Université de Strasbourg, CNRS, Institut Charles Sadron UPR22, 23 rue du Loess, 67034, Strasbourg Cedex 2, France.
Aix Marseille Université, CNRS, UMR 7273, Institute of Radical Chemistry, 13397, Marseille Cedex 20, France.
Nat Commun. 2019 Sep 4;10(1):3774. doi: 10.1038/s41467-019-11566-2.
Light-induced alteration of macromolecular information plays a central role in biology and is known to influence health, aging and Darwinian evolution. Here, we report that light can also trigger sequence variations in abiotic information-containing polymers. Sequence-coded poly(phosphodiester)s were synthesized using four phosphoramidite monomers containing either photo-sensitive or photo-inert substituents. These monomers allow different sequence manipulations. For instance, using two light-cleavable monomers containing o-nitrobenzyl ether and o-nitroveratryl ether motifs, photo-erasable digital polymers were prepared. These polymers can be decoded by tandem mass spectrometry but become unreadable after UVA exposure. The opposite behavior, i.e. photo-revealable sequences, was obtained with polymers made of two isobaric monomers containing light-cleavable o-nitrobenzyl ether and light-inert p-nitrobenzyl ether substituents. Furthermore, when the latter two monomers were used in conjunction with a third monomer bearing a light-inert OH group, site-directed photo-mutations were induced in synthetic polymers. This was used herein to change the meaning of binary sequences.
光诱导的大分子信息改变在生物学中起着核心作用,已知会影响健康、衰老和达尔文进化。在这里,我们报告说,光也可以触发非生物信息聚合物中的序列变异。使用含有光敏感或光惰性取代基的四种膦酸酯单体合成了序列编码的聚(磷酸二酯)。这些单体允许进行不同的序列操作。例如,使用含有邻硝基苄基醚和邻硝基香草基醚结构的两个光可裂解单体,制备了可光擦除的数字聚合物。这些聚合物可以通过串联质谱法进行解码,但在 UVA 暴露后变得无法读取。相反的行为,即光可揭示的序列,是使用由两个含有光可裂解邻硝基苄基醚和光惰性对硝基苄基醚取代基的等摩尔单体制得的聚合物获得的。此外,当后两种单体与带有光惰性 OH 基团的第三种单体一起使用时,在合成聚合物中诱导了定点光突变。本文中,将其用于改变二进制序列的含义。