Biomod/2013/StJohns/References: Difference between revisions

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# M. Endo, K. et al, 'DNA Prism Structures Constructed by Folding of Multiple Rectangular Arms', Journal of the American Chemical Society 2009, 131, 15570.
# M. Endo, K. et al, 'DNA Prism Structures Constructed by Folding of Multiple Rectangular Arms', Journal of the American Chemical Society 2009, 131, 15570.
# N. Stephanopoulos, et al, 'Immobilization and One-Dimensional Arrangement of Virus Capsids with Nanoscale Precision Using DNA Origami', Nano Letters 2010, 10, 2714.
# N. Stephanopoulos, et al, 'Immobilization and One-Dimensional Arrangement of Virus Capsids with Nanoscale Precision Using DNA Origami', Nano Letters 2010, 10, 2714.
# a) D. Y. Zhang, G. Seelig, 'Dynamic DNA nanotechnology using strand-displacement reactions', Nature Chemistry 2011, 3, 103. b) Dirks, R. M.; Pierce, N. A. 'Triggered amplification by hybridization chain reaction", Proceedings of the National Academy of Sciences of the United States of America 2004, 101, 15275-15278.
#
## D. Y. Zhang, G. Seelig, 'Dynamic DNA nanotechnology using strand-displacement reactions', Nature Chemistry 2011, 3, 103.  
## Dirks, R. M.; Pierce, N. A. 'Triggered amplification by hybridization chain reaction", Proceedings of the National Academy of Sciences of the United States of America 2004, 101, 15275-15278.
# A. K. Mok,et al, 'Positional photocleavage control of DNA-based nanoswitches', Chemical Communications 2011, 47, 4905.
# A. K. Mok,et al, 'Positional photocleavage control of DNA-based nanoswitches', Chemical Communications 2011, 47, 4905.
# J. P. Zheng, et al, 'From molecular to macroscopic via the rational design of a self-assembled 3D DNA crystal', Nature 2009, 461, 74.
# J. P. Zheng, et al, 'From molecular to macroscopic via the rational design of a self-assembled 3D DNA crystal', Nature 2009, 461, 74.
# W. B. Sherman, 'HolT Hunter: Software for identifying and characterizing low-strain DNA holliday triangles', Journal of Computational Chemistry 2012, 33, 1393.
# W. B. Sherman, 'HolT Hunter: Software for identifying and characterizing low-strain DNA holliday triangles', Journal of Computational Chemistry 2012, 33, 1393.

Revision as of 14:57, 16 October 2013

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  1. W. M. Shih, C. Lin, 'Knitting complex weaves with DNA origami', Current Opinion in Structural Biology 2010, 20, 276.
  2. M. Endo, K. et al, 'DNA Prism Structures Constructed by Folding of Multiple Rectangular Arms', Journal of the American Chemical Society 2009, 131, 15570.
  3. N. Stephanopoulos, et al, 'Immobilization and One-Dimensional Arrangement of Virus Capsids with Nanoscale Precision Using DNA Origami', Nano Letters 2010, 10, 2714.
    1. D. Y. Zhang, G. Seelig, 'Dynamic DNA nanotechnology using strand-displacement reactions', Nature Chemistry 2011, 3, 103.
    2. Dirks, R. M.; Pierce, N. A. 'Triggered amplification by hybridization chain reaction", Proceedings of the National Academy of Sciences of the United States of America 2004, 101, 15275-15278.
  4. A. K. Mok,et al, 'Positional photocleavage control of DNA-based nanoswitches', Chemical Communications 2011, 47, 4905.
  5. J. P. Zheng, et al, 'From molecular to macroscopic via the rational design of a self-assembled 3D DNA crystal', Nature 2009, 461, 74.
  6. W. B. Sherman, 'HolT Hunter: Software for identifying and characterizing low-strain DNA holliday triangles', Journal of Computational Chemistry 2012, 33, 1393.