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Assignment of Absolute Configurations of the Enantiomeric Spiroiminodihydantoin Nucleobases by Experimental and Computational Optical Rotatory Dispersion Methods

机译:通过实验和计算旋光色散方法分配对映体螺亚氨基二乙内酰脲核糖核酸酶的绝对构型

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The diastereomeric spiroiminodihydantoin(Sp)lesions are oxidation products of guanine and 8-oxo-7,8-dihydroguanine(8-oxoG)and have generated considerable interest because of their stereochemistry-dependent mutagenic properties in vivo(Henderson,P.T.,et al.(2003)Biochemistry 42,9257-9262).However,the absolute configurations of the two diastereomers have not yet been elucidated,and such information may prove valuable for understanding relationships between biological function and structure at the DNA level(Jia,L.,Shafirovich,V.,Shapiro,R.,Geacintov,N.E.,and Broyde,S.(2005)Biochemistry 44,13342-13353).We have synthesized the two chiral Sp nucleobases by hydrolysis of the nucleosides denoted by dSp1 and dSp2 according to their elution order in HPLC experiments using a Hypercarb column,and determined their absolute configurations using a combination of experimentally measured optical rotatory dispersion(ORD)spectra in aqueous solutions and computed ORD specific rotations using density functional theory(DFT).Recent developments have shown that DFT methods are now sufficiently robust for predicting ORD values of chiral molecules(Polavarapu,P.L.(2002)Chirality 14,768-781).The nucleobases Sp1 and Sp2 exhibit experimentally measured CD and ORD spectra that are very close to those of the respective precursor nucleosides dSp1 and dSp2 in shape and sign.The first nucleoside stereoisomer(dSp1)to elute from a typical Hypercarb HPLC column has(-)-S,while the second(dSp2)has(+)-R absolute configuration.The R and S assignments are applicable to the amino tautomeric forms in each case.
机译:非对映异构螺二氨基乙内酰脲(Sp)病变是鸟嘌呤和8-oxo-7,8-dihydroguanine(8-oxoG)的氧化产物,由于它们在体内具有立体化学依赖性的诱变特性而引起了人们的极大兴趣(Henderson,PT等)。 (2003)Biochemistry 42,9257-9262)。然而,两种非对映异构体的绝对构型尚未阐明,这些信息对于理解DNA水平上生物学功能与结构之间的关系可能是有价值的(Jia,L。, Shafirovich,V.,Shapiro,R.,Geacintov,NE,和Broyde,S。(2005)Biochemistry 44,13342-13353)。我们已经通过水解由dSp1和dSp2表示的核苷合成了两个手性Sp核碱基。使用Hypercarb色谱柱在HPLC实验中对它们的洗脱顺序进行排序,并结合使用实验测得的水溶液中的光学旋转分散度(ORD)光谱和使用密度函数计算的ORD比旋度来确定其绝对构型最近的发展表明,DFT方法对于预测手性分子的ORD值具有足够的鲁棒性(Polavarapu,PL(2002)Chirality 14,768-781).Sp1和Sp2核碱基具有实验测量的CD和ORD谱,在形状和符号上与各自的前体核苷dSp1和dSp2非常接近。从典型Hypercarb HPLC色谱柱洗脱的第一个核苷立体异构体(dSp1)具有(-)-S,而第二个(dSp2)具有(+)。 -R绝对构型.R和S分配分别适用于氨基互变异构形式。

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