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Do, T. D., LaPointe, N. E., Sangwan, S., Teplow, D. B., Feinstein, S. C., Sawaya, M. R., Eisenberg, D. S., and Bowers, M. T. (2014) Factors that drive peptide assembly from native to amyloid structures: experimental and theoretical analysis of [leu-5]-enkephalin mutants. J Phys Chem B. 118, 7247-56
Harrison, O. J., Brasch, J., Katsamba, P. S., Ahlsen, G., Noble, A. J., Dan, H., Sampogna, R. V., Potter, C. S., Carragher, B., Honig, B., and Shapiro, L. (2020) Family-wide Structural and Biophysical Analysis of Binding Interactions among Non-clustered δ-Protocadherins.. Cell Rep. 30, 2655-2671.e7
Wang, L., Yang, J. Kuk, Kabaleeswaran, V., Rice, A. J., Cruz, A. C., Park, A. Young, Yin, Q., Damko, E., Jang, S. Bok, Raunser, S., Robinson, C. V., Siegel, R. M., Walz, T., and Wu, H. (2010) The Fas-FADD death domain complex structure reveals the basis of DISC assembly and disease mutations. Nat Struct Mol Biol. 17, 1324-9
Tararina, M. A., Dam, K. K., Dhingra, M., Janda, K. D., Palfey, B. A., and Allen, K. N. (2021) Fast Kinetics Reveals Rate-Limiting Oxidation and the Role of the Aromatic Cage in the Mechanism of the Nicotine-Degrading Enzyme NicA2. Biochemistry. 60, 259-273
Tararina, M. A., Dam, K. K., Dhingra, M., Janda, K. D., Palfey, B. A., and Allen, K. N. (2021) Fast Kinetics Reveals Rate-Limiting Oxidation and the Role of the Aromatic Cage in the Mechanism of the Nicotine-Degrading Enzyme NicA2. Biochemistry. 60, 259-273
Debler, E. W., Ma, Y., Seo, H. - S., Hsia, K. - C., Noriega, T. R., Blobel, G., and Hoelz, A. (2008) A fence-like coat for the nuclear pore membrane. Mol Cell. 32, 815-26
Moody, J. D., Levy, S., Mathieu, J., Xing, Y., Kim, W., Dong, C., Tempel, W., Robitaille, A. M., Dang, L. T., Ferreccio, A., Detraux, D., Sidhu, S., Zhu, L., Carter, L., Xu, C., Valensisi, C., Wang, Y., R Hawkins, D., Min, J., Moon, R. T., Orkin, S. H., Baker, D., and Ruohola-Baker, H. (2017) First critical repressive H3K27me3 marks in embryonic stem cells identified using designed protein inhibitor. Proc Natl Acad Sci U S A. 10.1073/pnas.1706907114
Moody, J. D., Levy, S., Mathieu, J., Xing, Y., Kim, W., Dong, C., Tempel, W., Robitaille, A. M., Dang, L. T., Ferreccio, A., Detraux, D., Sidhu, S., Zhu, L., Carter, L., Xu, C., Valensisi, C., Wang, Y., R Hawkins, D., Min, J., Moon, R. T., Orkin, S. H., Baker, D., and Ruohola-Baker, H. (2017) First critical repressive H3K27me3 marks in embryonic stem cells identified using designed protein inhibitor. Proc Natl Acad Sci U S A. 10.1073/pnas.1706907114
Moody, J. D., Levy, S., Mathieu, J., Xing, Y., Kim, W., Dong, C., Tempel, W., Robitaille, A. M., Dang, L. T., Ferreccio, A., Detraux, D., Sidhu, S., Zhu, L., Carter, L., Xu, C., Valensisi, C., Wang, Y., R Hawkins, D., Min, J., Moon, R. T., Orkin, S. H., Baker, D., and Ruohola-Baker, H. (2017) First critical repressive H3K27me3 marks in embryonic stem cells identified using designed protein inhibitor. Proc Natl Acad Sci U S A. 10.1073/pnas.1706907114
Shen, Y., Li, F., Szewczyk, M. M., Halabelian, L., Chau, I., Eram, M. S., Seña, Cdela, Park, K. - S., Meng, F., Chen, H., Zeng, H., Dong, A., Wu, H., Trush, V. V., McLeod, D., Zepeda-Velázquez, C. A., Campbell, R. M., Mader, M. M., Watson, B. M., Schapira, M., Arrowsmith, C. H., Al-awar, R., Barsyte-Lovejoy, D., H Kaniskan, Ü., Brown, P. J., Vedadi, M., and Jin, J. (2021) A First-in-Class, Highly Selective and Cell-Active Allosteric Inhibitor of Protein Arginine Methyltransferase 6. J Med Chem. 64, 3697-3706
Doamekpor, S. K., Schwer, B., Sanchez, A. M., Shuman, S., and Lima, C. D. (2015) Fission yeast RNA triphosphatase reads an Spt5 CTD code. RNA. 21, 113-23
Bertram, J. H., Mulliner, K. M., Shi, K., Plunkett, M. H., Nixon, P., Serratore, N. A., Douglas, C. J., Aihara, H., and Barney, B. M. (2017) Five Fatty Aldehyde Dehydrogenase Enzymes from Marinobacter and Acinetobacter spp. and Structural Insights into the Aldehyde Binding Pocket. Appl Environ Microbiol. 10.1128/AEM.00018-17
Hamill, M. J., Jost, M., Wong, C., Elliott, S. J., and Drennan, C. L. (2011) Flavin-induced oligomerization in Escherichia coli adaptive response protein AidB. Biochemistry. 50, 10159-69
Anmangandla, A., Jana, S., Peng, K., Wallace, S. D., Bagde, S. R., Drown, B. S., Xu, J., Hergenrother, P. J., J Fromme, C., and Lin, H. (2023) A Fluorescence Polarization Assay for Macrodomains Facilitates the Identification of Potent Inhibitors of the SARS-CoV-2 Macrodomain. ACS Chem Biol. 18, 1200-1207
Truong, L., Kooshapur, H., Dey, S. Kumar, Li, X., Tjandra, N., Jaffrey, S. R., and Ferré-D'Amaré, A. R. (2021) The fluorescent aptamer Squash extensively repurposes the adenine riboswitch fold. Nat Chem Biol. 10.1038/s41589-021-00931-2
Xu, S., Uddin, M. Jashim, Banerjee, S., Duggan, K., Musee, J., Kiefer, J. R., Ghebreselasie, K., Rouzer, C. A., and Marnett, L. J. (2019) Fluorescent indomethacin-dansyl conjugates utilize the membrane-binding domain of cyclooxygenase-2 to block the opening to the active site. J Biol Chem. 10.1074/jbc.RA119.007405
Rudolph, M. J., Tsymbal, A. M., Dutta, A., Davis, S. A., Algava, B., Roberge, J. Y., Tumer, N. E., and Li, X. - P. (2024) Fragment Screening to Identify Inhibitors Targeting Ribosome Binding of Shiga Toxin 2. ACS Infect Dis. 10.1021/acsinfecdis.4c00224
Rudolph, M. J., Tsymbal, A. M., Dutta, A., Davis, S. A., Algava, B., Roberge, J. Y., Tumer, N. E., and Li, X. - P. (2024) Fragment Screening to Identify Inhibitors Targeting Ribosome Binding of Shiga Toxin 2. ACS Infect Dis. 10.1021/acsinfecdis.4c00224
Saha, N., San Baek, D. -, Mendoza, R. P., Robev, D., Xu, Y., Goldgur, Y., M de la Cruz, J., de Stanchina, E., Janes, P. W., Xu, K., Dimitrov, D. S., and Nikolov, D. B. (2023) Fully human monoclonal antibody targeting activated ADAM10 on colorectal cancer cells. Biomed Pharmacother. 161, 114494
Saha, N., San Baek, D. -, Mendoza, R. P., Robev, D., Xu, Y., Goldgur, Y., M de la Cruz, J., de Stanchina, E., Janes, P. W., Xu, K., Dimitrov, D. S., and Nikolov, D. B. (2023) Fully human monoclonal antibody targeting activated ADAM10 on colorectal cancer cells. Biomed Pharmacother. 161, 114494
Saha, N., San Baek, D. -, Mendoza, R. P., Robev, D., Xu, Y., Goldgur, Y., M de la Cruz, J., de Stanchina, E., Janes, P. W., Xu, K., Dimitrov, D. S., and Nikolov, D. B. (2023) Fully human monoclonal antibody targeting activated ADAM10 on colorectal cancer cells. Biomed Pharmacother. 161, 114494
Posternak, G., Tang, X., Maisonneuve, P., Jin, T., Lavoie, H., Daou, S., Orlicky, S., de Rugy, T. Goullet, Caldwell, L., Chan, K., Aman, A., Prakesch, M., Poda, G., Mader, P., Wong, C., Maier, S., Kitaygorodsky, J., Larsen, B., Colwill, K., Yin, Z., Ceccarelli, D. F., Batey, R. A., Taipale, M., Kurinov, I., Uehling, D., Wrana, J., Durocher, D., Gingras, A. - C., Al-awar, R., Therrien, M., and Sicheri, F. (2020) Functional characterization of a PROTAC directed against BRAF mutant V600E. Nat Chem Biol. 10.1038/s41589-020-0609-7
Posternak, G., Tang, X., Maisonneuve, P., Jin, T., Lavoie, H., Daou, S., Orlicky, S., de Rugy, T. Goullet, Caldwell, L., Chan, K., Aman, A., Prakesch, M., Poda, G., Mader, P., Wong, C., Maier, S., Kitaygorodsky, J., Larsen, B., Colwill, K., Yin, Z., Ceccarelli, D. F., Batey, R. A., Taipale, M., Kurinov, I., Uehling, D., Wrana, J., Durocher, D., Gingras, A. - C., Al-awar, R., Therrien, M., and Sicheri, F. (2020) Functional characterization of a PROTAC directed against BRAF mutant V600E. Nat Chem Biol. 10.1038/s41589-020-0609-7
Posternak, G., Tang, X., Maisonneuve, P., Jin, T., Lavoie, H., Daou, S., Orlicky, S., de Rugy, T. Goullet, Caldwell, L., Chan, K., Aman, A., Prakesch, M., Poda, G., Mader, P., Wong, C., Maier, S., Kitaygorodsky, J., Larsen, B., Colwill, K., Yin, Z., Ceccarelli, D. F., Batey, R. A., Taipale, M., Kurinov, I., Uehling, D., Wrana, J., Durocher, D., Gingras, A. - C., Al-awar, R., Therrien, M., and Sicheri, F. (2020) Functional characterization of a PROTAC directed against BRAF mutant V600E. Nat Chem Biol. 10.1038/s41589-020-0609-7
Daudu, O. I., Meeks, K. R., Zhang, L., Seravalli, J., Tanner, J. J., and Becker, D. F. (2023) Functional Impact of a Cancer-Related Variant in Human Δ-Pyrroline-5-Carboxylate Reductase 1.. ACS Omega. 8, 3509-3519

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