MODE OF MG++ BINDING TO OLIGONUCLEOTIDES - INNER SPHERE COMPLEXES AS MARKERS FOR RECOGNITION

被引:37
作者
PORSCHKE, D
机构
[1] Max-Planck-Institut für Biophysikalische Chemie, D-34 Göttingen, Am Fassberg
关键词
D O I
10.1093/nar/6.3.883
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Large changes of UV absorbance and CD spectra as well as specific relaxation processes with time constants around 50 μs are found for the association of Mg++ with A(pA)n. The Mg++ binding constants strongly increase with increasing n. The relaxation data dmionstrate that a large fraction of Mg++ bound to short A(pA)n forms inner sphere complexes (ISC), with H2O molecules from the inner hydration sphere of Mg++ exchanged against some site(s) of the oligomer. This fraction decreases from about 85% for A(pA)4 to less than 10% for A(pA)17. A parallel decrease is observed in the relative change of CD spectrum upon Mg++ binding from 77.5% for A(pA)4 to 13.4% for A(pA)17. The rate of ISC formation decreases with increasing n suggesting some (probably sterical) hindrance effect at high n. The data support the conclusion that Mg++ favours the formation of outer sphere complexes with linear polynucleotides and require a special chain folding for ISC. Measurements of Mg++ binding to C(pC)5, U(pU)5, I(pI)5 and d{A(pA)5} did not give evidence for the formation of ISC, indicating that both specific base and sugar residues are required for ISC. These results suggest the possibility that Mg++ ISC are used for specific recognition of nucleic acid sequences. © 1979 Information Retrieval Limited.
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页码:883 / 898
页数:16
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