Publications

Found 9 results
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Journal Article
Ferrero, S., Flores, M. D., Short, C., Vazquez, C. A., Clark, L. E., Ziegenbein, J., Zink, S., Fuentes, D., Payes, C., Batto, M. V., Collazo, M., García, C. C., Abraham, J., Cordo, S. M., Rodriguez, J. A., and Helguera, G. (2021) Antibody-Based Inhibition of Pathogenic New World Hemorrhagic Fever Mammarenaviruses by Steric Occlusion of the Human Transferrin Receptor 1 Apical Domain. J Virol. 95, e0186820
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
Hickerson, B. T., Daniels-Wells, T. R., Payes, C., Clark, L. E., Candelaria, P. V., Bailey, K. W., Sefing, E. J., Zink, S., Ziegenbein, J., Abraham, J., Helguera, G., Penichet, M. L., and Gowen, B. B. (2022) Host receptor-targeted therapeutic approach to counter pathogenic New World mammarenavirus infections. Nat Commun. 13, 558
Mahmutovic, S., Clark, L., Levis, S. C., Briggiler, A. M., Enria, D. A., Harrison, S. C., and Abraham, J. (2015) Molecular Basis for Antibody-Mediated Neutralization of New World Hemorrhagic Fever Mammarenaviruses. Cell Host Microbe. 18, 705-13
Clark, S. A., Clark, L. E., Pan, J., Coscia, A., McKay, L. G. A., Shankar, S., Johnson, R. I., Griffiths, A., and Abraham, J. (2021) SARS-CoV-2 evolution in an immunocompromised host reveals shared neutralization escape mechanisms. Cell. 10.1101/2020.11.13.381533
Nabel, K. G., Clark, S. A., Shankar, S., Pan, J., Clark, L. E., Yang, P., Coscia, A., McKay, L. G. A., Varnum, H. H., Brusic, V., Tolan, N. V., Zhou, G., Desjardins, M., Turbett, S. E., Kanjilal, S., Sherman, A. C., Dighe, A., LaRocque, R. C., Ryan, E. T., Tylek, C., Cohen-Solal, J. F., Darcy, A. T., Tavella, D., Clabbers, A., Fan, Y., Griffiths, A., Correia, I. R., Seagal, J., Baden, L. R., Charles, R. C., and Abraham, J. (2021) Structural basis for continued antibody evasion by the SARS-CoV-2 receptor binding domain. Science
Abraham, J., Corbett, K. D., Farzan, M., Choe, H., and Harrison, S. C. (2010) Structural basis for receptor recognition by New World hemorrhagic fever arenaviruses. Nat Struct Mol Biol. 17, 438-44
Sahtoe, D. D., Coscia, A., Mustafaoglu, N., Miller, L. M., Olal, D., Vulovic, I., Yu, T. - Y., Goreshnik, I., Lin, Y. - R., Clark, L., Busch, F., Stewart, L., Wysocki, V. H., Ingber, D. E., Abraham, J., and Baker, D. (2021) Transferrin receptor targeting by de novo sheet extension. Proc Natl Acad Sci U S A. 10.1073/pnas.2021569118
Clark, L. E., Mahmutovic, S., Raymond, D. D., Dilanyan, T., Koma, T., Manning, J. T., Shankar, S., Levis, S. C., Briggiler, A. M., Enria, D. A., Wucherpfennig, K. W., Paessler, S., and Abraham, J. (2018) Vaccine-elicited receptor-binding site antibodies neutralize two New World hemorrhagic fever arenaviruses. Nat Commun. 9, 1884