Title of article :
The thermal stability of RNA duplexes containing modified base pairs placed at internal and terminal positions of the oligoribonucleotides Original Research Article
Author/Authors :
Krzysztof Ziomek، نويسنده , , El?bieta Kierzek، نويسنده , , Ewa Biala، نويسنده , , Ryszard Kierzek، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
9
From page :
233
To page :
241
Abstract :
The presence of various modifications within oligomers changes their thermodynamic stability. To get more systematic data, we measured effects of 5- and 6-substituted uridine on thermal stability of (AUCUMod.AGAU)2 and (AUCUAGAUMod.)2. Collected results lead to the following conclusions: (i) 5-halogenated and 5-alkylated substituents of the uridine affect thermal stability of the RNA duplexes differently. Moreover, the 5-fluorouridine changes stability of the RNA duplexes opposite to remaining 5-halogenouridines; (ii) for oligomers containing 5-chloro, 5-bromo or 5-iodouridine stronger hydrogen bond formed between oxygen-4 of the 5-halogenated uracil and 6-amino group of the adenine is presumably responsible for stabilizing effect; (iii) placing of A-U5R base pairs closer to the end of the duplex enhance thermal stability relatively to oligomer with central position of this base pair; (iv) the effects of 5-substituents are additive, particularly for substituents which stabilize RNA duplexes; (v) 6-methyluridines (N1 and N3 isomers) as well as 3N-methyluridine present at internal position of A-UMod. inhibit duplexes formation; (vi) 6-methyluridines (N1 and N3 isomers) as well as 3N-methyluridine placed as terminal base pairs stabilize the duplexes mostly via 3′-dangling end effect.
Keywords :
Thermodynamics of RNA duplexes , Modified oligoribonucleotides , Modified uridine
Journal title :
Biophysical Chemistry
Serial Year :
2002
Journal title :
Biophysical Chemistry
Record number :
1113099
Link To Document :
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