bioRxiv · 10.1101/2024.11.22.624933
Sequence-Dependent Liquid Crystalline Ordering of Gapped DNA
Abstract
We investigate the impact of poly-adenine (poly-A) sequences on the type and stability of liquid crystalline (LC) phases formed by concentrated solutions of gapped DNA (two duplex arms bridged by a flexible single strand) using synchrotron small angle X-ray scattering and polarizing optical microscopy. While samples with mixed sequence form layered (smectic) phases, poly-A samples demonstrate a columnar phase at lower temperatures (5-35 {degrees}C), not previously observed in GDNA samples, and a smectic-B phase of exceptional stability at higher temperatures (35-65 {degrees}C). We present a model that connects formation of these LC phases with the unique characteristics of poly-A sequences, which manifest in various biological contexts, including DNA condensation and nucleosome formation.
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Kodikara, S., Gleeson, J., Jakli, A., Sprunt, S., Balci, H.. 2024-11-25. Sequence-Dependent Liquid Crystalline Ordering of Gapped DNA. https://doi.org/10.1101/2024.11.22.624933
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