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Patchett, S., Lv, Z., Rut, W., Békés, M., Drag, M., Olsen, S. K., and Huang, T. T. (2021) A molecular sensor determines the ubiquitin substrate specificity of SARS-CoV-2 papain-like protease. Cell Rep. 36, 109754
Passalacqua, L. F. M., Banco, M. T., Moon, J. D., Li, X., Jaffrey, S. R., and Ferré-D'Amaré, A. R. (2023) Intricate 3D architecture of a DNA mimic of GFP. Nature. 618, 1078-1084
Passalacqua, L. F. M., Starich, M. R., Link, K. A., Wu, J., Knutson, J. R., Tjandra, N., Jaffrey, S. R., and Ferré-D'Amaré, A. R. (2023) Co-crystal structures of the fluorogenic aptamer Beetroot show that close homology may not predict similar RNA architecture. Nat Commun. 14, 2969
Pascolutti, R., Sun, X., Kao, J., Maute, R. L., Ring, A. M., Bowman, G. R., and Kruse, A. C. (2016) Structure and Dynamics of PD-L1 and an Ultra-High-Affinity PD-1 Receptor Mutant. Structure. 24, 1719-1728
Partridge, J. R., and Schwartz, T. U. (2009) Crystallographic and biochemical analysis of the Ran-binding zinc finger domain. J Mol Biol. 391, 375-89
Park, H. Ho, and Wu, H. (2007) Crystallization and preliminary X-ray crystallographic studies of the oligomeric death-domain complex between PIDD and RAIDD. Acta Crystallogr Sect F Struct Biol Cryst Commun. 63, 229-32
Park, E., Graziano, B. R., Zheng, W., Garabedian, M., Goode, B. L., and Eck, M. J. (2015) Structure of a Bud6/Actin Complex Reveals a Novel WH2-like Actin Monomer Recruitment Motif. Structure. 23, 1492-1499
Park, J. Sung, Choi, J., Cao, L., Mohanty, J., Suzuki, Y., Park, A., Baker, D., Schlessinger, J., and Lee, S. (2022) Isoform-specific inhibition of FGFR signaling achieved by a de-novo-designed mini-protein. Cell Rep. 41, 111545
Park, H. Ho, Tookes, H. Emory, and Wu, H. (2006) Crystallization and preliminary X-ray crystallographic studies of Drep-3, a DFF-related protein from Drosophila melanogaster. Acta Crystallogr Sect F Struct Biol Cryst Commun. 62, 597-9
Park, M. Seul, Araya-Secchi, R., Brackbill, J. A., Phan, H. - D., Kehling, A. C., El-Wahab, E. W. Abd, Dayeh, D. M., Sotomayor, M., and Nakanishi, K. (2019) Multidomain Convergence of Argonaute during RISC Assembly Correlates with the Formation of Internal Water Clusters. Mol Cell. 75, 725-740.e6
Park, H. Ho, Logette, E., Raunser, S., Cuenin, S., Walz, T., Tschopp, J., and Wu, H. (2007) Death domain assembly mechanism revealed by crystal structure of the oligomeric PIDDosome core complex. Cell. 128, 533-46
Park, E., Kim, N., Ficarro, S. B., Zhang, Y., Lee, B. Il, Cho, A., Kim, K., Park, A. K. J., Park, W. - Y., Murray, B., Meyerson, M., Beroukhim, R., Marto, J. A., Cho, J., and Eck, M. J. (2015) Structure and mechanism of activity-based inhibition of the EGF receptor by Mig6. Nat Struct Mol Biol. 22, 703-711
Park, E., Rawson, S., Li, K., Kim, B. - W., Ficarro, S. B., Del Pino, G. Gonzalez-, Sharif, H., Marto, J. A., Jeon, H., and Eck, M. J. (2019) Architecture of autoinhibited and active BRAF-MEK1-14-3-3 complexes. Nature. 575, 545-550
Park, K. - S., Xiong, Y., Yim, H., Velez, J., Babault, N., Kumar, P., Liu, J., and Jin, J. (2022) Discovery of the First-in-Class G9a/GLP Covalent Inhibitors. J Med Chem. 10.1021/acs.jmedchem.2c00652
Park, M. Seul, Phan, H. - D., Busch, F., Hinckley, S. H., Brackbill, J. A., Wysocki, V. H., and Nakanishi, K. (2017) Human Argonaute3 has slicer activity. Nucleic Acids Res. 10.1093/nar/gkx916
Paranjpe, M. N., Marina, V. I., Grachev, A. A., Maviza, T. P., Tolicheva, O. A., Paleskava, A., Osterman, I. A., Sergiev, P. V., Konevega, A. L., Polikanov, Y. S., and Gagnon, M. G. (2023) Insights into the molecular mechanism of translation inhibition by the ribosome-targeting antibiotic thermorubin.. Nucleic Acids Res. 51, 449-462
Papp-Wallace, K. M., Nguyen, N. Q., Jacobs, M. R., Bethel, C. R., Barnes, M. D., Kumar, V., Bajaksouzian, S., Rudin, S. D., Rather, P. N., Bhavsar, S., Ravikumar, T., Deshpande, P. K., Patil, V., Yeole, R., Bhagwat, S. S., Patel, M. V., van den Akker, F., and Bonomo, R. A. (2018) Strategic Approaches to Overcome Resistance against Gram-Negative Pathogens Using β-Lactamase Inhibitors and β-Lactam Enhancers: Activity of Three Novel Diazabicyclooctanes WCK 5153, Zidebactam (WCK 5107), and WCK 4234.. J Med Chem. 61, 4067-4086
Papini, C., Ullah, I., Ranjan, A. P., Zhang, S., Wu, Q., Spasov, K. A., Zhang, C., Mothes, W., Crawford, J. M., Lindenbach, B. D., Uchil, P. D., Kumar, P., Jorgensen, W. L., and Anderson, K. S. (2024) Proof-of-concept studies with a computationally designed M inhibitor as a synergistic combination regimen alternative to Paxlovid. Proc Natl Acad Sci U S A. 121, e2320713121
Papadopoulos, E., Jenni, S., Kabha, E., Takrouri, K. J., Yi, T., Salvi, N., Luna, R. E., Gavathiotis, E., Mahalingam, P., Arthanari, H., Rodriguez-Mias, R., Yefidoff-Freedman, R., Aktas, B. H., Chorev, M., Halperin, J. A., and Wagner, G. (2014) Structure of the eukaryotic translation initiation factor eIF4E in complex with 4EGI-1 reveals an allosteric mechanism for dissociating eIF4G. Proc Natl Acad Sci U S A. 111, E3187-95
Papadaki, G. F., Ani, O., Florio, T. J., Young, M. C., Danon, J. N., Sun, Y., Dersh, D., and Sgourakis, N. G. (2023) Decoupling peptide binding from T cell receptor recognition with engineered chimeric MHC-I molecules. Front Immunol. 14, 1116906
Pantel, L., Florin, T., Dobosz-Bartoszek, M., Racine, E., Sarciaux, M., Serri, M., Houard, J., Campagne, J. - M., de Figueiredo, R. Marcia, Midrier, C., Gaudriault, S., Givaudan, A., Lanois, A., Forst, S., Aumelas, A., Cotteaux-Lautard, C., Bolla, J. - M., Lundberg, C. Vingsbo, Huseby, D. L., Hughes, D., Villain-Guillot, P., Mankin, A. S., Polikanov, Y. S., and Gualtieri, M. (2018) Odilorhabdins, Antibacterial Agents that Cause Miscoding by Binding at a New Ribosomal Site. Mol Cell. 70, 83-94.e7
Pandya, R. K., Partridge, J. R., Love, K. Routenberg, Schwartz, T. U., and Ploegh, H. L. (2010) A structural element within the HUWE1 HECT domain modulates self-ubiquitination and substrate ubiquitination activities. J Biol Chem. 285, 5664-73
Pan, C., Zimmer, A., Shah, M., Huynh, M. Sang, Lai, C. Chieh- Lin, Sit, B., Hooda, Y., Curran, D. M., and Moraes, T. F. (2021) Actinobacillus utilizes a binding-protein dependent ABC transporter to acquire the active form of Vitamin B. J Biol Chem. 10.1016/j.jbc.2021.101046
Palioura, S., R Sherrer, L., Steitz, T. A., Söll, D., and Simonovic, M. (2009) The human SepSecS-tRNASec complex reveals the mechanism of selenocysteine formation. Science. 325, 321-5
Palani, S., Machida, Y., Alvey, J. R., Mishra, V., Welter, A. L., Cui, G., Bragantini, B., Botuyan, M. Victoria, Cong, A. T. Q., Mer, G., Schellenberg, M. J., and Machida, Y. J. (2024) Dimerization-dependent serine protease activity of FAM111A prevents replication fork stalling at topoisomerase 1 cleavage complexes. Nat Commun. 15, 2064