Nanomaterials Based on DNA

被引:778
作者
Seeman, Nadrian C. [1 ]
机构
[1] NYU, Dept Chem, New York, NY 10003 USA
来源
ANNUAL REVIEW OF BIOCHEMISTRY, VOL 79 | 2010年 / 79卷
关键词
branched DNA; chemical organization by DNA; designed DNA lattices; DNA-based nanomechanical devices; DNA objects; sticky-ended cohesion; NUCLEIC-ACID JUNCTIONS; FOLDING DNA; CRYSTAL-STRUCTURE; CONSTRUCTION; MOLECULE; DESIGN; ARRAYS; RNA; ORGANIZATION; FLEXIBILITY;
D O I
10.1146/annurev-biochem-060308-102244
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The combination of synthetic stable branched DNA and sticky-ended cohesion has led to the development of structural DNA nanotechnology over the past 30 years. The basis of this enterprise is that it is possible to construct novel DNA-based materials by combining these features in a self-assembly protocol. Thus, simple branched molecules lead directly to the construction of polyhedrons, whose edges consist of double helical DNA and whose vertices correspond to the branch points. Stiffer branched motifs can be used to produce self-assembled two-dimensional and three-dimensional periodic lattices of DNA (crystals). DNA has also been used to make a variety of nanomechanical devices, including molecules that change their shapes and molecules that can walk along a DNA sidewalk. Devices have been incorporated into two-dimensional DNA arrangements; sequence-dependent devices are driven by increases in nucleotide pairing at each step in their machine cycles.
引用
收藏
页码:65 / 87
页数:23
相关论文
共 93 条
[1]   Organization of 'nanocrystal molecules' using DNA [J].
Alivisatos, AP ;
Johnsson, KP ;
Peng, XG ;
Wilson, TE ;
Loweth, CJ ;
Bruchez, MP ;
Schultz, PG .
NATURE, 1996, 382 (6592) :609-611
[2]   Self-assembly of a nanoscale DNA box with a controllable lid [J].
Andersen, Ebbe S. ;
Dong, Mingdong ;
Nielsen, Morten M. ;
Jahn, Kasper ;
Subramani, Ramesh ;
Mamdouh, Wael ;
Golas, Monika M. ;
Sander, Bjoern ;
Stark, Holger ;
Oliveira, Cristiano L. P. ;
Pedersen, Jan Skov ;
Birkedal, Victoria ;
Besenbacher, Flemming ;
Gothelf, Kurt V. ;
Kjems, Jorgen .
NATURE, 2009, 459 (7243) :73-U75
[3]   Two computational primitives for algorithmic self-assembly: Copying and counting [J].
Barish, RD ;
Rothemund, PWK ;
Winfree, E .
NANO LETTERS, 2005, 5 (12) :2586-2592
[4]   GENE SYNTHESIS MACHINES - DNA CHEMISTRY AND ITS USES [J].
CARUTHERS, MH .
SCIENCE, 1985, 230 (4723) :281-285
[5]   SYNTHESIS FROM DNA OF A MOLECULE WITH THE CONNECTIVITY OF A CUBE [J].
CHEN, JH ;
SEEMAN, NC .
NATURE, 1991, 350 (6319) :631-633
[6]   Putting a brake on an autonomous DNA nanomotor [J].
Chen, Y ;
Mao, CD .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (28) :8626-8627
[7]   Building programmable jigsaw puzzles with RNA [J].
Chworos, A ;
Severcan, I ;
Koyfman, AY ;
Weinkam, P ;
Oroudjev, E ;
Hansma, HG ;
Jaeger, L .
SCIENCE, 2004, 306 (5704) :2068-2072
[8]   CONSTRUCTION OF BIOLOGICALLY FUNCTIONAL BACTERIAL PLASMIDS IN-VITRO [J].
COHEN, SN ;
CHANG, ACY ;
BOYER, HW ;
HELLING, RB .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1973, 70 (11) :3240-3244
[9]   Folding DNA into Twisted and Curved Nanoscale Shapes [J].
Dietz, Hendrik ;
Douglas, Shawn M. ;
Shih, William M. .
SCIENCE, 2009, 325 (5941) :725-730
[10]   Operation of a DNA robot arm inserted into a 2D DNA crystalline substrate [J].
Ding, Baoquan ;
Seeman, Nadrian C. .
SCIENCE, 2006, 314 (5805) :1583-1585