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富含嘌呤的DNA双链中G·A错配碱基对的核磁共振和分子模拟证据

NMR and molecular modeling evidence for a G.A mismatch base pair in a purine-rich DNA duplex.

作者信息

Li Y, Zon G, Wilson W D

机构信息

Department of Chemistry, Georgia State University, Atlanta 30303-3083.

出版信息

Proc Natl Acad Sci U S A. 1991 Jan 1;88(1):26-30. doi: 10.1073/pnas.88.1.26.

Abstract

1H NMR experiments indicate that the oligomer 5'-d(ATGAGCGAATA) forms an unusual 10-base-pair duplex with 4 G.A base pairs (underlined) and a 3' unpaired adenosine. NMR results indicate that guanosine imino protons of the G.A mismatches are not hydrogen bonded but are stacked in the helix. A G----I substitution in either G.A base pair causes a dramatic decrease in duplex stability and indicates that hydrogen bonding of the guanosine amino group is critical. Nuclear Overhauser effect spectroscopy (NOESY) and two-dimensional correlated spectroscopy (COSY) results indicate that the overall duplex conformation is in the B-family. Cross-strand NOEs in two-dimensional NOESY spectra between a mismatched AH2 and an AH1' of the other mismatched base pair and between a mismatched GH8 and GNH1 of the other mismatch establish a purine-purine stacking pattern, adenosine over adenosine and guanosine over guanosine, which strongly stabilizes the duplex. A computer graphics molecular model of the unusual duplex was constructed with G.A base pairs containing A-NH2 to GN3 and G-NH2 to AN7 hydrogen bonds and B-form base pairs on both sides of the G.A pairs [5'-d(ATGAGC)]. The energy-minimized duplex satisfies all experimental constraints from NOESY and COSY results. A hydrogen bond from G-NH2 of the mismatch to a phosphate oxygen is predicted.

摘要

1H核磁共振实验表明,寡聚物5'-d(ATGAGCGAATA)形成了一种不寻常的10碱基对双链体,其中有4个G·A碱基对(下划线部分)和一个3'端未配对的腺苷。核磁共振结果表明,G·A错配中的鸟苷亚氨基质子没有形成氢键,而是堆积在螺旋中。任一G·A碱基对中的G被I取代都会导致双链体稳定性急剧下降,这表明鸟苷氨基的氢键作用至关重要。核Overhauser效应光谱(NOESY)和二维相关光谱(COSY)结果表明,双链体的整体构象属于B族。二维NOESY光谱中,一个错配的AH2与另一个错配碱基对的AH1'之间以及一个错配的GH8与另一个错配的GNH1之间的跨链NOE建立了嘌呤-嘌呤堆积模式,即腺苷与腺苷堆积、鸟苷与鸟苷堆积,这极大地稳定了双链体。构建了该不寻常双链体的计算机图形分子模型,其中G·A碱基对包含从A-NH2到GN3以及从G-NH2到AN7的氢键,且在G·A碱基对[5'-d(ATGAGC)]两侧为B型碱基对。能量最小化的双链体满足了来自NOESY和COSY结果的所有实验限制。预测了错配中G-NH2与磷酸氧之间形成的氢键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e7e/50740/4e61c7b336e3/pnas01051-0043-a.jpg

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