Protein structure by mechanical triangulation
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[1] Hui Lu,et al. The mechanical stability of ubiquitin is linkage dependent , 2003, Nature Structural Biology.
[2] Andreas Matouschek,et al. Finding a protein's Achilles heel , 2003, Nature Structural Biology.
[3] A. Oberhauser,et al. Atomic force microscopy captures length phenotypes in single proteins. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[4] T. Ha,et al. Single-molecule fluorescence resonance energy transfer. , 2001, Methods.
[5] David S. Cafiso,et al. Identifying conformational changes with site-directed spin labeling , 2000, Nature Structural Biology.
[6] Klaus Schulten,et al. Mechanical unfolding intermediates in titin modules , 1999, Nature.
[7] Rieko Ishima,et al. Protein dynamics from NMR , 2000, Nature Structural Biology.
[8] A. Pastore,et al. Immunoglobulin-like modules from titin I-band: extensible components of muscle elasticity. , 1996, Structure.
[9] M. Rief,et al. Reversible unfolding of individual titin immunoglobulin domains by AFM. , 1997, Science.
[10] Hendrik Dietz,et al. Exploring the energy landscape of GFP by single-molecule mechanical experiments. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[11] Achilleas S. Frangakis,et al. Cryo-Electron Tomography Reveals the Cytoskeletal Structure of Spiroplasma melliferum , 2005, Science.
[12] S. Lindquist,et al. Structural insights into a yeast prion illuminate nucleation and strain diversity , 2005, Nature.
[13] E. Siggia,et al. Entropic elasticity of lambda-phage DNA. , 1994, Science.
[14] M. Rief,et al. The mechanical stability of immunoglobulin and fibronectin III domains in the muscle protein titin measured by atomic force microscopy. , 1998, Biophysical journal.
[15] Matthias Rief,et al. Temperature softening of a protein in single-molecule experiments. , 2005, Journal of molecular biology.
[16] Piotr E. Marszalek,et al. Stretching single molecules into novel conformations using the atomic force microscope , 2000, Nature Structural Biology.
[17] M. Zimmer,et al. Green fluorescent protein (GFP): applications, structure, and related photophysical behavior. , 2002, Chemical reviews.
[18] S Doniach,et al. Changes in biomolecular conformation seen by small angle X-ray scattering. , 2001, Chemical reviews.
[19] Angelika A Noegel,et al. A mechanical unfolding intermediate in an actin-crosslinking protein , 2004, Nature Structural &Molecular Biology.
[20] T. Steitz,et al. The complete atomic structure of the large ribosomal subunit at 2.4 A resolution. , 2000, Science.
[21] Charles Weissmann,et al. The state of the prion , 2004, Nature Reviews Microbiology.
[22] I R Vetter,et al. Solid-state synthesis and mechanical unfolding of polymers of T4 lysozyme. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[23] T. Holak,et al. Molecular architecture of the rod domain of the Dictyostelium gelation factor (ABP120). , 1999, Journal of molecular biology.
[24] R. Huber,et al. Molecular structure of the rod domain of dictyostelium filamin. , 2004, Journal of molecular biology.
[25] G. Zaccai,et al. How soft is a protein? A protein dynamics force constant measured by neutron scattering. , 2000, Science.
[26] S J Remington,et al. Structural basis for dual excitation and photoisomerization of the Aequorea victoria green fluorescent protein. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[27] Jyh-Ping Hsu,et al. Recent developments in structural proteomics for protein structure determination , 2005, Proteomics.
[28] K Wüthrich,et al. NMR spectroscopy of large molecules and multimolecular assemblies in solution. , 1999, Current opinion in structural biology.
[29] Emanuele Paci,et al. Pulling geometry defines the mechanical resistance of a β-sheet protein , 2003, Nature Structural Biology.