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首页> 外文期刊>Amino acids >Dakin-West reaction on 1-thyminyl acetic acid for the synthesis of 1,3-bis(1-thyminyl)-2-propanone, a heteroaromatic compound with nucleopeptide-binding properties
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Dakin-West reaction on 1-thyminyl acetic acid for the synthesis of 1,3-bis(1-thyminyl)-2-propanone, a heteroaromatic compound with nucleopeptide-binding properties

机译:在1-胸腺嘧啶乙酸上进行Dakin-West反应以合成1,3-双(1-胸腺嘧啶)-2-丙酮,一种具有核肽结合特性的杂芳族化合物

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摘要

This work deals with the Dakin-West synthesis, starting from the nucleoamino acid 1-thyminyl acetic acid, as well the NMR, ESI MS, and X-ray characterization of a heteroaromatic compound denominated by us T2CO, comprising two thymine moieties anchored to a 2-propa-nonic unit, the spectroscopic properties of which were studied by UV as a function of temperature and ionic strength. Preliminary binding-studies with molecules of biomedical interest such as nucleic acids and proteins, performed on samples containing T2CO, suggested that this molecule is able to interact very weakly with double-stranded RNA, whereas it does not seem to bind other nucleic acids or proteins. Moreover, by studies with fresh human serum we found that T2CO is resistant to enzymatic degradation till 24 h, whereas UV metal binding-studies, performed using solutions of copper (II) chloride dihydrate and nickel (II) chloride hexahydrate, revealed a certain ability of T2CO to bind copper (II) cation. Finally, by CD spectroscopy we investigated the influence of T2CO on the already described supramolecular networks based on L-serine-containing nucleopeptides. More particularly, we found that T2CO is able to increase the level of structuration of the non-covalent supramolecular assembly of the chiral nucleopeptides, which is a feature of remarkable interest for the development of innovative drug delivery tools.
机译:这项工作涉及Dakin-West合成,从核糖氨基酸1-胸腺嘧啶乙酸开始,以及由T2CO命名的杂芳族化合物的NMR,ESI MS和X射线表征,该杂芳族化合物包含两个锚定于a的胸腺嘧啶2-丙酸单位,通过紫外光谱研究其光谱性质与温度和离子强度的关系。对含有T2CO的样品进行的具有生物医学意义的分子(如核酸和蛋白质)的初步结合研究表明,该分子能够与双链RNA相互作用非常弱,而它似乎不与其他核酸或蛋白结合。此外,通过对新鲜人血清的研究,我们发现T2CO能够抵抗酶降解直至24小时,而使用二水合氯化铜(II)和六水合氯化镍(II)的溶液进行的UV金属结合研究显示出一定的能力T2CO结合铜(II)阳离子。最后,通过CD光谱,我们研究了T2CO对已经描述的基于含L-丝氨酸的核苷酸肽的超分子网络的影响。更特别地,我们发现T2CO能够提高手性核苷酸的非共价超分子组装的结构化水平,这对于开发创新的药物递送工具具有极大的兴趣。

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