A study of the interaction of oligonucleotides with polynucleotides by the method of equilibrium gel filtration. The effect of magnesium ions and the composition of the oligonucleotides on the stability of the complex
- PMID: 1128508
A study of the interaction of oligonucleotides with polynucleotides by the method of equilibrium gel filtration. The effect of magnesium ions and the composition of the oligonucleotides on the stability of the complex
Abstract
The interaction of the oligonucleotides ApApA, ApApU and ApApC with polyribouridylic acid and of hexariboinosinic acid with and without phosphate near the 3'-end with polyribocytidylic acid was studied by the method of equilibrium gel filtration through Sephadexes. The free energy, the energy and entropy of the complexing were calculated from isotherms of the adsorption of the oligonucleotides on the polynucleotides in relation to the composition of the oligonucleotides and the concentration of magnesium ions in the buffer. It was shown that in the case of the interaction of ApApA and ApApC with poly(U) a perfect triple complex is formed, while in the case of the interaction of ApApU with poly(U) the noncomplementary base is partially displaced from the complex. The free energy of the interaction of neighboring oligonucleotides in a complex with polynucleotides is from --1000 to --3000 cal/mole depending on the type of the complex. It was shown that after the interaction of hexainosinic acid with poly(C) a double complex is formed. The free energy of the interaction of neighboring oligonucleotides in this complex is formed. The free energy of the interaction of neighboring oligonucleotides in this complex is about --1200 cal/mole. Magnesium ions have a different effect on the formation of triple and double complexes in the interaction of oligonucleotides with polynucleotides.
Similar articles
-
Study of the interaction of polynucleotide chains with oligomers by means of chromatography. II. Effect of magnesium ions and noncomplementary bases on the stability of complexes.Biophys Chem. 1974 Feb;1(3):227-35. doi: 10.1016/0301-4622(74)80009-8. Biophys Chem. 1974. PMID: 4425725 No abstract available.
-
An investigation of rRNA and synthetic polyribonucleotides by the spin-label method.Mol Biol. 1974 Sep;8(2):242-8. Mol Biol. 1974. PMID: 4372519 No abstract available.
-
A comparison of the binding to polynucleotides of complementary and noncomplementary oligonucleotides.Biochemistry. 1975 Jul 15;14(14):3164-71. doi: 10.1021/bi00685a020. Biochemistry. 1975. PMID: 1148196
-
Effect of non-complementary nucleotides on the rate of helix formation: kinetics of formation of poly (I)-poly (C,I) and poly (I)-poly (C,U) complexes.Biopolymers. 1972;11(8):1613-20. doi: 10.1002/bip.1972.360110808. Biopolymers. 1972. PMID: 5056085 No abstract available.
-
Complexes of oligonucleotides with polynucleotides on solid supports.Biochemistry. 1974 Jun 4;13(12):2638-45. doi: 10.1021/bi00709a026. Biochemistry. 1974. PMID: 4831908 No abstract available.
Cited by
-
Cellular strategies for accommodating replication-hindering adducts in DNA: control by the SOS response in Escherichia coli.Proc Natl Acad Sci U S A. 1996 Jul 23;93(15):7805-10. doi: 10.1073/pnas.93.15.7805. Proc Natl Acad Sci U S A. 1996. PMID: 8755557 Free PMC article.