Zhao X, Nadji S, Kao J L, Taylor J S
Department of Chemistry, Washington University, St Louis, MO 63130, USA.
Nucleic Acids Res. 1996 Apr 15;24(8):1554-60. doi: 10.1093/nar/24.8.1554.
Irradiation of the dinucleotide TpdA and TA-containing oligonucleotides and DNA produces the TA* photoproduct which was proposed to be the [2+2] cyclo-addition adduct between the C5-C6 double bonds of the T and the A [Bose,S.N., Kumar,S., Davies,R.J.H., Sethi,S.K. and McCloskey,J.A. (1984) Nucleic Acids Res. 12, 7929-7947]. The proposed structure was based on a variety of spectroscopic and chemical degradation studies, and the assignment of a trans-syn-I stereochemistry was based on an extensive 1H-NMR and molecular modeling study of the dinucleotide adduct [Koning,T.M.G., Davies,R.J.H. and Kaptein,R. (1990) Nucleic Acids Res. 18, 277-284]. However, a number of properties of TA* are not in accord with the originally proposed structure, and prompted a re-evaluation of the structure. To assign the 13C spectrum and establish the bond connectivities of the TA* photoproduct of TpdA [d(TpA)], 1H-13C heteronuclear multiple-quantum coherence (HMQC) and heteronuclear multiple bond correlation (HMBC) spectra were obtained. The 13C shifts and connectivities were found to be inconsistent with the originally proposed cyclobutane ring fusion between the thymine and adenine, but could be explained by a subsequent ring-expansion reaction to give an eight-membered ring valence isomer. The new structure for the d(TpA) resolves the inconsistencies with the originally proposed structure, and could have a stereochemistry that arises from the anti, anti glycosyl conformation found in B form DNA.
对二核苷酸TpdA以及含TA的寡核苷酸和DNA进行辐照会产生TA光产物,该光产物被认为是T的C5 - C6双键与A之间的[2 + 2]环加成加合物[Bose, S.N., Kumar, S., Davies, R.J.H., Sethi, S.K.和McCloskey, J.A. (1984)《核酸研究》12, 7929 - 7947]。所提出的结构基于各种光谱学和化学降解研究,而反式 - 顺式 - I立体化学的归属是基于对二核苷酸加合物的广泛1H - NMR和分子建模研究[Koning, T.M.G., Davies, R.J.H.和Kaptein, R. (1990)《核酸研究》18, 277 - 284]。然而,TA的许多性质与最初提出的结构不一致,这促使对该结构进行重新评估。为了确定TpdA [d(TpA)]的TA光产物的13C谱并建立其键连接性,获得了1H - 13C异核多量子相干(HMQC)和异核多键相关(HMBC)谱。发现13C化学位移和连接性与最初提出的胸腺嘧啶和腺嘌呤之间的环丁烷环稠合不一致,但可以通过随后的扩环反应来解释,该反应产生一个八元环价异构体。d(TpA)*的新结构解决了与最初提出的结构的不一致性,并且可能具有源自B型DNA中反式、反式糖基构象的立体化学。