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  • A balance between elongation and trimming regulates telomere stability in stem cells.

A balance between elongation and trimming regulates telomere stability in stem cells.

Nature structural & molecular biology (2016-12-06)
Teresa Rivera, Candy Haggblom, Sandro Cosconati, Jan Karlseder
摘要

Telomere length maintenance ensures self-renewal of human embryonic stem cells (hESCs) and induced pluripotent stem cells (hiPSCs); however, the mechanisms governing telomere length homeostasis in these cell types are unclear. Here, we report that telomere length is determined by the balance between telomere elongation, which is mediated by telomerase, and telomere trimming, which is controlled by XRCC3 and Nbs1, homologous recombination proteins that generate single-stranded C-rich telomeric DNA and double-stranded telomeric circular DNA (T-circles), respectively. We found that reprogramming of differentiated cells induces T-circle and single-stranded C-rich telomeric DNA accumulation, indicating the activation of telomere trimming pathways that compensate telomerase-dependent telomere elongation in hiPSCs. Excessive telomere elongation compromises telomere stability and promotes the formation of partially single-stranded telomeric DNA circles (C-circles) in hESCs, suggesting heightened sensitivity of stem cells to replication stress at overly long telomeres. Thus, tight control of telomere length homeostasis is essential to maintain telomere stability in hESCs.

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Sigma-Aldrich
抗肌动蛋白,α-平滑肌抗体,小鼠单克隆, clone 1A4, purified from hybridoma cell culture
Sigma-Aldrich
抗-TRA-1-60抗体,克隆TRA-1-60, clone TRA-1-60, Chemicon®, from mouse