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Turlington, Z. R., de Macedo, S. Vaz Ferrei, Perry, K., Belsky, S. L., Faust, J. A., Snider, M. J., and Hicks, K. A. (2023) Ligand bound structure of a 6-hydroxynicotinic acid 3-monooxygenase provides mechanistic insights. Arch Biochem Biophys. 752, 109859
Wittlinger, F., Ogboo, B. C., Shevchenko, E., Damghani, T., Pham, C. D., Schaeffner, I. K., Oligny, B. T., Chitnis, S. P., Beyett, T. S., Rasch, A., Buckley, B., Urul, D. A., Shaurova, T., May, E. W., Schaefer, E. M., Eck, M. J., Hershberger, P. A., Poso, A., Laufer, S. A., and Heppner, D. E. (2024) Linking ATP and allosteric sites to achieve superadditive binding with bivalent EGFR kinase inhibitors. Commun Chem. 7, 38
Wittlinger, F., Ogboo, B. C., Shevchenko, E., Damghani, T., Pham, C. D., Schaeffner, I. K., Oligny, B. T., Chitnis, S. P., Beyett, T. S., Rasch, A., Buckley, B., Urul, D. A., Shaurova, T., May, E. W., Schaefer, E. M., Eck, M. J., Hershberger, P. A., Poso, A., Laufer, S. A., and Heppner, D. E. (2024) Linking ATP and allosteric sites to achieve superadditive binding with bivalent EGFR kinase inhibitors. Commun Chem. 7, 38
Suddala, K. C., Price, I. R., Dandpat, S. S., Janeček, M., Kührová, P., Šponer, J., Banáš, P., Ke, A., and Walter, N. G. (2019) Local-to-global signal transduction at the core of a Mn sensing riboswitch. Nat Commun. 10, 4304
Huang, L., Ishibe-Murakami, S., Patel, D. J., and Serganov, A. (2011) Long-range pseudoknot interactions dictate the regulatory response in the tetrahydrofolate riboswitch. Proc Natl Acad Sci U S A. 108, 14801-6
Tayeb-Fligelman, E., Bowler, J. T., Tai, C. E., Sawaya, M. R., Jiang, Y. Xiao, Garcia, G., Griner, S. L., Cheng, X., Salwinski, L., Lutter, L., Seidler, P. M., Lu, J., Rosenberg, G. M., Hou, K., Abskharon, R., Pan, H., Zee, C. - T., Boyer, D. R., Li, Y., Anderson, D. H., Murray, K. A., Falcon, G., Cascio, D., Saelices, L., Damoiseaux, R., Arumugaswami, V., Guo, F., and Eisenberg, D. S. (2023) Low complexity domains of the nucleocapsid protein of SARS-CoV-2 form amyloid fibrils. Nat Commun. 14, 2379
Dussupt, V., Sankhala, R. S., Mendez-Rivera, L., Townsley, S. M., Schmidt, F., Wieczorek, L., Lal, K. G., Donofrio, G. C., Tran, U., Jackson, N. D., Zaky, W. I., Zemil, M., Tritsch, S. R., Chen, W. - H., Martinez, E. J., Ahmed, A., Choe, M., Chang, W. C., Hajduczki, A., Jian, N., Peterson, C. E., Rees, P. A., Rutkowska, M., Slike, B. M., Selverian, C. N., Swafford, I., Teng, I. - T., Thomas, P. V., Zhou, T., Smith, C. J., Currier, J. R., Kwong, P. D., Rolland, M., Davidson, E., Doranz, B. J., Mores, C. N., Hatziioannou, T., Reiley, W. W., Bieniasz, P. D., Paquin-Proulx, D., Gromowski, G. D., Polonis, V. R., Michael, N. L., Modjarrad, K., M Joyce, G., and Krebs, S. J. (2021) Low-dose in vivo protection and neutralization across SARS-CoV-2 variants by monoclonal antibody combinations. Nat Immunol. 10.1038/s41590-021-01068-z
Dussupt, V., Sankhala, R. S., Mendez-Rivera, L., Townsley, S. M., Schmidt, F., Wieczorek, L., Lal, K. G., Donofrio, G. C., Tran, U., Jackson, N. D., Zaky, W. I., Zemil, M., Tritsch, S. R., Chen, W. - H., Martinez, E. J., Ahmed, A., Choe, M., Chang, W. C., Hajduczki, A., Jian, N., Peterson, C. E., Rees, P. A., Rutkowska, M., Slike, B. M., Selverian, C. N., Swafford, I., Teng, I. - T., Thomas, P. V., Zhou, T., Smith, C. J., Currier, J. R., Kwong, P. D., Rolland, M., Davidson, E., Doranz, B. J., Mores, C. N., Hatziioannou, T., Reiley, W. W., Bieniasz, P. D., Paquin-Proulx, D., Gromowski, G. D., Polonis, V. R., Michael, N. L., Modjarrad, K., M Joyce, G., and Krebs, S. J. (2021) Low-dose in vivo protection and neutralization across SARS-CoV-2 variants by monoclonal antibody combinations. Nat Immunol. 10.1038/s41590-021-01068-z
Dussupt, V., Sankhala, R. S., Mendez-Rivera, L., Townsley, S. M., Schmidt, F., Wieczorek, L., Lal, K. G., Donofrio, G. C., Tran, U., Jackson, N. D., Zaky, W. I., Zemil, M., Tritsch, S. R., Chen, W. - H., Martinez, E. J., Ahmed, A., Choe, M., Chang, W. C., Hajduczki, A., Jian, N., Peterson, C. E., Rees, P. A., Rutkowska, M., Slike, B. M., Selverian, C. N., Swafford, I., Teng, I. - T., Thomas, P. V., Zhou, T., Smith, C. J., Currier, J. R., Kwong, P. D., Rolland, M., Davidson, E., Doranz, B. J., Mores, C. N., Hatziioannou, T., Reiley, W. W., Bieniasz, P. D., Paquin-Proulx, D., Gromowski, G. D., Polonis, V. R., Michael, N. L., Modjarrad, K., M Joyce, G., and Krebs, S. J. (2021) Low-dose in vivo protection and neutralization across SARS-CoV-2 variants by monoclonal antibody combinations. Nat Immunol. 10.1038/s41590-021-01068-z
Golczak, M., Sears, A. E., Kiser, P. D., and Palczewski, K. (2015) LRAT-specific domain facilitates vitamin A metabolism by domain swapping in HRASLS3. Nat Chem Biol. 11, 26-32
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Aleksandrova, E. V., Ma, C. - X., Klepacki, D., Alizadeh, F., Vázquez-Laslop, N., Liang, J. - H., Polikanov, Y. S., and Mankin, A. S. (2024) Macrolones target bacterial ribosomes and DNA gyrase and can evade resistance mechanisms. Nat Chem Biol. 10.1038/s41589-024-01685-3
Tu, X., and Palczewski, K. (2014) The macular degeneration-linked C1QTNF5 (S163) mutation causes higher-order structural rearrangements. J Struct Biol. 186, 86-94
Osterman, I. A., Khabibullina, N. F., Komarova, E. S., Kasatsky, P., Kartsev, V. G., Bogdanov, A. A., Dontsova, O. A., Konevega, A. L., Sergiev, P. V., and Polikanov, Y. S. (2017) Madumycin II inhibits peptide bond formation by forcing the peptidyl transferase center into an inactive state. Nucleic Acids Res. 10.1093/nar/gkx413
Brewer, M. Red, Yun, C. -hong, Lai, D., Lemmon, M. A., Eck, M. J., and Pao, W. (2013) Mechanism for activation of mutated epidermal growth factor receptors in lung cancer. Proc Natl Acad Sci U S A. 110, E3595-604
Lu, X., McDonald, S. M., M Tortorici, A., Tao, Y. Jane, Del Carpio, R. Vasquez-, Nibert, M. L., Patton, J. T., and Harrison, S. C. (2008) Mechanism for coordinated RNA packaging and genome replication by rotavirus polymerase VP1. Structure. 16, 1678-88
Uysal, S., Cuello, L. G., D Cortes, M., Koide, S., Kossiakoff, A. A., and Perozo, E. (2011) Mechanism of activation gating in the full-length KcsA K+ channel. Proc Natl Acad Sci U S A. 108, 11896-9
Raghuraman, H., Cordero-Morales, J. F., Jogini, V., Pan, A. C., Kollewe, A., Roux, B., and Perozo, E. (2012) Mechanism of Cd2+ coordination during slow inactivation in potassium channels. Structure. 20, 1332-42
Raghuraman, H., Cordero-Morales, J. F., Jogini, V., Pan, A. C., Kollewe, A., Roux, B., and Perozo, E. (2012) Mechanism of Cd2+ coordination during slow inactivation in potassium channels. Structure. 20, 1332-42
Baranovskiy, A. G., Babayeva, N. D., Zhang, Y., Gu, J., Suwa, Y., Pavlov, Y. I., and Tahirov, T. H. (2016) Mechanism of Concerted RNA-DNA Primer Synthesis by the Human Primosome. J Biol Chem. 291, 10006-20
Zhao, H., Xu, L., Bombardi, R., Nargi, R., Deng, Z., Errico, J. M., Nelson, C. A., Dowd, K. A., Pierson, T. C., Crowe, J. E., Diamond, M. S., and Fremont, D. H. (2020) Mechanism of differential Zika and dengue virus neutralization by a public antibody lineage targeting the DIII lateral ridge. J Exp Med. 10.1084/jem.20191792
Du, J., Johnson, L. M., Groth, M., Feng, S., Hale, C. J., Li, S., Vashisht, A. A., Wohlschlegel, J. A., Patel, D. J., and Jacobsen, S. E. (2014) Mechanism of DNA methylation-directed histone methylation by KRYPTONITE. Mol Cell. 55, 495-504
Rechkoblit, O., Kolbanovskiy, A., Malinina, L., Geacintov, N. E., Broyde, S., and Patel, D. J. (2010) Mechanism of error-free and semitargeted mutagenic bypass of an aromatic amine lesion by Y-family polymerase Dpo4. Nat Struct Mol Biol. 17, 379-88
Yockey, O. P., Jha, V., Ghodke, P. P., Xu, T., Xu, W., Ling, H., Pradeepkumar, P. I., and Zhao, L. (2017) Mechanism of Error-Free DNA Replication Past Lucidin-Derived DNA Damage by Human DNA Polymerase κ.. Chem Res Toxicol. 10.1021/acs.chemrestox.7b00227
Jain, R., Choudhury, J. Roy, Buku, A., Johnson, R. E., Prakash, L., Prakash, S., and Aggarwal, A. K. (2017) Mechanism of error-free DNA synthesis across N1-methyl-deoxyadenosine by human DNA polymerase-ι.. Sci Rep. 7, 43904

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