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Solid-phase synthesis of DNA binding polyamides on oxime resin.

机译:在肟树脂上固相合成DNA结合聚酰胺。

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Control of the energetics and specificity of DNA binding polyamides is necessary for inhibition of protein-DNA complex formation and gene regulation studies. Typically, solid-phase methods using Boc monomers for synthesis have depended on Boc-beta-Ala-PAM resin which affords a beta-alanine-Dp tail at the C-terminus, after cleavage with N,N-dimethylaminopropylamine (Dp). To address the energetic consequences of this tail for DNA minor groove binding, we describe an alternative solid phase method employing the Kaiser oxime resin which allows the synthesis of polyamides with incrementally shortened C-terminal tails. Polyamides without Dp and having methyl amide tails rather than beta-alanine show similar affinity relative to the standard beta-Dp tail. The truncated tail diminishes the A,T base pair energetic preference of the beta-Dp tail which will allow a greater variety of DNA sequences to be targeted by hairpin polyamides.
机译:控制DNA结合聚酰胺的能量和特异性对于抑制蛋白质-DNA复合物的形成和基因调控研究是必需的。通常,使用Boc单体进行合成的固相方法依赖于Boc-β-Ala-PAM树脂,该树脂在用N,N-二甲基氨基丙胺(Dp)裂解后在C末端提供β-丙氨酸-Dp尾巴。为了解决该尾部对DNA小沟结合的能量影响,我们描述了使用Kaiser肟树脂的另一种固相方法,该方法可合成C端尾部逐渐缩短的聚酰胺。与标准β-Dp尾巴相比,不含Dp且具有甲基酰胺尾巴而不是β-丙氨酸的聚酰胺显示出相似的亲和力。截短的尾巴减少了β-Dp尾巴的A,T碱基对的能量偏好,这将使发夹式聚酰胺靶向更多种类的DNA序列。

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