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1. |
Tracking DNA Synthesis with Single-Molecule Strand
Displacement
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Charles E. Wickersham and
Everett A. Lipman |
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Journal of Physical Chemistry B
122(49), 11546–11553 (2018) |
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2. |
Random coil negative control reproduces the discrepancy
between scattering and FRET measurements of denatured
protein dimensions
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H. M. Watkins, A. J. Simon,
T. R. Sosnick, E. A. Lipman,
R. P. Hjelm, and K. W. Plaxco |
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Proc. Natl. Acad. Sci. U. S. A.
112(21), 6631–6636 (2015) |
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3. |
Role of Denatured-State Properties in Chaperonin Action
Probed by Single-Molecule Spectroscopy
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H. Hofmann, F. Hillger, C. Delley,
A. Hoffmann, S. H. Pfeil, D. Nettels,
E. A. Lipman, and B. Schuler |
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Biophys. J.
107(12), 2882–2893 (2014) |
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4. |
A comparison of the folding kinetics of a small,
artificially selected DNA aptamer with those of
equivalently simple naturally occurring proteins
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C. Lawrence, A. Vallee-Belisle,
S. H. Pfeil, D. de Mornay,
E. A. Lipman, and K. W. Plaxco |
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Protein Sci.
23(1), 56–66 (2014) |
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5. |
Localizing internal friction along the reaction coordinate
of protein folding by combining ensemble and
single-molecule fluorescence spectroscopy
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A. Borgia, B. G. Wensley, A. Soranno,
D. Nettels, M. B. Borgia, A. Hoffmann,
S. H. Pfeil, E. A. Lipman,
J. Clarke, and B. Schuler |
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Nat. Commun.
3, 1195 (2012) |
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6. |
Quantifying internal friction in unfolded and intrinsically
disordered proteins with single-molecule spectroscopy
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A. Soranno, B. Buchli, D. Nettels,
R. R. Cheng, S. Muller-Spath,
S. H. Pfeil, A. Hoffmann,
E. A. Lipman, D. E. Makarov, and
B. Schuler |
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Proc. Natl. Acad. Sci. U. S. A.
109(44), 17800–17806 (2012) |
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7. |
Synthesis of Extended Nanoscale Optical Encoders
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C. E. Wickersham, D. H. S. Kerr,
and E. A. Lipman |
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Bioconjugate Chem.
21(12), 2234–2238 (2010) |
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8. |
Single-molecule spectroscopy of protein folding in a
chaperonin cage
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Hagen Hofmann, Frank Hillger,
Shawn H. Pfeil, Armin Hoffmann,
Daniel Streich, Dominik Haenni,
Daniel Nettels, Everett A. Lipman, and
Benjamin Schuler |
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Proc. Natl. Acad. Sci. U. S. A.
107(26), 11793–11798 (2010) |
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9. |
Tracking a Molecular Motor with a Nanoscale Optical Encoder
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Charles E. Wickersham, Kevin J. Cash,
Shawn H. Pfeil, Irina Bruck,
Daniel L. Kaplan, Kevin W. Plaxco, and
Everett A. Lipman |
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Nano Lett.
10(3), 1022–1027 (2010) |
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10. |
Förster Transfer Outside the Weak-Excitation Limit
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Brian A. Camley,
Frank L. H. Brown, and
Everett A. Lipman |
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J. Chem. Phys.
131(10), 104509 (2009) |
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11. |
A microfluidic mixing system for single-molecule
measurements
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Shawn H. Pfeil, Charles E. Wickersham,
Armin Hoffmann, and Everett A. Lipman |
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Rev. Sci. Instrum.
80(5), 055105 (2009) |
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12. |
Hierarchical interconnections in the nano-composite
material bone: Fibrillar cross-links resist fracture on
several length scales
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Georg E. Fantner, Olexandr Rabinovych,
Georg Schitter, Philipp Thurner,
Johannes H. Kindt, Marquesa M. Finch,
James C. Weaver, Laura S. Golde,
Daniel E. Morse, Everett A. Lipman,
Ivo W. Rangelow, and Paul K. Hansma |
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Compos. Sci. Technol.
66(9), 1205–1211 (2006) |
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13. |
Polyproline and the “Spectroscopic Ruler”
Revisited with Single-Molecule Fluorescence
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Benjamin Schuler, Everett A. Lipman,
Peter J. Steinbach, Michael Kumke, and
William A. Eaton |
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Proc. Natl. Acad. Sci. U. S. A.
102(8), 2754–2759 (2005) |
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14. |
Single-Molecule Measurement of Protein Folding Kinetics
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Everett A. Lipman, Benjamin Schuler,
Olgica Bakajin, and William A. Eaton |
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Science
301(5637), 1233–1235 (2003) |
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15. |
Probing the Free-Energy Surface for Protein Folding With
Single-Molecule Fluorescence Spectroscopy
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Benjamin Schuler, Everett A. Lipman, and
William A. Eaton |
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Nature
419(6908), 743–747 (2002) |
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16. |
Mid-Infrared Interferometry on Spectral Lines. II.
Continuum (Dust) Emission Around IRC +10216 and
VY Canis Majoris
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J. D. Monnier, W. C. Danchi,
D. S. Hale, E. A. Lipman,
P. G. Tuthill, and C. H. Townes |
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Astrophys. J.
543(2), 861–867 (2000) |
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17. |
The Berkeley Infrared Spatial Interferometer: A Heterodyne
Stellar Interferometer for the Mid-Infrared
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D. D. S. Hale, M. Bester,
W. C. Danchi, W. Fitelson, S. Hoss,
E. A. Lipman, J. D. Monnier,
P. G. Tuthill, and C. H. Townes |
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Astrophys. J.
537(2), 998–1012 (2000) |
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18. |
Interferometric Observations of IRC +10011 and
IRC +10420 in the Mid-Infrared
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E. A. Lipman, D. D. S. Hale,
J. D. Monnier, P. G. Tuthill,
W. C. Danchi, and C. H. Townes |
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Astrophys. J.
532(1), 467–473 (2000) |
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19. |
Studies of Evolved Stars with a Mid-Infrared Interferometer
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Everett A. Lipman Ph.D. thesis |
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UC Berkeley Department of Physics
(1998) |
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20. |
Near-Infrared Guiding and Tip-Tilt Correction for the UC
Berkeley Infrared Spatial Interferometer
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Everett A. Lipman, Manfred Bester,
William C. Danchi, and
Charles H. Townes |
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Proc. SPIE
3350, 933–940 (1998) |
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21. |
Multiple Dust Shells and Motions Around IK Tauri As Seen by
Infrared Interferometry
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D. D. S. Hale, M. Bester,
W. C. Danchi, S. Hoss, E. Lipman,
J. D. Monnier, P. G. Tuthill,
C. H. Townes, M. Johnson, B. Lopez,
and T. R. Geballe |
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Astrophys. J.
490(1), 407–411 (1997) |
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22. |
Nonspherical Structures and Temporal Variations in the Dust
Shell of O Ceti Observed With a Long Baseline
Interferometer at 11 Microns
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B. Lopez, W. C. Danchi, M. Bester,
D. D. S. Hale, E. A. Lipman,
J. D. Monnier, P. G. Tuthill,
C. H. Townes, C. G. Degiacomi,
T. R. Geballe, L. J. Greenhill,
P. Cruzalebes, J. Lefevre, D. Mekarnia,
J. A. Mattei, D. Nishimoto, and
P. W. Kervin |
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Astrophys. J.
488(2), 807–826 (1997) |
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23. |
Nonuniform Dust Outflow Observed Around Infrared Object NML
Cygni
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J. D. Monnier, M. Bester,
W. C. Danchi, M. A. Johnson,
E. A. Lipman, C. H. Townes,
P. G. Tuthill, T. R. Geballe,
D. Nishimoto, and P. W. Kervin |
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Astrophys. J.
481(1), 420–432 (1997) |
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24. |
Subpicosecond Thomson Scattering Measurements of Optically
Ionized Helium Plasmas
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T. E. Glover, T. D. Donnelly,
E. A. Lipman, A. Sullivan, and
R. W. Falcone |
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Phys. Rev. Lett.
73(1), 78–81 (1994) |