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D
Sankhala, R. S., Lal, K. G., Jensen, J. L., Dussupt, V., Mendez-Rivera, L., Bai, H., Wieczorek, L., Mayer, S. V., Zemil, M., Wagner, D. A., Townsley, S. M., Hajduczki, A., Chang, W. C., Chen, W. - H., Donofrio, G. C., Jian, N., King, H. A. D., Lorang, C. G., Martinez, E. J., Rees, P. A., Peterson, C. E., Schmidt, F., Hart, T. J., Duso, D. K., Kummer, L. W., Casey, S. P., Williams, J. K., Kannan, S., Slike, B. M., Smith, L., Swafford, I., Thomas, P. V., Tran, U., Currier, J. R., Bolton, D. L., Davidson, E., Doranz, B. J., Hatziioannou, T., Bieniasz, P. D., Paquin-Proulx, D., Reiley, W. W., Rolland, M., Sullivan, N. J., Vasan, S., Collins, N. D., Modjarrad, K., Gromowski, G. D., Polonis, V. R., Michael, N. L., Krebs, S. J., and M Joyce, G. (2024) Diverse array of neutralizing antibodies elicited upon Spike Ferritin Nanoparticle vaccination in rhesus macaques. Nat Commun. 15, 200
Sankhala, R. S., Lal, K. G., Jensen, J. L., Dussupt, V., Mendez-Rivera, L., Bai, H., Wieczorek, L., Mayer, S. V., Zemil, M., Wagner, D. A., Townsley, S. M., Hajduczki, A., Chang, W. C., Chen, W. - H., Donofrio, G. C., Jian, N., King, H. A. D., Lorang, C. G., Martinez, E. J., Rees, P. A., Peterson, C. E., Schmidt, F., Hart, T. J., Duso, D. K., Kummer, L. W., Casey, S. P., Williams, J. K., Kannan, S., Slike, B. M., Smith, L., Swafford, I., Thomas, P. V., Tran, U., Currier, J. R., Bolton, D. L., Davidson, E., Doranz, B. J., Hatziioannou, T., Bieniasz, P. D., Paquin-Proulx, D., Reiley, W. W., Rolland, M., Sullivan, N. J., Vasan, S., Collins, N. D., Modjarrad, K., Gromowski, G. D., Polonis, V. R., Michael, N. L., Krebs, S. J., and M Joyce, G. (2024) Diverse array of neutralizing antibodies elicited upon Spike Ferritin Nanoparticle vaccination in rhesus macaques. Nat Commun. 15, 200
Sankhala, R. S., Lal, K. G., Jensen, J. L., Dussupt, V., Mendez-Rivera, L., Bai, H., Wieczorek, L., Mayer, S. V., Zemil, M., Wagner, D. A., Townsley, S. M., Hajduczki, A., Chang, W. C., Chen, W. - H., Donofrio, G. C., Jian, N., King, H. A. D., Lorang, C. G., Martinez, E. J., Rees, P. A., Peterson, C. E., Schmidt, F., Hart, T. J., Duso, D. K., Kummer, L. W., Casey, S. P., Williams, J. K., Kannan, S., Slike, B. M., Smith, L., Swafford, I., Thomas, P. V., Tran, U., Currier, J. R., Bolton, D. L., Davidson, E., Doranz, B. J., Hatziioannou, T., Bieniasz, P. D., Paquin-Proulx, D., Reiley, W. W., Rolland, M., Sullivan, N. J., Vasan, S., Collins, N. D., Modjarrad, K., Gromowski, G. D., Polonis, V. R., Michael, N. L., Krebs, S. J., and M Joyce, G. (2024) Diverse array of neutralizing antibodies elicited upon Spike Ferritin Nanoparticle vaccination in rhesus macaques. Nat Commun. 15, 200
Ryder, B. D., Boyer, D. R., Ustyantseva, E., Mendoza-Oliva, A., Kuska, M. I., Wydorski, P. M., Sawaya, M., Diamond, M. I., Eisenberg, D. S., Kampinga, H. H., and Joachimiak, L. A. (2023) DNAJB8 oligomerization is mediated by an aromatic-rich motif that is dispensable for substrate activity. bioRxiv. 10.1101/2023.03.06.531355
Ryder, B. D., Ustyantseva, E., Boyer, D. R., Mendoza-Oliva, A., Kuska, M. I., Wydorski, P. M., Macierzyńska, P., Morgan, N., Sawaya, M. R., Diamond, M. I., Kampinga, H. H., and Joachimiak, L. A. (2024) DNAJB8 oligomerization is mediated by an aromatic-rich motif that is dispensable for substrate activity. Structure. 32, 662-678.e8
Bhandari, S., Biswas, S., Chaudhary, A., Dutta, S., and Suguna, K. (2019) Dodecameric structure of a small heat shock protein from Mycobacterium marinum M. Proteins. 10.1002/prot.25657
Winter, G. E., Buckley, D. L., Paulk, J., Roberts, J. M., Souza, A., Dhe-Paganon, S., and Bradner, J. E. (2015) DRUG DEVELOPMENT. Phthalimide conjugation as a strategy for in vivo target protein degradation. Science. 348, 1376-81
Du, J., Zhong, X., Bernatavichute, Y. V., Stroud, H., Feng, S., Caro, E., Vashisht, A. A., Terragni, J., Chin, H. Gyeong, Tu, A., Hetzel, J., Wohlschlegel, J. A., Pradhan, S., Patel, D. J., and Jacobsen, S. E. (2012) Dual binding of chromomethylase domains to H3K9me2-containing nucleosomes directs DNA methylation in plants. Cell. 151, 167-80
Scott, D. C., Monda, J. K., Grace, C. R. R., Duda, D. M., Kriwacki, R. W., Kurz, T., and Schulman, B. A. (2010) A dual E3 mechanism for Rub1 ligation to Cdc53. Mol Cell. 39, 784-96
Remillard, D., Buckley, D. L., Seo, H. - S., Ferguson, F. M., Dhe-Paganon, S., Bradner, J. E., and Gray, N. S. (2019) Dual Inhibition of TAF1 and BET Bromodomains from the BI-2536 Kinase Inhibitor Scaffold. ACS Med Chem Lett. 10, 1443-1449
Brown, N. G., VanderLinden, R., Watson, E. R., Weissmann, F., Ordureau, A., Wu, K. - P., Zhang, W., Yu, S., Mercredi, P. Y., Harrison, J. S., Davidson, I. F., Qiao, R., Lu, Y., Dube, P., Brunner, M. R., Grace, C. R. R., Miller, D. J., Haselbach, D., Jarvis, M. A., Yamaguchi, M., Yanishevski, D., Petzold, G., Sidhu, S. S., Kuhlman, B., Kirschner, M. W., J Harper, W., Peters, J. - M., Stark, H., and Schulman, B. A. (2016) Dual RING E3 Architectures Regulate Multiubiquitination and Ubiquitin Chain Elongation by APC/C. Cell. 165, 1440-1453
Brown, N. G., VanderLinden, R., Watson, E. R., Weissmann, F., Ordureau, A., Wu, K. - P., Zhang, W., Yu, S., Mercredi, P. Y., Harrison, J. S., Davidson, I. F., Qiao, R., Lu, Y., Dube, P., Brunner, M. R., Grace, C. R. R., Miller, D. J., Haselbach, D., Jarvis, M. A., Yamaguchi, M., Yanishevski, D., Petzold, G., Sidhu, S. S., Kuhlman, B., Kirschner, M. W., J Harper, W., Peters, J. - M., Stark, H., and Schulman, B. A. (2016) Dual RING E3 Architectures Regulate Multiubiquitination and Ubiquitin Chain Elongation by APC/C. Cell. 165, 1440-1453
Yi, C., Chen, B., Qi, B., Zhang, W., Jia, G., Zhang, L., Li, C. J., Dinner, A. R., Yang, C. - G., and He, C. (2012) Duplex interrogation by a direct DNA repair protein in search of base damage. Nat Struct Mol Biol. 19, 671-6
Doamekpor, S. K., Grudzien-Nogalska, E., Mlynarska-Cieslak, A., Kowalska, J., Kiledjian, M., and Tong, L. (2020) DXO/Rai1 enzymes remove 5'-end FAD and dephospho-CoA caps on RNAs. Nucleic Acids Res. 48, 6136-6148
E
Huang, D. T., Ayrault, O., Hunt, H. W., Taherbhoy, A. M., Duda, D. M., Scott, D. C., Borg, L. A., Neale, G., Murray, P. J., Roussel, M. F., and Schulman, B. A. (2009) E2-RING expansion of the NEDD8 cascade confers specificity to cullin modification. Mol Cell. 33, 483-95
Geronimo, I., Denning, C. A., W Rogers, E., Othman, T., Huxford, T., Heidary, D. K., Glazer, E. C., and Payne, C. M. (2016) Effect of Mutation and Substrate Binding on the Stability of Cytochrome P450BM3 Variants. Biochemistry. 55, 3594-606
Duncan-Lowey, B., McNamara-Bordewick, N. K., Tal, N., Sorek, R., and Kranzusch, P. J. (2021) Effector-mediated membrane disruption controls cell death in CBASS antiphage defense. Mol Cell. 10.1016/j.molcel.2021.10.020
Dhayalan, B., Fitzpatrick, A., Mandal, K., Whittaker, J., Weiss, M. A., Tokmakoff, A., and Kent, S. B. H. (2016) Efficient Total Chemical Synthesis of (13) C=(18) O Isotopomers of Human Insulin for Isotope-Edited FTIR. Chembiochem. 17, 415-20
McMillan, B. J., Tibbe, C., Jeon, H., Drabek, A. A., Klein, T., and Blacklow, S. C. (2016) Electrostatic Interactions between Elongated Monomers Drive Filamentation of Drosophila Shrub, a Metazoan ESCRT-III Protein. Cell Rep. 16, 1211-1217
Larson, M. R., Rajashankar, K. R., Patel, M. H., Robinette, R. A., Crowley, P. J., Michalek, S., L Brady, J., and Deivanayagam, C. (2010) Elongated fibrillar structure of a streptococcal adhesin assembled by the high-affinity association of alpha- and PPII-helices. Proc Natl Acad Sci U S A. 107, 5983-8
Dang, B., Kubota, T., Mandal, K., Correa, A. M., Bezanilla, F., and Kent, S. B. H. (2016) Elucidation of the Covalent and Tertiary Structures of Biologically Active Ts3 Toxin. Angew Chem Int Ed Engl. 55, 8639-42
Xiong, X., Tian, S., Yang, P., Lebreton, F., Bao, H., Sheng, K., Yin, L., Chen, P., Zhang, J., Qi, W., Ruan, J., Wu, H., Chen, H., Breault, D. T., Wu, H., Earl, A. M., Gilmore, M. S., Abraham, J., and Dong, M. (2022) Emerging enterococcus pore-forming toxins with MHC/HLA-I as receptors. Cell. 185, 1157-1171.e22
Kim, S. Kyung, Barron, L., Hinck, C. S., Petrunak, E. M., Cano, K. E., Thangirala, A., Iskra, B., Brothers, M., Vonberg, M., Leal, B., Richter, B., Kodali, R., Taylor, A. B., Du, S., Barnes, C. O., Sulea, T., Calero, G., P Hart, J., Hart, M. J., Demeler, B., and Hinck, A. P. (2017) An engineered transforming growth factor β (TGF-β) monomer that functions as a dominant negative to block TGF-β signaling.. J Biol Chem. 292, 7173-7188
Kim, S. Kyung, Barron, L., Hinck, C. S., Petrunak, E. M., Cano, K. E., Thangirala, A., Iskra, B., Brothers, M., Vonberg, M., Leal, B., Richter, B., Kodali, R., Taylor, A. B., Du, S., Barnes, C. O., Sulea, T., Calero, G., P Hart, J., Hart, M. J., Demeler, B., and Hinck, A. P. (2017) An engineered transforming growth factor β (TGF-β) monomer that functions as a dominant negative to block TGF-β signaling.. J Biol Chem. 292, 7173-7188
Noh, K. - M., Wang, H., Kim, H. R., Wenderski, W., Fang, F., Li, C. H., Dewell, S., Hughes, S. H., Melnick, A. M., Patel, D. J., Li, H., and C Allis, D. (2015) Engineering of a Histone-Recognition Domain in Dnmt3a Alters the Epigenetic Landscape and Phenotypic Features of Mouse ESCs. Mol Cell. 59, 89-103

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