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Influence of metal complexation on acidity of cytosine nucleosides: Part I, LiC, NaC and KC cation
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نویسنده
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Aliakbar Tehrani ,Z. ,Fattahi A. ,Pourjavadi A.
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منبع
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scientia iranica - 2012 - دوره : 19 - شماره : 33 - صفحه:535 -545
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چکیده
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Gas-phase acidities of nucleosides, combined with the knowledge of deprotonation sites, couldimprove our understanding of chemical reactions to biological systems. in this paper, we mainly focusour attention on the influence of cation coordination on acidities of multiple sites in cytosine nucleosides.the acidities of multiple sites inmc-l (where l represents cytosine nucleosides andmc is an alkali metalion, including lic, nac and kc) complexes have been investigated theoretically, employing b3lyp=6 ??311ccg .d; p/ basis sets. the geometrical characters, gas-phase acidities, sugar puckering and electronicproperties of non-deprotonated and/or deprotonated complexes have been investigated. the shifted1hacidity values are a consequence of a combination of metal ion coordination to oh and nh groups andefficient stabilization of the deprotonated species. for instance, after complexation with lic, nac, andkc, the 1hacidity of o20h of the cytidine molecule shifts from 346.2 to 251.6, 258.0, and 275:7 kcal mol??1,respectively. moreover, for a given coordination site, the metal ion changes the gap between the mostand least acidic groups, with respect to that in neutral nucleosides. such dependence of acidities onthe coordination region of the metal ion suggests that acidities of active groups could be controlled bymodulating the metal ion coordination site and the type of metal ion.
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کلیدواژه
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Gas-phase acidity; ,Alkali metal ion coordination; ,Sugar puckering mode; ,Cytosine nucleosides; ,NBO analysis; ,DFT.
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آدرس
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sharif university of technology, ایران, sharif university of technology, ایران, sharif university of technology, ایران
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پست الکترونیکی
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purjavad@sharif.edu
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Authors
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