IBMM, Université de Montpellier, CNRS, ENSCM, 1919 route de Mende, 34293, Montpellier Cedex 5, France.
Chemistry. 2024 Jul 11;30(39):e202401069. doi: 10.1002/chem.202401069. Epub 2024 Jun 14.
Peptide-oligonucleotide conjugates (POCs) are covalent architectures composed of a DNA or RNA molecules linked to a peptide. These constructs have found widespread applications ranging from hybrid nanomaterials to gene-targeted therapies. Considering the important role of POCs, a new catalytic approach for their preparation is reported here, that could be applied either on solid support in anhydrous media, or post-synthetically in aqueous buffer. Single amino acids, peptides and cell penetrating peptides (CPPs) were conjugated to various oligo(ribo)nucleotides with high conversions and good isolated yields. The applicability of the method was demonstrated on more than 35 examples including an analogue of a commercial therapeutic oligonucleotide. Other conjugation partners, such as deoxycholic acid and biotin were also successfully conjugated to oligonucleotides. To highlight the potential of this catalytic approach, these conditions have been applied to iterative processes, which is of high interest for the development of DNA-Encoded Libraries.
肽-寡核苷酸缀合物 (POC) 是由与肽连接的 DNA 或 RNA 分子组成的共价结构。这些构建体已被广泛应用于从混合纳米材料到基因靶向治疗等领域。鉴于 POC 的重要作用,本文报道了一种新的催化方法来制备它们,该方法既可以在无水介质中在固体载体上进行,也可以在水缓冲液中进行后合成。各种单氨基酸、肽和细胞穿透肽 (CPP) 被高效地连接到各种寡(核糖)核苷酸上,且具有良好的分离收率。该方法的适用性已在 35 个以上的实例中得到证明,包括一种商业治疗性寡核苷酸的类似物。其他连接体,如脱氧胆酸和生物素,也成功地与寡核苷酸连接。为了突出这种催化方法的潜力,这些条件已被应用于迭代过程中,这对于 DNA 编码文库的开发非常有意义。