bioRxiv · 10.1101/2024.05.28.596189
Systematic study of hybrid triplex topology and stability suggests a general triplex-mediated regulatory mechanism
Abstract
By combining in-silico, biophysical and in-cellulo experiments, we decipher the topology, physical and potential biological properties of hybrid-parallel nucleic acids triplexes; an elusive structure at the basis of life. We found that hybrid triplex topology follows a stability order: r(Py)-d(Pu){middle dot}r(Py)> r(Py)-d(Pu){middle dot}d(Py)> d(Py)-d(Pu){middle dot}d(Py)> d(Py)-d(Pu){middle dot}r(Py). The r(Py)-d(Pu){middle dot}d(Py) triplex is expected to be the preferred in the cell as it avoids the need to open the duplex reducing the torsional stress required for triplex formation in the r(Py)-d(Pu){middle dot}r(Py) topology. Upon a massive collection of melting data, we have created the first predictor for hybrid triplex stability. Leveraging this predictor, we conducted a comprehensive scan to assess the likelihood of the human genome and transcriptome to engage in triplex formation. Our findings unveil a remarkable inclination - of both the human genome and transcriptome - to generate hybrid triplex formation, particularly within untranslated (UTRs) and regulatory regions, thereby corroborating the existence of a triplex-mediated regulatory mechanism. Furthermore, we found a correlation between nucleosome linkers and TFS which agree with a putative role of triplexes in arranging chromatin structure and local/global level.
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Genna, V., Portella, G., Sala, A., Terrazas, M., Villegas, N., Mateo, L., Castellazzi, C., Labrador, M., Avino, A., Hospital, A., Grandioso, A., Aloy, P., Brun-Heath, I., Gonzalez, C., Eritja, R., Orozco, M.. 2024-05-28. Systematic study of hybrid triplex topology and stability suggests a general triplex-mediated regulatory mechanism. https://doi.org/10.1101/2024.05.28.596189
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