Systematic study of hybrid triplex topology and stability suggests a general triplex-mediated regulatory mechanism
Title | Systematic study of hybrid triplex topology and stability suggests a general triplex-mediated regulatory mechanism |
Publication Type | Journal Article |
Year of Publication | 2025 |
Authors | Genna, Vito, Portella Guillem, Sala Alba, Terrazas Montserrat, Serrano-Chacón Israel, González Javier, Villegas Núria, Mateo Lidia, Castellazzi Chiara, Labrador Mireia, Aviñó Anna, Hospital Adam, Gandioso Albert, Aloy Patrick, Brun-Heath Isabelle, González Carlos, Eritja Ramon, and Orozco Modesto |
Journal | Nucleic Acids Research |
Volume | 53 |
Issue | 5 |
Pagination | gkaf170 |
Date Published | 03/2025 |
ISBN Number | 1362-4962 |
Abstract | By combining in silico, biophysical, and in vitro 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)·r(Py) > r(Py)-d(Pu)·d(Py) > d(Py)-d(Pu)·d(Py) > d(Py)-d(Pu)·r(Py). The r(Py)-d(Pu)·d(Py) triplex is expected to be 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)·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 Triplex-forming sequence (TFS) which agree with a putative role of triplexes in arranging chromatin structure. |
URL | https://doi.org/10.1093/nar/gkaf170 |
Short Title | Nucleic Acids Research |