bioRxiv · 10.1101/2020.01.31.929026
Single-molecule imaging of telomerase RNA reveals a Recruitment-Retention model for telomere elongation
Abstract
Extension of telomeres is a critical step in the immortalization of cancer cells. This complex reaction requires proper spatio-temporal coordination of telomerase and telomeres, and remains poorly understood at the cellular level. To understand how cancer cells execute this process, we combined CRISPR genome editing and MS2 RNA-tagging to image single-molecules of telomerase RNA (hTR). Real-time dynamics and photoactivation experiments of hTR in Cajal bodies (CBs) reveal that hTERT controls the exit of hTR from CBs. Single-molecule tracking of hTR at telomeres shows that TPP1-mediated recruitment results in short telomere-telomerase scanning interactions, then base-pairing between hTR and telomere ssDNA promotes long interactions required for stable telomerase retention. Interestingly, POT1 OB-fold mutations that result in abnormally long telomeres in cancers act by enhancing this retention step. In summary, single-molecule imaging unveils the life-cycle of telomerase RNA and provides a framework to understand how cancer-associated mutations mechanistically drive defects in telomere homeostasis.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Laprade, H., Querido, E., Smith, M. J., Guerit, D., Crimmins, H., Conomos, D., Pourret, E., Chartrand, P., Sfeir, A.. 2020-02-02. Single-molecule imaging of telomerase RNA reveals a Recruitment-Retention model for telomere elongation. https://doi.org/10.1101/2020.01.31.929026
Cite the original work for its findings. Save a collection to share your selection of sources.