WHY PENTOSE-NUCLEIC AND NOT HEXOSE-NUCLEIC ACIDS .7. PYRANOSYL-RNA (P-RNA)

被引:140
作者
PITSCH, S [1 ]
WENDEBORN, S [1 ]
JAUN, B [1 ]
ESCHENMOSER, A [1 ]
机构
[1] SWISS FED INST TECHNOL,ORGAN CHEM LAB,UNIV STR 16,CH-8092 ZURICH,SWITZERLAND
关键词
D O I
10.1002/hlca.19930760602
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Qualitative conformational analysis of the entirety of conceivable hexo- and pentopyranosyl oligonucleotide systems derived from the diastereoisomeric aldohexoses (CH2O)6 and aldopentoses (CH2O)5 predicts the existence of a variety of pairing systems which have not been experimentally investigated so far. In particular, the analysis foresees the existence of a ribopyranosyl isomer of RNA ('p-RNA'), containing the phosphodiester linkage between the positions C(4') and C(2') of neighboring ribopyranosyl units. Double strands of p-RNA oligonucleotides are expected to have a linear structure and to show purine-pyrimidine and purine-purine (Watson-Crick) pairing comparable in strength to that observed in homo-DNA. Experimentally, synthetic beta-D-ribopyranosyl (4'-2')-oligonucleotides derived from adenine and uracil confirm this prognosis: adenine-uracil pairing in p-RNA duplexes is stronger than in the corresponding RNA duplexes. Importantly, adenine in p-Ribo(A8) does not show (reverse-Hoogsteen) self-pairing, in sharp contrast to its behavior in the homo-DNA series. The sheer existence of strong and selective pairing in a system that is constitutionally isomeric to RNA and can be predicted to have a linear structure has implications for the problem of RNA's origin. In this context, a comprehensive experimental study of the pairing properties of p-RNA, of its potential for constitutional assembly, self-replication, and intra-duplex isomerization to RNA seems mandatory.
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页码:2161 / 2183
页数:23
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共 65 条
[31]  
IMBACH JL, 1990, TETRAHEDRON LETT, V31, P3537
[32]  
IWAAMURA H, 1973, CARBOHYD RES, V27, P149
[33]   INTERCONVERSION AND PHOSPHOESTER HYDROLYSIS OF 2',5'-DINUCLEOSIDE AND 3',5'-DINUCLEOSIDE MONOPHOSPHATES - KINETICS AND MECHANISMS [J].
JARVINEN, P ;
OIVANEN, M ;
LONNBERG, H .
JOURNAL OF ORGANIC CHEMISTRY, 1991, 56 (18) :5396-5401
[34]   1,5-ANHYDRORIBITOL [J].
JEANLOZ, R ;
FLETCHER, HG ;
HUDSON, CS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1948, 70 (12) :4052-4054
[35]   ASSOCIATION OF 2'-5' OLIGORIBONUCLEOTIDES [J].
KIERZEK, R ;
HE, LY ;
TURNER, DH .
NUCLEIC ACIDS RESEARCH, 1992, 20 (07) :1685-1690
[36]   NUCLEOSIDE SYNTHESIS FROM THIOGLYCOSIDES [J].
KNAPP, S ;
SHIEH, WC .
TETRAHEDRON LETTERS, 1991, 32 (30) :3627-3630
[37]   NUCLEIC-ACID COMPONENTS AND THEIR ANALOGUES .178. STEREOSPECIFIC SYNTHESIS OF BETA-D-RIBOPYRANOSYL NUCLEOSIDE ANALOGUES [J].
KRITZYN, AM ;
HOLY, A .
COLLECTION OF CZECHOSLOVAK CHEMICAL COMMUNICATIONS, 1975, 40 (10) :3211-3219
[38]   SYNTHESIS OF THYMIDINE OLIGONUCLEOTIDES BY PHOSPHITE TRIESTER INTERMEDIATES [J].
LETSINGER, RL ;
LUNSFORD, WB .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1976, 98 (12) :3655-3661
[39]   NUCLEOTIDE CHEMISTRY .20. PHOSPHITE COUPLING PROCEDURE FOR GENERATING INTERNUCLEOTIDE LINKS [J].
LETSINGER, RL ;
FINNAN, JL ;
HEAVNER, GA ;
LUNSFORD, WB .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1975, 97 (11) :3278-3279
[40]  
LING P, 1993, THESIS ETH ZURICH