Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Tammannstr. 2, 37077, Göttingen, Germany.
Amino Acids. 2010 May;38(5):1301-9. doi: 10.1007/s00726-009-0324-x. Epub 2009 Jul 24.
Alanyl-peptide nucleic acid (alanyl-PNA)/DNA chimeras are oligomers envisaged to be beneficial in efficient DNA diagnostics based on an improved molecular beacon concept. A synthesis of alanyl-PNA/DNA chimera can be based on the solid phase assembly of the oligomer with mixed oligonucleotide/peptide backbone under DNA synthesis conditions, in which the nucleotides are introduced as phosphoramidites, whereas the nucleo amino acids make use of the acid labile monomethoxytrityl (MMT) group for temporary protection of the alpha-amino groups and acyl protecting groups for the exocyclic amino functions of the nucleobases. In this work, we realized for the first time the synthesis of all four MMT/acyl-protected nucleo alanines, achieved by deprotection/reprotection of the newly synthesized Boc/acyl intermediates, useful monomers for the obtainment of (alanyl-PNA)/DNA chimeras by conditions fully compatible with the standard phosphoramidite DNA synthesis strategy.
丙氨酰-肽核酸(alanyl-PNA)/DNA 嵌合体是一种设想中的寡聚物,有望基于改进的分子信标概念,在高效的 DNA 诊断中发挥作用。丙氨酰-PNA/DNA 嵌合体的合成可以基于在 DNA 合成条件下通过混合寡核苷酸/肽骨架的固相组装来实现,其中核苷酸作为亚磷酰胺被引入,而核碱基则利用酸不稳定的单甲氧基三苯甲基(MMT)基团暂时保护α-氨基,并用酰基保护基保护核碱基的环外氨基功能。在这项工作中,我们首次实现了所有四种 MMT/酰基保护的核氨酸的合成,这是通过新合成的 Boc/酰基中间体的脱保护/再保护来实现的,这些中间体是通过与标准亚磷酰胺 DNA 合成策略完全兼容的条件获得(alanyl-PNA)/DNA 嵌合体的有用单体。