The role of epigenetics in endothelial cell senescence is a cutting-edge topic in ageing research. However, little is known of the relative contribution to pro-senescence signal propagation provided by microRNAs shuttled by extracellular vesicles (EVs) released from senescent cells. Analysis of microRNA and DNA methylation profiles in non-senescent (control) and senescent (SEN) human umbilical vein endothelial cells (HUVECs), and microRNA profiling of their cognate small EVs (sEVs) and large EVs demonstrated that SEN cells released a significantly greater sEV number than control cells. sEVs were enriched in miR-21-5p and miR-217, which target DNMT1 and SIRT1. Treatment of control cells with SEN sEVs induced a miR-21/miR-217-related impairment of DNMT1-SIRT1 expression, the reduction of proliferation markers, the acquisition of a senescent phenotype and a partial demethylation of the locus encoding for miR-21. MicroRNA profiling of sEVs from plasma of healthy subjects aged 40-100 years showed an inverse U-shaped age-related trend for miR-21-5p, consistent with senescence-associated biomarker profiles. Our findings suggest that miR-21-5p/miR-217 carried by SEN sEVs spread pro-senescence signals, affecting DNA methylation and cell replication.

Small extracellular vesicles deliver miR‐21 and miR‐217 as pro‐senescence effectors to endothelial cells

Negrini, Massimo;
2020

Abstract

The role of epigenetics in endothelial cell senescence is a cutting-edge topic in ageing research. However, little is known of the relative contribution to pro-senescence signal propagation provided by microRNAs shuttled by extracellular vesicles (EVs) released from senescent cells. Analysis of microRNA and DNA methylation profiles in non-senescent (control) and senescent (SEN) human umbilical vein endothelial cells (HUVECs), and microRNA profiling of their cognate small EVs (sEVs) and large EVs demonstrated that SEN cells released a significantly greater sEV number than control cells. sEVs were enriched in miR-21-5p and miR-217, which target DNMT1 and SIRT1. Treatment of control cells with SEN sEVs induced a miR-21/miR-217-related impairment of DNMT1-SIRT1 expression, the reduction of proliferation markers, the acquisition of a senescent phenotype and a partial demethylation of the locus encoding for miR-21. MicroRNA profiling of sEVs from plasma of healthy subjects aged 40-100 years showed an inverse U-shaped age-related trend for miR-21-5p, consistent with senescence-associated biomarker profiles. Our findings suggest that miR-21-5p/miR-217 carried by SEN sEVs spread pro-senescence signals, affecting DNA methylation and cell replication.
2020
Mensà, Emanuela; Guescini, Michele; Giuliani, Angelica; Bacalini, Maria Giulia; Ramini, Deborah; Corleone, Giacomo; Ferracin, Manuela; Fulgenzi, Gianluca; Graciotti, Laura; Prattichizzo, Francesco; Sorci, Leonardo; Battistelli, Michela; Monsurrò, Vladia; Bonfigli, Anna Rita; Cardelli, Maurizio; Recchioni, Rina; Marcheselli, Fiorella; Latini, Silvia; Maggio, Serena; Fanelli, Mirco; Amatori, Stefano; Storci, Gianluca; Ceriello, Antonio; Stocchi, Vilberto; De Luca, Maria; Magnani, Luca; Rippo, Maria Rita; Procopio, Antonio Domenico; Sala, Claudia; Budimir, Iva; Bassi, Cristian; Negrini, Massimo; Garagnani, Paolo; Franceschi, Claudio; Sabbatinelli, Jacopo; Bonafè, Massimiliano; Olivieri, Fabiola
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/2538610
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