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Increase in lamin B1 promotes telomere instability by disrupting the shelterin complex in human cells

Nucleic Acids Res. 2021-09; 
Gaëlle Pennarun, Julien Picotto, Laure Etourneaud, Anna-Rita Redavid, Anaïs Certain, Laurent R Gauthier, Paula Fontanilla-Ramirez, Didier Busso, Caroline Chabance-Okumura, Benoît Thézé, François D Boussin, Pascale Bertrand
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ORF cDNA Clones/MolecularCloud Then, the ORF was transferred into pcDNA3-HA puromycin vector by restriction-ligation at the NheI and XhoI sites. The GFP-TRF2 longer isoform expressing vector was purchased from Genscript (Clone ID OHu16732 into pcDNA3.1 + N-eGFP vector) Get A Quote

摘要

Telomere maintenance is essential to preserve genomic stability and involves telomere-specific proteins, DNA replication and repair proteins. Lamins are key components of the nuclear envelope and play numerous roles, including maintenance of the nuclear integrity, regulation of transcription, and DNA replication. Elevated levels of lamin B1, one of the major lamins, have been observed in some human pathologies and several cancers. Yet, the effect of lamin B1 dysregulation on telomere maintenance remains unknown. Here, we unveil that lamin B1 overexpression drives telomere instability through the disruption of the shelterin complex. Indeed, lamin B1 dysregulation leads to an increase in telomere dysfunction-indu... More

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