Dipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università di Milano , via Fratelli Cervi 93, I-20090 Segrate (Milan), Italy.
Dipartimento di Scienze Umane e Promozione della Qualità della Vita, Università San Raffaele di Roma , via di Val Cannuta, 247, I-00166 Rome, Italy.
ACS Nano. 2016 Sep 27;10(9):8508-16. doi: 10.1021/acsnano.6b03622. Epub 2016 Sep 1.
Liquid crystal ordering is reported in aqueous solutions of the oligomer 5'-ATTAp-3' and of the oligomer 5'-GCCGp-3'. In both systems, we quantitatively interpret ordering as stemming from the chaining of molecules via a "running-bond" type of pairing, a self-assembly process distinct from the duplex aggregation previously reported for longer oligonucleotides. While concentrated solutions of 5'-ATTAp-3' show only a columnar liquid crystal phase, solutions of 5'-GCCGp-3' display a rich phase diagram, featuring a chiral nematic phase analogous to those observed in solutions of longer oligonucleotides and two unconventional phases, a columnar crystal and, at high concentration, an isotropic amorphous gel. The appearance of these phases, which can be interpreted on the basis of features of 5'-GCCGp-3'molecular structure, suggests distinctive assembly motifs specific to ultrashort oligonucleotides.
在寡聚物 5'-ATTAp-3'和寡聚物 5'-GCCGp-3'的水溶液中,均观察到液晶有序性。在这两种体系中,我们定量解释了这种有序性源自分子通过“游走键”式配对进行链化,这是一种不同于先前报道的长寡核苷酸的双链聚集的自组装过程。尽管浓度较高的 5'-ATTAp-3'溶液仅表现出柱状液晶相,但 5'-GCCGp-3'溶液的相图非常丰富,具有类似于在长寡核苷酸溶液中观察到的手性向列相以及两种非传统相,即柱状晶体相和在高浓度下的各向同性无定形凝胶相。这些相的出现可以根据 5'-GCCGp-3'分子结构的特征进行解释,表明超短寡核苷酸具有独特的组装模式。