From molecular to macroscopic via the rational design of a self-assembled 3D DNA crystal

被引:0
|
作者
Jianping Zheng
Jens J. Birktoft
Yi Chen
Tong Wang
Ruojie Sha
Pamela E. Constantinou
Stephan L. Ginell
Chengde Mao
Nadrian C. Seeman
机构
[1] New York University,Department of Chemistry
[2] Purdue University,Department of Chemistry
[3] West Lafayette,undefined
[4] Indiana 47907,undefined
[5] USA,undefined
[6] Structural Biology Center,undefined
[7] Argonne National Laboratory,undefined
[8] Argonne,undefined
[9] Illinois 60439,undefined
[10] USA,undefined
[11] Present address: Department of Bioengineering,undefined
[12] Rice University,undefined
[13] 6100 Main Street,undefined
[14] MS-142,undefined
[15] Houston,undefined
[16] Texas 77005,undefined
[17] USA.,undefined
来源
Nature | 2009年 / 461卷
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摘要
Creating a macroscopic object, such as a crystal, with the microscopic molecular structure desired is a challenge. One promising approach is the use of macromolecules with robust three-dimensional motifs and sticky ends so that, by attaching to one another, they can form a periodic arrangement that can be investigated by crystallographic techniques. Zheng et al. use DNA for this purpose, arranged in a structural motif called a tensegrity triangle, and can grow crystals of the order of 200 micrometres in size, in which the positions of the atoms can be determined with a precision of 4 Å. The highly specific interaction between complementary DNA strands makes it possible to realize the desired and designed structure for the unit cell of the crystal. The latter also exhibits periodic holes, which could potentially be used to host biomolecules in a three-dimensional periodic arrangement, making it possible to determine their structure even if they do not crystallize on their own.
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页码:74 / 77
页数:3
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