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重复序列诱导点突变以及常染色质重复序列新型过渡性异染色质状态的成核都需要RID。

RID is required for both repeat-induced point mutation and nucleation of a novel transitional heterochromatic state for euchromatic repeats.

作者信息

He Zhen, Wu Nannan, Yao Ruonan, Tan Huawei, Sun Yingying, Chen Jingxuan, Xue Lan, Chen Xiaonan, Yang Sihai, Hurst Laurence D, Wang Long, Huang Ju

机构信息

School of Life Sciences, Nanjing University, Nanjing 210023, China.

Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, Jiangsu 210000, China.

出版信息

Nucleic Acids Res. 2025 Mar 20;53(6). doi: 10.1093/nar/gkaf263.

Abstract

To maintain genome integrity, repeat sequences are subject to heterochromatin inactivation and, in Neurospora, repeat-induced point mutation (RIP). The initiating factors behind both are poorly understood. We resolve the paradoxical observation that newly introduced Repeat-Linker-Repeat (R-L-R) constructs require RID alone for RIP, while genomic repeats are RIPed in the absence of RID, showing that eu- and hetero- chromatic repeats are handled differently, the latter additionally requiring DIM-2. The differences between mechanisms associated with older and newer duplicates caution against extrapolation from mechanisms inferred from model experimental systems. Additionally, while chromatin status affects RIP, we also show that RID, when tethered with LexA, acts as a nucleation center for the transition from euchromatin to heterochromatin in an HDA-1 dependent fashion. Constitutive heterochromatin by contrast is largely HDA1 independent and depends on HDA-1 paralogs. RID is thus a dual function initiator of both RIP and the transition to heterochromatin.

摘要

为维持基因组完整性,重复序列会经历异染色质失活,在粗糙脉孢菌中还会发生重复序列诱导点突变(RIP)。二者背后的起始因子目前了解甚少。我们解决了一个矛盾的观察结果,即新引入的重复-连接子-重复(R-L-R)构建体仅需RID就能发生RIP,而基因组重复序列在没有RID的情况下也能发生RIP,这表明常染色质和异染色质重复序列的处理方式不同,后者还需要DIM-2。与较新和较旧重复序列相关的机制差异提醒我们,不要从模型实验系统推断出的机制进行外推。此外,虽然染色质状态会影响RIP,但我们还表明,当RID与LexA拴系时,它会以依赖HDA-1的方式作为从常染色质向异染色质转变的成核中心。相比之下,组成型异染色质在很大程度上不依赖HDA1,而是依赖HDA-1旁系同源物。因此,RID是RIP以及向异染色质转变的双功能起始因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0ad/11969663/02144a873bb2/gkaf263figgra1.jpg

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