STRUCTURE-ACTIVITY STUDIES OF THE BINDING OF MODIFIED PEPTIDE NUCLEIC-ACIDS (PNAS) TO DNA

被引:130
作者
HYRUP, B
EGHOLM, M
NIELSEN, PE
WITTUNG, P
NORDEN, B
BUCHARDT, O
机构
[1] UNIV COPENHAGEN,HC ORSTED INST,MED BIOTECHNOL RES CTR,CHEM LAB 2,DK-2100 COPENHAGEN 0,DENMARK
[2] UNIV COPENHAGEN,PANUM INST,DEPT BIOCHEM B,DK-2200 COPENHAGEN N,DENMARK
[3] CHALMERS UNIV TECHNOL,DEPT PHYS CHEM,S-41296 GOTHENBURG,SWEDEN
关键词
D O I
10.1021/ja00097a002
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Peptide nucleic acid (PNA) oligomers where one of the repeating backbone units is extended with a methylene group to either N-(2-aminoethyl)-beta-alanine or N-(3-aminopropyl)glycine were prepared. Alternatively, the linker to the nucleobase was extended from methylenecarbonyl to ethylenecarbonyl. The thermal stability of the hybrids between these PNA oligomers and complementary DNA oligonucleotides was significantly lower than that of the corresponding complexes involving unmodified PNA. However, the sequence selectivity was retained. Thymidyl decamers with all N-(2-aminoethyl)-beta-alanine or N-(3-aminopropyl)glycine backbones were prepared and shown to be unable to hybridize to the complementary (dA)(10) oligonucleotides, whereas a PNA decamer containing only ethylenecarbonyl linkers between the nucleobases and the N-(2-aminoethyl)glycine backbone showed weak but sequence-specific affinity for complementary DNA. All hybrids involving homopyrimidine PNA oligomers exhibited (PNA)(2)/DNA stoichiometry, whereas mixed-sequence PNA oligomers formed PNA/DNA duplexes. The preferred binding direction between the modified PNA and DNA in the duplex motifs was antiparallel, as previously reported for complexes involving unmodified PNA.
引用
收藏
页码:7964 / 7970
页数:7
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