Publications

Found 1198 results
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2023
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., 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
Kim, C. Y., Mitchell, A. J., Kastner, D. W., Albright, C. E., Gutierrez, M. A., Glinkerman, C. M., Kulik, H. J., and Weng, J. - K. (2023) Emergence of a proton exchange-based isomerization and lactonization mechanism in the plant coumarin synthase COSY. Nat Commun. 14, 597
Kim, C. Y., Mitchell, A. J., Kastner, D. W., Albright, C. E., Gutierrez, M. A., Glinkerman, C. M., Kulik, H. J., and Weng, J. - K. (2023) Emergence of a proton exchange-based isomerization and lactonization mechanism in the plant coumarin synthase COSY. Nat Commun. 14, 597
Kim, C. Y., Mitchell, A. J., Kastner, D. W., Albright, C. E., Gutierrez, M. A., Glinkerman, C. M., Kulik, H. J., and Weng, J. - K. (2023) Emergence of a proton exchange-based isomerization and lactonization mechanism in the plant coumarin synthase COSY. Nat Commun. 14, 597
Wang, J. Yang John, Khmelinskaia, A., Sheffler, W., Miranda, M. C., Antanasijevic, A., Borst, A. J., Torres, S. V., Shu, C., Hsia, Y., Nattermann, U., Ellis, D., Walkey, C., Ahlrichs, M., Chan, S., Kang, A., Nguyen, H., Sydeman, C., Sankaran, B., Wu, M., Bera, A. K., Carter, L., Fiala, B., Murphy, M., Baker, D., Ward, A. B., and King, N. P. (2023) Improving the secretion of designed protein assemblies through negative design of cryptic transmembrane domains. Proc Natl Acad Sci U S A. 120, e2214556120
Wang, J. Yang John, Khmelinskaia, A., Sheffler, W., Miranda, M. C., Antanasijevic, A., Borst, A. J., Torres, S. V., Shu, C., Hsia, Y., Nattermann, U., Ellis, D., Walkey, C., Ahlrichs, M., Chan, S., Kang, A., Nguyen, H., Sydeman, C., Sankaran, B., Wu, M., Bera, A. K., Carter, L., Fiala, B., Murphy, M., Baker, D., Ward, A. B., and King, N. P. (2023) Improving the secretion of designed protein assemblies through negative design of cryptic transmembrane domains. Proc Natl Acad Sci U S A. 120, e2214556120
Wang, J. Yang John, Khmelinskaia, A., Sheffler, W., Miranda, M. C., Antanasijevic, A., Borst, A. J., Torres, S. V., Shu, C., Hsia, Y., Nattermann, U., Ellis, D., Walkey, C., Ahlrichs, M., Chan, S., Kang, A., Nguyen, H., Sydeman, C., Sankaran, B., Wu, M., Bera, A. K., Carter, L., Fiala, B., Murphy, M., Baker, D., Ward, A. B., and King, N. P. (2023) Improving the secretion of designed protein assemblies through negative design of cryptic transmembrane domains. Proc Natl Acad Sci U S A. 120, e2214556120
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
Sha, F., Kurosawa, K., Glasser, E., Ketavarapu, G., Albazzaz, S., Koide, A., and Koide, S. (2023) Monobody Inhibitor Selective to the Phosphatase Domain of SHP2 and its Use as a Probe for Quantifying SHP2 Allosteric Regulation. J Mol Biol. 435, 168010
Sha, F., Kurosawa, K., Glasser, E., Ketavarapu, G., Albazzaz, S., Koide, A., and Koide, S. (2023) Monobody Inhibitor Selective to the Phosphatase Domain of SHP2 and its Use as a Probe for Quantifying SHP2 Allosteric Regulation. J Mol Biol. 435, 168010
Sha, F., Kurosawa, K., Glasser, E., Ketavarapu, G., Albazzaz, S., Koide, A., and Koide, S. (2023) Monobody Inhibitor Selective to the Phosphatase Domain of SHP2 and its Use as a Probe for Quantifying SHP2 Allosteric Regulation. J Mol Biol. 435, 168010
Sha, F., Kurosawa, K., Glasser, E., Ketavarapu, G., Albazzaz, S., Koide, A., and Koide, S. (2023) Monobody Inhibitor Selective to the Phosphatase Domain of SHP2 and its Use as a Probe for Quantifying SHP2 Allosteric Regulation. J Mol Biol. 435, 168010
Aguilar, F., Yu, S., Grant, R. A., Swanson, S., Ghose, D., Su, B. G., Sarosiek, K. A., and Keating, A. E. (2023) Peptides from human BNIP5 and PXT1 and non-native binders of pro-apoptotic BAK can directly activate or inhibit BAK-mediated membrane permeabilization. Structure. 31, 265-281.e7
Bethel, N. P., Borst, A. J., Parmeggiani, F., Bick, M. J., Brunette, T. J., Nguyen, H., Kang, A., Bera, A. K., Carter, L., Miranda, M. C., Kibler, R. D., Lamb, M., Li, X., Sankaran, B., and Baker, D. (2023) Precisely patterned nanofibres made from extendable protein multiplexes. Nat Chem. 10.1038/s41557-023-01314-x
Bethel, N. P., Borst, A. J., Parmeggiani, F., Bick, M. J., Brunette, T. J., Nguyen, H., Kang, A., Bera, A. K., Carter, L., Miranda, M. C., Kibler, R. D., Lamb, M., Li, X., Sankaran, B., and Baker, D. (2023) Precisely patterned nanofibres made from extendable protein multiplexes. Nat Chem. 10.1038/s41557-023-01314-x
Govande, A. A., Babnis, A. W., Urban, C., Habjan, M., Hartmann, R., Kranzusch, P. J., and Pichlmair, A. (2023) RNase L-activating 2'-5' oligoadenylates bind ABCF1, ABCF3 and Decr-1. J Gen Virol. 10.1099/jgv.0.001890
Chen, W. - H., Hajduczki, A., Martinez, E. J., Bai, H., Matz, H., Hill, T. M., Lewitus, E., Chang, W. C., Dawit, L., Peterson, C. E., Rees, P. A., Ajayi, A. B., Golub, E. S., Swafford, I., Dussupt, V., David, S., Mayer, S. V., Soman, S., Kuklis, C., Corbitt, C., King, J., Choe, M., Sankhala, R. S., Thomas, P. V., Zemil, M., Wieczorek, L., Hart, T., Duso, D., Kummer, L., Yan, L., Sterling, S. L., Laing, E. D., Broder, C. C., Williams, J. K., Davidson, E., Doranz, B. J., Krebs, S. J., Polonis, V. R., Paquin-Proulx, D., Rolland, M., Reiley, W. W., Gromowski, G. D., Modjarrad, K., Dooley, H., and M Joyce, G. (2023) Shark nanobodies with potent SARS-CoV-2 neutralizing activity and broad sarbecovirus reactivity. Nat Commun. 14, 580
Chen, W. - H., Hajduczki, A., Martinez, E. J., Bai, H., Matz, H., Hill, T. M., Lewitus, E., Chang, W. C., Dawit, L., Peterson, C. E., Rees, P. A., Ajayi, A. B., Golub, E. S., Swafford, I., Dussupt, V., David, S., Mayer, S. V., Soman, S., Kuklis, C., Corbitt, C., King, J., Choe, M., Sankhala, R. S., Thomas, P. V., Zemil, M., Wieczorek, L., Hart, T., Duso, D., Kummer, L., Yan, L., Sterling, S. L., Laing, E. D., Broder, C. C., Williams, J. K., Davidson, E., Doranz, B. J., Krebs, S. J., Polonis, V. R., Paquin-Proulx, D., Rolland, M., Reiley, W. W., Gromowski, G. D., Modjarrad, K., Dooley, H., and M Joyce, G. (2023) Shark nanobodies with potent SARS-CoV-2 neutralizing activity and broad sarbecovirus reactivity. Nat Commun. 14, 580
Chen, W. - H., Hajduczki, A., Martinez, E. J., Bai, H., Matz, H., Hill, T. M., Lewitus, E., Chang, W. C., Dawit, L., Peterson, C. E., Rees, P. A., Ajayi, A. B., Golub, E. S., Swafford, I., Dussupt, V., David, S., Mayer, S. V., Soman, S., Kuklis, C., Corbitt, C., King, J., Choe, M., Sankhala, R. S., Thomas, P. V., Zemil, M., Wieczorek, L., Hart, T., Duso, D., Kummer, L., Yan, L., Sterling, S. L., Laing, E. D., Broder, C. C., Williams, J. K., Davidson, E., Doranz, B. J., Krebs, S. J., Polonis, V. R., Paquin-Proulx, D., Rolland, M., Reiley, W. W., Gromowski, G. D., Modjarrad, K., Dooley, H., and M Joyce, G. (2023) Shark nanobodies with potent SARS-CoV-2 neutralizing activity and broad sarbecovirus reactivity. Nat Commun. 14, 580
Chen, W. - H., Hajduczki, A., Martinez, E. J., Bai, H., Matz, H., Hill, T. M., Lewitus, E., Chang, W. C., Dawit, L., Peterson, C. E., Rees, P. A., Ajayi, A. B., Golub, E. S., Swafford, I., Dussupt, V., David, S., Mayer, S. V., Soman, S., Kuklis, C., Corbitt, C., King, J., Choe, M., Sankhala, R. S., Thomas, P. V., Zemil, M., Wieczorek, L., Hart, T., Duso, D., Kummer, L., Yan, L., Sterling, S. L., Laing, E. D., Broder, C. C., Williams, J. K., Davidson, E., Doranz, B. J., Krebs, S. J., Polonis, V. R., Paquin-Proulx, D., Rolland, M., Reiley, W. W., Gromowski, G. D., Modjarrad, K., Dooley, H., and M Joyce, G. (2023) Shark nanobodies with potent SARS-CoV-2 neutralizing activity and broad sarbecovirus reactivity. Nat Commun. 14, 580
Fram, B., Truebridge, I., Su, Y., Riesselman, A. J., Ingraham, J. B., Passera, A., Napier, E., Thadani, N. N., Lim, S., Roberts, K., Kaur, G., Stiffler, M., Marks, D. S., Bahl, C. D., Khan, A. R., Sander, C., and Gauthier, N. P. (2023) Simultaneous enhancement of multiple functional properties using evolution-informed protein design. bioRxiv. 10.1101/2023.05.09.539914
Fram, B., Truebridge, I., Su, Y., Riesselman, A. J., Ingraham, J. B., Passera, A., Napier, E., Thadani, N. N., Lim, S., Roberts, K., Kaur, G., Stiffler, M., Marks, D. S., Bahl, C. D., Khan, A. R., Sander, C., and Gauthier, N. P. (2023) Simultaneous enhancement of multiple functional properties using evolution-informed protein design. bioRxiv. 10.1101/2023.05.09.539914
Liu, Z., Lee, P. - G., Krez, N., Lam, K. - H., Liu, H., Przykopanski, A., Chen, P., Yao, G., Zhang, S., Tremblay, J. M., Perry, K., Shoemaker, C. B., Rummel, A., Dong, M., and Jin, R. (2023) Structural basis for botulinum neurotoxin E recognition of synaptic vesicle protein 2. Nat Commun. 14, 2338
Wu, A., Salom, D., Hong, J. D., Tworak, A., Watanabe, K., Pardon, E., Steyaert, J., Kandori, H., Katayama, K., Kiser, P. D., and Palczewski, K. (2023) Structural basis for the allosteric modulation of rhodopsin by nanobody binding to its extracellular domain. Nat Commun. 14, 5209

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