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Solid phase-supported thymine dimers for the construction of dimer-containing DNA by combined chemical and enzymatic synthesis: a potentially general method for the efficient incorporation of modified nucleotides into DNA.

机译:固相支持的胸腺嘧啶二聚体,用于通过化学合成和酶促合成来构建含二聚体的DNA:将修饰的核苷酸有效掺入DNA的潜在通用方法。

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摘要

The ability to study the structure-activity relationships of the cis-syn thymine dimer, the major photoproduct of DNA, has been greatly aided by the availability of a building block suitable for its sequence-specific incorporation into oligonucleotides by standard automated DNA synthesis. Unfortunately, its usefulness is compromised by the fact that it takes six steps to synthesize in low overall yield and, as with all phosphoramidite building blocks, has to be used in great excess over the support in standard automated synthesis. To extend the usefulness of this building block, we have directly coupled it to standard A, C, G and T long chain alkylamine-linked controlled pore glass supports to yield a solid phase-supported dimer. We then demonstrate that 13mers containing a 3'-terminal d(T[cis-syn]TN) group synthesized with this support at 0.2 micromol scale can be efficiently incorporated into longer oligonucleotides by both primer extension with 3'-->5'exonuclease-deficient Klenow fragment or T4 polymerase and dNTPs or by enzymatic ligation with T4 DNA ligase to another oligonucleotide opposite a complementary template. The site specificity and integrity of the cis-syn thymine dimer after both primer extension and ligation was confirmed by cis-syn dimer-specific cleavage with T4 denV endonuclease V. This general approach should be applicable to the synthesis of many types of site-specific nucleic acid modifications and would be of particular use for those for which the required building blocks are expensive or difficult to make.
机译:通过标准的自动DNA合成,可利用适合于将其序列特异性掺入寡核苷酸的结构单元,极大地帮助了研究顺式-胸腺嘧啶二聚体(DNA的主要光产物)的构效关系的能力。不幸的是,它的有效性受到以下事实的折衷:以六步法以较低的总产率进行合成,并且与所有亚磷酰胺结构单元一样,与标准自动化合成中的载体相比,其使用量大大超过了后者。为了扩展该结构单元的用途,我们将其直接与标准的A,C,G和T长链烷基胺连接的受控孔玻璃载体偶联,以生成固相负载的二聚体。然后,我们证明了通过此支持物以0.2微摩尔规模合成的含有3'-末端d(T [cis-synTN))基团的13mers可通过3'-> 5'核酸外切酶延伸引物有效地掺入更长的寡核苷酸中缺陷的Klenow片段或T4聚合酶和dNTP,或通过与T4 DNA连接酶进行酶促连接至与互补模板相对的另一寡核苷酸。用T4 denV核酸内切酶V进行顺式二聚体特异性切割,可以证实引物延伸和连接后顺式-胸腺嘧啶二聚体的位点特异性和完整性。这种通用方法应适用于多种类型的位点特异性合成核酸修饰,并且对于那些所需的构件昂贵或难以制造的修饰特别有用。

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