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Substituent effects on the pairing and polymerase recognition of simple unnatural base pairs

机译:取代基对简单非天然碱基对的配对和聚合酶识别的影响

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As part of an effort to develop stable and replicable unnatural base pairs, we have evaluated a large number of unnatural nucleotides with predominantly hydrophobic nucleobases. Despite its limited aromatic surface area, a nucleobase analog scaffold that has emerged as being especially promising is the simple phenyl ring. Modifications of this scaffold with methyl and fluoro groups have been shown to impact base pair stability and polymerase recognition, suggesting that nucleobase shape, hydrophobicity and electrostatics are important. To further explore the impact of heteroatom substitution within this nucleobase scaffold, we report the synthesis, stability and polymerase recognition of nucleoside analogs bearing single bromo- or cyano-derivatized phenyl rings. Both modifications are found to generally stabilize base pair formation to a greater extent than methyl or fluoro substitution. Moreover, polymerase recognition of the unnatural base pairs is found to be very sensitive to both the position and nature of the heteroatom substituent. The results help identify the determinants of base pair stability and efficient replication and should contribute to the effort to develop stable and replicable unnatural base pairs.
机译:作为开发稳定和可复制的非天然碱基对的一部分,我们评估了大量具有主要疏水性核碱基的非天然核苷酸。尽管其芳香族表面积有限,但已经出现的特别有希望的核碱基类似物支架是简单的苯环。已证明用甲基和氟基团修饰该支架会影响碱基对的稳定性和聚合酶的识别,表明核碱基的形状,疏水性和静电性很重要。为了进一步探讨在该核碱基支架内杂原子取代的影响,我们报道了带有单个溴或氰基衍生的苯环的核苷类似物的合成,稳定性和聚合酶识别。发现两种修饰通常比甲基或氟取代更大程度地稳定碱基对的形成。此外,发现非天然碱基对的聚合酶识别对杂原子取代基的位置和性质都非常敏感。结果有助于确定碱基对稳定性和有效复制的决定因素,并应有助于开发稳定和可复制的非天然碱基对。

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