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THE CORRELATION BETWEEN ^(13)C CHEMICAL SHIFTS OF DNA AND INTERSTRAND PURINE-PURINE CLASH

THE CORRELATION BETWEEN ^(13)C CHEMICAL SHIFTS OF DNA AND INTERSTRAND PURINE-PURINE CLASH
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摘要 The correlation between ^(13)C chemical shifts of DNA and structure parameters (the mainaxis helix twist angle Ω, base--plane roll angle ρ, main chain torsion angle δ and pro-peller twist angle ω) has been discovered and proved indirectly. The carbons relating tothe structure parameters have been found and interpreted theoretically. Relative variationsin chemical shifts of these carbons obviously reflect purine-purine clash (steric hindrance)and have been compared with sum functions Σ of Calladine--Dickerson rules. It would bepossible to provide the information about conformation of DNA from ^(13)C NMR spectra andto observe the structure parameters of Ω,ρ,δ and ω of DNA in solution. The correlation between <sup>13</sup>C chemical shifts of DNA and structure parameters (the mainaxis helix twist angle Ω, base--plane roll angle ρ, main chain torsion angle δ and pro-peller twist angle ω) has been discovered and proved indirectly. The carbons relating tothe structure parameters have been found and interpreted theoretically. Relative variationsin chemical shifts of these carbons obviously reflect purine-purine clash (steric hindrance)and have been compared with sum functions Σ of Calladine--Dickerson rules. It would bepossible to provide the information about conformation of DNA from <sup>13</sup>C NMR spectra andto observe the structure parameters of Ω,ρ,δ and ω of DNA in solution.
出处 《Science China Chemistry》 SCIE EI CAS 1992年第12期1416-1424,共9页 中国科学(化学英文版)
关键词 DNA ^(13)C NMR purine-purine clash Calladine-Dickerson rules DNA <sup>13</sup>C NMR purine-purine clash Calladine-Dickerson rules
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