Publications

Found 1211 results
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Journal Article
Moss, F. J., Mahinthichaichan, P., Lodowski, D. T., Kowatz, T., Tajkhorshid, E., Engel, A., Boron, W. F., and Vahedi-Faridi, A. (2020) Aquaporin-7: A Dynamic Aquaglyceroporin With Greater Water and Glycerol Permeability Than Its Bacterial Homolog GlpF. Front Physiol. 11, 728
Xie, W., Lama, L., Yang, X., Kuryavyi, V., Bhattacharya, S., Nudelman, I., Yang, G., Ouerfelli, O., J Glickman, F., Jones, R. A., Tuschl, T., and Patel, D. J. (2023) Arabinose- and xylose-modified analogs of 2',3'-cGAMP act as STING agonists. Cell Chem Biol. 10.1016/j.chembiol.2023.07.002
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
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
Kozono, S., Lin, Y. - M., Seo, H. - S., Pinch, B., Lian, X., Qiu, C., Herbert, M. K., Chen, C. - H., Tan, L., Gao, Z. Jeff, Massefski, W., Doctor, Z. M., Jackson, B. P., Chen, Y., Dhe-Paganon, S., Lu, K. Ping, and Zhou, X. Zhen (2018) Arsenic targets Pin1 and cooperates with retinoic acid to inhibit cancer-driving pathways and tumor-initiating cells. Nat Commun. 9, 3069
Taherbhoy, A. M., Tait, S. W., Kaiser, S. E., Williams, A. H., Deng, A., Nourse, A., Hammel, M., Kurinov, I., Rock, C. O., Green, D. R., and Schulman, B. A. (2011) Atg8 transfer from Atg7 to Atg3: a distinctive E1-E2 architecture and mechanism in the autophagy pathway. Mol Cell. 44, 451-61
Taherbhoy, A. M., Tait, S. W., Kaiser, S. E., Williams, A. H., Deng, A., Nourse, A., Hammel, M., Kurinov, I., Rock, C. O., Green, D. R., and Schulman, B. A. (2011) Atg8 transfer from Atg7 to Atg3: a distinctive E1-E2 architecture and mechanism in the autophagy pathway. Mol Cell. 44, 451-61
Sangwan, S., Zhao, A., Adams, K. L., Jayson, C. K., Sawaya, M. R., Guenther, E. L., Pan, A. C., Ngo, J., Moore, D. M., Soriaga, A. B., Do, T. D., Goldschmidt, L., Nelson, R., Bowers, M. T., Koehler, C. M., Shaw, D. E., Novitch, B. G., and Eisenberg, D. S. (2017) Atomic structure of a toxic, oligomeric segment of SOD1 linked to amyotrophic lateral sclerosis (ALS). Proc Natl Acad Sci U S A. 114, 8770-8775
Diver, M. M., Pedi, L., Koide, A., Koide, S., and Long, S. B. (2018) Atomic structure of the eukaryotic intramembrane RAS methyltransferase ICMT. Nature. 10.1038/nature25439
Diver, M. M., Pedi, L., Koide, A., Koide, S., and Long, S. B. (2018) Atomic structure of the eukaryotic intramembrane RAS methyltransferase ICMT. Nature. 10.1038/nature25439
Mao, D. Y. L., Neculai, D., Downey, M., Orlicky, S., Haffani, Y. Z., Ceccarelli, D. F., Ho, J. S. L., Szilard, R. K., Zhang, W., Ho, C. S., Wan, L., Fares, C., Rumpel, S., Kurinov, I., Arrowsmith, C. H., Durocher, D., and Sicheri, F. (2008) Atomic structure of the KEOPS complex: an ancient protein kinase-containing molecular machine. Mol Cell. 32, 259-75
Kelley, K., Knockenhauer, K. E., Kabachinski, G., and Schwartz, T. U. (2015) Atomic structure of the Y complex of the nuclear pore. Nat Struct Mol Biol. 22, 425-431
Kelley, K., Knockenhauer, K. E., Kabachinski, G., and Schwartz, T. U. (2015) Atomic structure of the Y complex of the nuclear pore. Nat Struct Mol Biol. 22, 425-431
Kelley, K., Knockenhauer, K. E., Kabachinski, G., and Schwartz, T. U. (2015) Atomic structure of the Y complex of the nuclear pore. Nat Struct Mol Biol. 22, 425-431
Krotee, P., Rodriguez, J. A., Sawaya, M. R., Cascio, D., Reyes, F. E., Shi, D., Hattne, J., Nannenga, B. L., Oskarsson, M. E., Philipp, S., Griner, S., Jiang, L., Glabe, C. G., Westermark, G. T., Gonen, T., and Eisenberg, D. S. (2017) Atomic structures of fibrillar segments of hIAPP suggest tightly mated β-sheets are important for cytotoxicity.. Elife. 10.7554/eLife.19273
Zhang, Y., Kittredge, A., Ward, N., Ji, C., Chen, S., and Yang, T. (2018) ATP activates bestrophin ion channels through direct interaction. Nat Commun. 9, 3126
Cai, R., Price, I. R., Ding, F., Wu, F., Chen, T., Zhang, Y., Liu, G., Jardine, P. J., Lu, C., and Ke, A. (2019) ATP/ADP modulates gp16-pRNA conformational change in the Phi29 DNA packaging motor. Nucleic Acids Res. 10.1093/nar/gkz692
Muok, A. R., Ortega, D. R., Kurniyati, K., Yang, W., Maschmann, Z. A., Mabrouk, A. Sidi, Li, C., Crane, B. R., and Briegel, A. (2020) Atypical chemoreceptor arrays accommodate high membrane curvature. Nat Commun. 11, 5763
G Hobbs, A., Baker, N. M., Miermont, A. M., Thurman, R. D., Pierobon, M., Tran, T. H., Anderson, A. O., Waters, A. M., J Diehl, N., Papke, B., Hodge, R. G., Klomp, J. E., Goodwin, C. M., DeLiberty, J. M., Wang, J., Ng, R. W. S., Gautam, P., Bryant, K. L., Esposito, D., Campbell, S. L., Petricoin, E. F., Simanshu, D. K., Aguirre, A. J., Wolpin, B. M., Wennerberg, K., Rudloff, U., Cox, A. D., and Der, C. J. (2019) Atypical KRASG12R Mutant Is Impaired in PI3K Signaling and Macropinocytosis in Pancreatic Cancer. Cancer Discov. 10.1158/2159-8290.CD-19-1006
Iglesias, N., Currie, M. A., Jih, G., Paulo, J. A., Siuti, N., Kalocsay, M., Gygi, S. P., and Moazed, D. (2018) Automethylation-induced conformational switch in Clr4 (Suv39h) maintains epigenetic stability. Nature. 560, 504-508
Kasznel, A. J., Harris, T., Porter, N. J., Zhang, Y., and Chenoweth, D. M. (2019) Aza-proline effectively mimics l-proline stereochemistry in triple helical collagen. Chem Sci. 10, 6979-6983
Steimbach, R. R., Herbst-Gervasoni, C. J., Lechner, S., Stewart, T. Murray, Klinke, G., Ridinger, J., Géraldy, M. N. E., Tihanyi, G., Foley, J. R., Uhrig, U., Kuster, B., Poschet, G., Casero, R. A., Médard, G., Oehme, I., Christianson, D. W., Gunkel, N., and Miller, A. K. (2022) Aza-SAHA Derivatives Are Selective Histone Deacetylase 10 Chemical Probes That Inhibit Polyamine Deacetylation and Phenocopy HDAC10 Knockout. J Am Chem Soc. 144, 18861-18875
Steimbach, R. R., Herbst-Gervasoni, C. J., Lechner, S., Stewart, T. Murray, Klinke, G., Ridinger, J., Géraldy, M. N. E., Tihanyi, G., Foley, J. R., Uhrig, U., Kuster, B., Poschet, G., Casero, R. A., Médard, G., Oehme, I., Christianson, D. W., Gunkel, N., and Miller, A. K. (2022) Aza-SAHA Derivatives Are Selective Histone Deacetylase 10 Chemical Probes That Inhibit Polyamine Deacetylation and Phenocopy HDAC10 Knockout. J Am Chem Soc. 144, 18861-18875
Whiteley, A. T., Eaglesham, J. B., Mann, C. C. de Olive, Morehouse, B. R., Lowey, B., Nieminen, E. A., Danilchanka, O., King, D. S., S Y Lee, A., Mekalanos, J. J., and Kranzusch, P. J. (2019) Bacterial cGAS-like enzymes synthesize diverse nucleotide signals. Nature. 10.1038/s41586-019-0953-5
Whiteley, A. T., Eaglesham, J. B., Mann, C. C. de Olive, Morehouse, B. R., Lowey, B., Nieminen, E. A., Danilchanka, O., King, D. S., S Y Lee, A., Mekalanos, J. J., and Kranzusch, P. J. (2019) Bacterial cGAS-like enzymes synthesize diverse nucleotide signals. Nature. 10.1038/s41586-019-0953-5

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