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首页> 外文期刊>Biochemistry >N(4)C-ethyl-N(4)C cross-linked DNA: synthesis and characterization of duplexes with interstrand cross-links of different orientations.
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N(4)C-ethyl-N(4)C cross-linked DNA: synthesis and characterization of duplexes with interstrand cross-links of different orientations.

机译:N(4)C-乙基-N(4)C交联的DNA:具有不同方向的链间交联的双链体的合成和表征。

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摘要

The preparation and physical properties of short DNA duplexes that contain a N(4)C-ethyl-N(4)C interstrand cross-link are described. Duplexes that contain an interstrand cross-link between mismatched C-C residues and duplexes in which the C residues of a -CG- or -GC- step are linked to give "staggered" interstrand cross-links were prepared using a novel N(4)C-ethyl-N(4)C phosphoramidite reagent. Duplexes with the C-C mismatch cross-link have UV thermal transition temperatures that are 25 degrees C higher than the melting temperatures of control duplexes in which the cross-link is replaced with a G-C base pair. It appears that this cross-link stabilizes adjacent base pairs and does not perturb the structure of the helix, a conclusion that is supported by the CD spectrum of this duplex and by molecular models. An even higher level of stabilization, 49 degrees C, is seen with the duplex that contains a -CG- staggered cross-link. Molecular models suggest that this cross-link may induce propeller twisting in the cross-linked base pairs, and the CD spectrum of this duplex exhibits an unusual negative band at 298 nm, although the remainder of the spectrum is similar to that of B-form DNA. Mismatched C-C or -CG- staggered cross-linked duplexes that have complementary overhanging ends can undergo self-ligation catalyzed by T4 DNA ligase. Analysis of the ligated oligomers by nondenaturing polyacrylamide gel electrophoresis shows that the resulting oligomers migrate in a manner similar to that of a mixture of non-cross-linked control oligomers and suggests that these cross-links do not result in significant bending of the helix. However, the orientation of the staggered cross-link can have a significant effect on the structure and stability of the cross-linked duplex. Thus, the thermal stability of the duplex that contains a -GC- staggered cross-link is 10 degrees C lower than the melting temperature of the control, non-cross-linked duplex. Unlike the -CG- staggered cross-link, in which the cross-linked base pairs can still maintain hydrogen bond contacts, molecular models suggest that formation of the -GC- staggered cross-link disrupts hydrogen bonding and may also perturb adjacent base pairs leading to an overall reduction in helix stability. Duplexes with specifically positioned and oriented cross-links can be used as substrates to study DNA repair mechanisms.
机译:描述了包含N(4)C-乙基-N(4)C链间交联的短DNA双链体的制备和物理性质。使用新型N(4)C制备在错配CC残基与其中-CG-或-GC-步骤的C残基相连以产生“交错”链间交联的双链体之间包含链间交联的双链体-乙基-N(4)C亚磷酰胺试剂。具有C-C不匹配交联的双链体的UV热转变温度比以G-C碱基对代替交联的对照双链体的熔化温度高25摄氏度。看来,这种交联稳定了相邻的碱基对,并且不会干扰螺旋的结构,这一结论受到该双链体的CD光谱和分子模型的支持。对于包含-CG-交错交联的双链体,可以看到更高的稳定度(49摄氏度)。分子模型表明,这种交联可能在交联的碱基对中引起螺旋桨扭曲,并且该双链体的CD光谱在298 nm处显示出异常的负带,尽管该光谱的其余部分与B型相似。脱氧核糖核酸。具有互补的突出端的错配的C-C或-CG-交错交联的双链体可以通过T4 DNA连接酶催化进行自连接。通过非变性聚丙烯酰胺凝胶电泳对连接的低聚物进行的分析表明,所得的低聚物以与非交联的对照低聚物的混合物相似的方式迁移,并且表明这些交联不会导致螺旋的显着弯曲。但是,交错交联的方向会对交联双链体的结构和稳定性产生重大影响。因此,包含-GC-交错交联的双链体的热稳定性比对照的非交联双链体的熔融温度低10℃。不同于-CG-交错交联键,其中交联的碱基对仍可以保持氢键接触,分子模型表明-GC-交错交联键的形成破坏了氢键,也可能扰乱相邻的碱基对,导致导致整体螺旋稳定性降低。具有明确定位和定向交联的双链体可用作研究DNA修复机制的底物。

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