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RNA-DNA 杂交体阻止在功能失调的端粒处进行修复。

RNA-DNA hybrids prevent resection at dysfunctional telomeres.

机构信息

Instituto de Ciências Biomédicas Abel Salazar, Universidade do Porto, 4050-313 Porto, Portugal; Institute of Molecular Biology gGmbH, Ackermannweg 4, 55128 Mainz, Germany.

Institute of Molecular Biology gGmbH, Ackermannweg 4, 55128 Mainz, Germany; Faculty of Biology, Institute of Developmental Biology and Neurobiology, Johannes Gutenberg-University Mainz, 55128 Mainz, Germany.

出版信息

Cell Rep. 2023 Feb 28;42(2):112077. doi: 10.1016/j.celrep.2023.112077. Epub 2023 Feb 1.

Abstract

At critically short telomeres, stabilized TERRA RNA-DNA hybrids drive homology-directed repair (HDR) to delay replicative senescence. However, even at long- and intermediate-length telomeres, not subject to HDR, transient TERRA RNA-DNA hybrids form, suggestive of additional roles. We report that telomeric RNA-DNA hybrids prevent Exo1-mediated resection when telomeres become non-functional. We used the well-characterized cdc13-1 allele, where telomere resection can be induced in a temperature-dependent manner, to demonstrate that ssDNA generation at telomeres is either prevented or augmented when RNA-DNA hybrids are stabilized or destabilized, respectively. The viability of cdc13-1 cells is affected by the presence or absence of hybrids accordingly. Telomeric hybrids do not affect the shortening rate of bulk telomeres. We suggest that TERRA hybrids require dynamic regulation to drive HDR at short telomeres; hybrid presence may initiate HDR through replication stress, whereby their removal allows strand resection.

摘要

在端粒极度缩短的情况下,稳定的 TERRA RNA-DNA 杂交体驱动同源重组修复(HDR)以延迟复制性衰老。然而,即使在不受 HDR 影响的长和中等长度端粒上,也会形成瞬时的 TERRA RNA-DNA 杂交体,表明其具有额外的作用。我们报告称,当端粒失去功能时,端粒 RNA-DNA 杂交体可防止 Exo1 介导的切除。我们使用了经过充分表征的 cdc13-1 等位基因,其中可以在温度依赖性的方式下诱导端粒切除,以证明当 RNA-DNA 杂交体分别稳定或不稳定时,端粒处的单链 DNA 的生成会被阻止或增强。相应地,cdc13-1 细胞的存活率会受到杂交体存在与否的影响。端粒杂交体不会影响大量端粒的缩短速度。我们认为,TERRA 杂交体需要动态调节才能在短端粒上驱动 HDR;杂交体的存在可能通过复制应激引发 HDR,而其去除则允许链切除。

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