A versatile toolbox for variable DNA functionalization at high density

被引:250
作者
Jäger, S [1 ]
Rasched, G [1 ]
Kornreich-Leshem, H [1 ]
Engeser, M [1 ]
Thum, O [1 ]
Famulok, M [1 ]
机构
[1] Univ Bonn, Inst Oragan Chem & Biochem, Kekuke Inst, D-53121 Bonn, Germany
关键词
D O I
10.1021/ja051725b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
To broaden the applicability of chemically modified DNAs in nano- and biotechnology, material science, sensor development, and molecular recognition, strategies are required for introducing a large variety of different modifications into the same nucleic acid sequence at once. Here, we investigate the scope and limits for obtaining functionalized dsDNA by primer extension and PCR, using a broad variety of chemically modified deoxynucleotide triphosphates (dNTPs), DNA polymerases, and templates. All natural nucleobases in each strand were substituted with up to four different base-modified analogues. We studied the sequence dependence of enzymatic amplification to yield high-density functionalized DNA (fDNA) from modified dNTPs, and of fDNA templates, and found that GC-rich sequences are amplified with decreased efficiency as compared to AT-rich ones. There is also a strong dependence on the polymerase used. While family A polymerases generally performed poorly on "demanding" templates containing consecutive stretches of a particular base, family B polymerases were better suited for this purpose, in particular Pwo and Vent (exo-) DNA polymerase. A systematic analysis of fDNAs modified at increasing densities by CD spectroscopy revealed that single modified bases do not alter the overall B-type DNA structure, regardless of their chemical nature. A density of three modified bases induces conformational changes in the double helix, reflected by an inversion of the CD spectra. Our study provides a basis for establishing a generally applicable toolbox of enzymes, templates, and monomers for generating high-density functionalized DNAs for a broad range of applications.
引用
收藏
页码:15071 / 15082
页数:12
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