Grunewald, J., and Fontenot, A. P. (2021) CD4+ T cells in the lungs of acute sarcoidosis patients recognize an Aspergillus nidulans epitope. J Exp Med. 10.1084/jem.20210785
Draheim, K. M., Li, X., Zhang, R., Fisher, O. S., Villari, G., Boggon, T. J., and Calderwood, D. A. (2015) CCM2-CCM3 interaction stabilizes their protein expression and permits endothelial network formation. J Cell Biol. 208, 987-1001
Lowey, B., Whiteley, A. T., Keszei, A. F. A., Morehouse, B. R., Mathews, I. T., Antine, S. P., Cabrera, V. J., Kashin, D., Niemann, P., Jain, M., Schwede, F., Mekalanos, J. J., Shao, S., S Y Lee, A., and Kranzusch, P. J. (2020) CBASS Immunity Uses CARF-Related Effectors to Sense 3'-5'- and 2'-5'-Linked Cyclic Oligonucleotide Signals and Protect Bacteria from Phage Infection. Cell. 182, 38-49.e17

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