DNA-LIKE DOUBLE HELIX FORMED BY PEPTIDE NUCLEIC-ACID

被引:435
作者
WITTUNG, P
NIELSEN, PE
BUCHARDT, O
EGHOLM, M
NORDEN, B
机构
[1] PANUM INST,DEPT BIOCHEM B,MED BIOTECHNOL RES CTR,BLEGDAMSVEJ 3C,DK-2200 N COPENHAGEN,DENMARK
[2] CHALMERS UNIV TECHNOL,DEPT PHYS CHEM,S-41296 GOTHENBURG,SWEDEN
[3] HC ORSTED INST,DEPT ORGAN CHEM,DK-2100 COPENHAGEN 0,DENMARK
关键词
D O I
10.1038/368561a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
ALTHOUGH the importance of the nucleobases in the DNA double helix is well understood, the evolutionary significance of the deoxyribose phosphate backbone and the contribution of this chemical entity to the overall helical structure and stability of the double helix is not so clear. Peptide nucleic acid (PNA)1-7 is a DNA analogue with a backbone consisting of N-(2-aminoethyl)glycine units (Fig. 1) which has been shown to mimic DNA in forming Watson-Crick complementary duplexes with normal DNA7. Using circular dichroism spectroscopy we show here that two complementary PNA strands can hybridize to one another to form a helical duplex. There is a seeding of preferred chirality which is induced by the presence of an L- (or D-) lysine residue attached at the carboxy terminus of the PNA strand. These results indicate that a (deoxy)ribose phosphate backbone is not an essential requirement for the formation of double helical DNA-like structures in solution.
引用
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页码:561 / 563
页数:3
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