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The collection includes articles from PSI research groups and the broader community

April 2011

  • A triple threat to single molecules

    Gruebele M.

    Nat Meth 8, 213 - 215 (2011)

    [doi: http://dx.doi.org/10.1038/nmeth0311-213]

  • High-throughput single-molecule optofluidic analysis

    Kim S., Streets A., Lin R., Quake S., Weiss S. et al.

    Nat Meth 8, 242 - 245 (2011)

    [doi: http://dx.doi.org/10.1038/nmeth.1569]

  • Visualizing a one-way protein encounter complex by ultrafast single-molecule mixing

    Gambin Y., Vandelinder V., Ferreon A., Lemke E., Groisman A. et al.

    Nat Meth 8, 239 - 241 (2011)

    [doi: http://dx.doi.org/10.1038/nmeth.1568]

  • A photoprotection strategy for microsecond-resolution single-molecule fluorescence spectroscopy

    Campos L., Liu J., Wang X., Ramanathan R., English D. et al.

    Nat Meth 8, 143 - 146 (2011)

    [doi: http://dx.doi.org/10.1038/nmeth.1553]

  • Hydrogen/Deuterium Exchange Analysis of HIV-1 Capsid Assembly and Maturation

    Monroe E., Kang S., Kyere S., Li R. and Prevelige P.

    Structure 18, 1483 - 1491 (2010)

    [doi: http://dx.doi.org/10.1016/j.str.2010.08.016]

  • Structural Basis of the 9-Fold Symmetry of Centrioles

    Kitagawa D., Vakonakis I., Olieric N., Hilbert M., Keller D. et al.

    Cell 144, 364 - 375 (2011)

    [doi: http://dx.doi.org/10.1016/j.cell.2011.01.008]

  • X-ray crystal structures elucidate the nucleotidyl transfer reaction of transcript initiation using two nucleotides

    Gleghorn M., Davydova E., Basu R., Rothman-Denes L. and Murakami K.

    Proceedings of the National Academy of Sciences 108, (2011)

    [doi: http://dx.doi.org/10.1073/pnas.1016691108]

  • Cargo recognition mechanism of myosin X revealed by the structure of its tail MyTH4-FERM tandem in complex with the DCC P3 domain.

    Wei Z., Yan J., Lu Q., Pan L. and Zhang M.

    Proceedings of the National Academy of Sciences of the United States of America 108, 3572 - 3577 (2011)

    [doi: http://dx.doi.org/10.1073/pnas.1016567108]

  • Structures of SAS-6 Suggest Its Organization in Centrioles

    van Breugel M., Hirono M., Andreeva A., Yanagisawa H., Yamaguchi S. et al.

    Science 331, 1196 - 1199 (2011)

    [doi: http://dx.doi.org/10.1126/science.1199325]

  • Three-Dimensional Model of Salmonella’s Needle Complex at Subnanometer Resolution

    Schraidt O. and Marlovits T.

    Science 331, 1192 - 1195 (2011)

    [doi: http://dx.doi.org/10.1126/science.1199358]

  • Crystal Structure of the Dynein Motor Domain

    Carter A., Cho C., Jin L. and Vale R.

    Science 331, 1159 - 1165 (2011)

    [doi: http://dx.doi.org/10.1126/science.1202393]

  • Structure of DNMT1-DNA Complex Reveals a Role for Autoinhibition in Maintenance DNA Methylation

    Song J., Rechkoblit O., Bestor T. and Patel D.

    Science 331, 1036 - 1040 (2011)

    [doi: http://dx.doi.org/10.1126/science.1195380]

  • The Crystal Structure of the Signal Recognition Particle in Complex with Its Receptor

    Ataide S., Schmitz N., Shen K., Ke A., Shan S. et al.

    Science 331, 881 - 886 (2011)

    [doi: http://dx.doi.org/10.1126/science.1196473]

  • Structure of MyTH4-FERM Domains in Myosin VIIa Tail Bound to Cargo

    Wu L., Pan L., Wei Z. and Zhang M.

    Science 331, 757 - 760 (2011)

    [doi: http://dx.doi.org/10.1126/science.1198848]

  • Crystal Structure of the Eukaryotic 40S Ribosomal Subunit in Complex with Initiation Factor 1

    Rabl J., Leibundgut M., Ataide S., Haag A. and Ban N.

    Science 331, 730 - 736 (2011)

    [doi: http://dx.doi.org/10.1126/science.1198308]

  • Crystal structure of the CusBA heavy-metal efflux complex of Escherichia coli

    Su C., Long F., Zimmermann M., Rajashankar K., Jernigan R. et al.

    Nature 470, 558 - 562 (2011)

    [doi: http://dx.doi.org/10.1038/nature09743]

  • Structures of APC/CCdh1 with substrates identify Cdh1 and Apc10 as the D-box co-receptor

    da Fonseca P., Kong E., Zhang Z., Schreiber A., Williams M. et al.

    Nature 470, 274 - 278 (2011)

    [doi: http://dx.doi.org/10.1038/nature09625]

  • Structural basis for the subunit assembly of the anaphase-promoting complex

    Schreiber A., Stengel F., Zhang Z., Enchev R., Kong E. et al.

    Nature 470, 227 - 232 (2011)

    [doi: http://dx.doi.org/10.1038/nature09756]

  • Substrate-induced remodeling of the active site regulates human HTRA1 activity

    Truebestein L., Tennstaedt A., M�nig T., Krojer T., Canellas F. et al.

    Nat Struct Mol Biol 18, 386 - 388 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.2013]

  • Defining an allosteric circuit in the cysteine protease domain of Clostridium difficile toxins

    Shen A., Lupardus P., Gersch M., Puri A., Albrow V. et al.

    Nat Struct Mol Biol 18, 364 - 371 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.1990]

  • Structure-function analysis of hRPC62 provides insights into RNA polymerase III transcription initiation

    Lefèvre S., Dumay-Odelot H., El-Ayoubi L., Budd A., Legrand P. et al.

    Nat Struct Mol Biol 18, 352 - 358 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.1996]

  • Structural basis for allosteric regulation of human ribonucleotide reductase by nucleotide-induced oligomerization

    Fairman J., Wijerathna S., Ahmad M., Xu H., Nakano R. et al.

    Nat Struct Mol Biol 18, 316 - 322 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.2007]

  • Structural insights into energy regulation of light-harvesting complex CP29 from spinach

    Pan X., Li M., Wan T., Wang L., Jia C. et al.

    Nat Struct Mol Biol 18, 309 - 315 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.2008]

  • Common architecture of the flagellar type III protein export apparatus and F- and V-type ATPases

    Ibuki T., Imada K., Minamino T., Kato T., Miyata T. et al.

    Nat Struct Mol Biol 18, 277 - 282 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.1977]

  • Structural and biochemical studies of the 5′→3′ exoribonuclease Xrn1

    Chang J., Xiang S., Xiang K., Manley J. and Tong L.

    Nat Struct Mol Biol 18, 270 - 276 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.1984]

  • Genetic selection designed to stabilize proteins uncovers a chaperone called Spy

    Quan S., Koldewey P., Tapley T., Kirsch N., Ruane K. et al.

    Nat Struct Mol Biol 18, 262 - 269 (2011)

    [doi: http://dx.doi.org/10.1038/nsmb.2016]

  • Structural studies of ROK fructokinase YdhR from Bacillus subtilis: insights into substrate binding and fructose specificity.

    Nocek B., Stein A., Jedrzejczak R., Cuff M., Li H. et al.

    Journal of molecular biology 406, 325 - 342 (2011)

    [doi: http://dx.doi.org/10.1016/j.jmb.2010.12.021]

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