Publications

Found 477 results
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2017
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
Puleo, D. E., Kucera, K., Hammarén, H. M., Ungureanu, D., Newton, A. S., Silvennoinen, O., Jorgensen, W. L., and Schlessinger, J. (2017) Identification and Characterization of JAK2 Pseudokinase Domain Small Molecule Binders. ACS Med Chem Lett. 8, 618-621
Newton, A. S., Deiana, L., Puleo, D. E., Cisneros, J. A., Cutrona, K. J., Schlessinger, J., and Jorgensen, W. L. (2017) JAK2 JH2 Fluorescence Polarization Assay and Crystal Structures for Complexes with Three Small Molecules. ACS Med Chem Lett. 8, 614-617
Wang, L., Nam, Y., Lee, A. K., Yu, C., Roth, K., Chen, C., Ransey, E. M., and Sliz, P. (2017) LIN28 Zinc Knuckle Domain Is Required and Sufficient to Induce let-7 Oligouridylation. Cell Rep. 18, 2664-2675
Huang, H. - T., Seo, H. - S., Zhang, T., Wang, Y., Jiang, B., Li, Q., Buckley, D. L., Nabet, B., Roberts, J. M., Paulk, J., Dastjerdi, S., Winter, G. E., McLauchlan, H., Moran, J., Bradner, J. E., Eck, M. J., Dhe-Paganon, S., Zhao, J. J., and Gray, N. S. (2017) MELK is not necessary for the proliferation of basal-like breast cancer cells. Elife. 10.7554/eLife.26693
Welsch, M. E., Kaplan, A., Chambers, J. M., Stokes, M. E., Bos, P. H., Zask, A., Zhang, Y., Sanchez-Martin, M., Badgley, M. A., Huang, C. S., Tran, T. H., Akkiraju, H., Brown, L. M., Nandakumar, R., Cremers, S., Yang, W. Seok, Tong, L., Olive, K. P., Ferrando, A., and Stockwell, B. R. (2017) Multivalent Small-Molecule Pan-RAS Inhibitors. Cell. 168, 878-889.e29
Perry, K., Capel, M., Banerjee, S., Kourinov, I., A. Lynch, E., Murphy, F., Neau, D., Rajashankar, K.  R., Salbego, C., Schuermann, J. P., Sukumar, N., Withrow, J., and Ealick, S. E. (2017) NE-CAT: Crystallography Beamlines for Challenging Structural Biology Research. Award Winners and Abstracts of the 31st Annual Symposium of The Protein Society, Montreal, Canada, July 24-27, 2017. 26, 6-209
Nakashige, T. G., Zygiel, E. M., Drennan, C. L., and Nolan, E. M. (2017) Nickel Sequestration by the Host-Defense Protein Human Calprotectin. J Am Chem Soc. 10.1021/jacs.7b01212
Nakashige, T. G., Zygiel, E. M., Drennan, C. L., and Nolan, E. M. (2017) Nickel Sequestration by the Host-Defense Protein Human Calprotectin. J Am Chem Soc. 10.1021/jacs.7b01212
Kourinov, I., Capel, M., Banerjee, S., A. Lynch, E., Murphy, F., Neau, D., Perry, K., Rajashankar, K., Salbego, C., Schuermann, J., Sukumar, N., Withrow, J., and Ealick, S. (2017) Northeastern Collaborative Access Team (NE-CAT) Crystallography Beam Lines for Challenging Structural Biology Research. 2017 Annual Meeting of the American Crystallographic Association, May 26-30, 2017
Seegar, T. C. M., Killingsworth, L. B., Saha, N., Meyer, P. A., Patra, D., Zimmerman, B., Janes, P. W., Rubinstein, E., Nikolov, D. B., Skiniotis, G., Kruse, A. C., and Blacklow, S. C. (2017) Structural Basis for Regulated Proteolysis by the α-Secretase ADAM10.. Cell. 171, 1638-1648.e7
Schmier, B. J., Nelersa, C. M., and Malhotra, A. (2017) Structural Basis for the Bidirectional Activity of Bacillus nanoRNase NrnA. Sci Rep. 7, 11085
Lanier, M., Pickens, J., Bigi, S. V., Bradshaw-Pierce, E. L., Chambers, A., Cheruvallath, Z. S., Cole, D., Dougan, D. R., Ermolieff, J., Gibson, T., Halkowycz, P., Hirokawa, A., Ivetac, A., Miura, J., Nunez, E., Sabat, M., Tyhonas, J., Wang, H., Wang, X., and Swann, S. (2017) Structure-Based Design of ASK1 Inhibitors as Potential Agents for Heart Failure. ACS Med Chem Lett. 8, 316-320
2018
Pinger, J., Nešić, D., Ali, L., Aresta-Branco, F., Lilic, M., Chowdhury, S., Kim, H. - S., Verdi, J., Raper, J., Ferguson, M. A. J., F Papavasiliou, N., and C Stebbins, E. (2018) African trypanosomes evade immune clearance by O-glycosylation of the VSG surface coat. Nat Microbiol. 3, 932-938
Dayeh, D. M., Cantara, W. A., Kitzrow, J. P., Musier-Forsyth, K., and Nakanishi, K. (2018) Argonaute-based programmable RNase as a tool for cleavage of highly-structured RNA. Nucleic Acids Res. 46, e98
Nakashige, T. G., Bowman, S. E. J., Zygiel, E. M., Drennan, C. L., and Nolan, E. M. (2018) Biophysical Examination of the Calcium-Modulated Nickel-Binding Properties of Human Calprotectin Reveals Conformational Change in the EF-Hand Domains and HisAsp Site. Biochemistry. 10.1021/acs.biochem.8b00415
Nakashige, T. G., Bowman, S. E. J., Zygiel, E. M., Drennan, C. L., and Nolan, E. M. (2018) Biophysical Examination of the Calcium-Modulated Nickel-Binding Properties of Human Calprotectin Reveals Conformational Change in the EF-Hand Domains and HisAsp Site. Biochemistry. 10.1021/acs.biochem.8b00415
Rudolph, M. J., Vance, D. J., Kelow, S., Angalakurthi, S. Krishna, Nguyen, S., Davis, S. A., Rong, Y., C Middaugh, R., Weis, D. D., Dunbrack, R., Karanicolas, J., and Mantis, N. J. (2018) Contribution of an unusual CDR2 element of a single domain antibody in ricin toxin binding affinity and neutralizing activity. Protein Eng Des Sel. 10.1093/protein/gzy022
Deng, Z., Paknejad, N., Maksaev, G., Sala-Rabanal, M., Nichols, C. G., Hite, R. K., and Yuan, P. (2018) Cryo-EM and X-ray structures of TRPV4 reveal insight into ion permeation and gating mechanisms. Nat Struct Mol Biol. 25, 252-260
Grell, T. A. J., Bell, B. N., Nguyen, C., Dowling, D. P., Bruender, N. A., Bandarian, V., and Drennan, C. L. (2018) Crystal structure of AdoMet radical enzyme 7-carboxy-7-deazaguanine synthase from Escherichia coli suggests how modifications near [4Fe-4S] cluster engender flavodoxin specificity. Protein Sci. 10.1002/pro.3529
Wang, Y., Sosinowski, T., Novikov, A., Crawford, F., Neau, D. B., Yang, J., Kwok, W. W., Marrack, P., Kappler, J. W., and Dai, S. (2018) C-terminal modification of the insulin B:11-23 peptide creates superagonists in mouse and human type 1 diabetes. Proc Natl Acad Sci U S A. 115, 162-167
Wang, Y., Sosinowski, T., Novikov, A., Crawford, F., Neau, D. B., Yang, J., Kwok, W. W., Marrack, P., Kappler, J. W., and Dai, S. (2018) C-terminal modification of the insulin B:11-23 peptide creates superagonists in mouse and human type 1 diabetes. Proc Natl Acad Sci U S A. 115, 162-167
Kono, M., Ochida, A., Oda, T., Imada, T., Banno, Y., Taya, N., Masada, S., Kawamoto, T., Yonemori, K., Nara, Y., Fukase, Y., Yukawa, T., Tokuhara, H., Skene, R., Sang, B. - C., Hoffman, I. D., Snell, G. P., Uga, K., Shibata, A., Igaki, K., Nakamura, Y., Nakagawa, H., Tsuchimori, N., Yamasaki, M., Shirai, J., and Yamamoto, S. (2018) Discovery of [cis-3-({(5 R)-5-[(7-Fluoro-1,1-dimethyl-2,3-dihydro-1H-inden-5-yl)carbamoyl]-2-methoxy-7,8-dihydro-1,6-naphthyridin-6(5H)-yl}carbonyl)cyclobutyl]acetic Acid (TAK-828F) as a Potent Selective and Orally Available Novel Retinoic Acid Receptor-R. J Med Chem. 10.1021/acs.jmedchem.8b00061
Kono, M., Ochida, A., Oda, T., Imada, T., Banno, Y., Taya, N., Masada, S., Kawamoto, T., Yonemori, K., Nara, Y., Fukase, Y., Yukawa, T., Tokuhara, H., Skene, R., Sang, B. - C., Hoffman, I. D., Snell, G. P., Uga, K., Shibata, A., Igaki, K., Nakamura, Y., Nakagawa, H., Tsuchimori, N., Yamasaki, M., Shirai, J., and Yamamoto, S. (2018) Discovery of [cis-3-({(5 R)-5-[(7-Fluoro-1,1-dimethyl-2,3-dihydro-1H-inden-5-yl)carbamoyl]-2-methoxy-7,8-dihydro-1,6-naphthyridin-6(5H)-yl}carbonyl)cyclobutyl]acetic Acid (TAK-828F) as a Potent Selective and Orally Available Novel Retinoic Acid Receptor-R. J Med Chem. 10.1021/acs.jmedchem.8b00061
Kono, M., Ochida, A., Oda, T., Imada, T., Banno, Y., Taya, N., Masada, S., Kawamoto, T., Yonemori, K., Nara, Y., Fukase, Y., Yukawa, T., Tokuhara, H., Skene, R., Sang, B. - C., Hoffman, I. D., Snell, G. P., Uga, K., Shibata, A., Igaki, K., Nakamura, Y., Nakagawa, H., Tsuchimori, N., Yamasaki, M., Shirai, J., and Yamamoto, S. (2018) Discovery of [cis-3-({(5 R)-5-[(7-Fluoro-1,1-dimethyl-2,3-dihydro-1H-inden-5-yl)carbamoyl]-2-methoxy-7,8-dihydro-1,6-naphthyridin-6(5H)-yl}carbonyl)cyclobutyl]acetic Acid (TAK-828F) as a Potent Selective and Orally Available Novel Retinoic Acid Receptor-R. J Med Chem. 10.1021/acs.jmedchem.8b00061

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