Live-cell imaging unveils distinct R-loop populations with heterogeneous dynamics

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Abstract

We have developed RHINO, a genetically encoded sensor that selectively binds RNA:DNA hybrids enabling live-cell imaging of cellular R-loops. RHINO comprises a tandem array of three copies of the RNA:DNA hybrid binding domain of human RNase H1 connected by optimized linker segments and fused to a fluorescent protein. This tool allows the measurement of R-loop abundance and dynamics in live cells with high specificity and sensitivity. Using RHINO, we provide a kinetic framework for R-loops at nucleoli, telomeres and protein-coding genes. Our findings demonstrate that R-loop dynamics vary significantly across these regions, potentially reflecting the distinct roles R-loops play in different chromosomal contexts. RHINO is a powerful tool for investigating the role of R-loops in cellular processes and their contribution to disease development and progression.

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Martin, R. M., De Almeida, M. R., Gameiro, E., & De Almeida, S. F. (2023). Live-cell imaging unveils distinct R-loop populations with heterogeneous dynamics. Nucleic Acids Research, 51(20), 11010–11023. https://doi.org/10.1093/nar/gkad812

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