category
NAR
date
Mar 10, 2026
slug
status
Published
summary
创新性构建了基于荧光标记和auxin-inducible degron系统的细胞模型,首次通过时间分辨显微镜技术追踪UFB动态变化,揭示BLM在有丝分裂期通过与PICH和拓扑异构酶协作解析UFB的新机制,并通过单细胞全基因组测序证实其在维持基因组稳定性中的关键作用。
tags
基因编辑
单细胞测序
核酸蛋白工具酶
type
Post
📄 原文题目
Mitotic BLM functions are required to maintain genomic stability
🔗 原文链接
💡 AI 核心解读
创新性构建了基于荧光标记和auxin-inducible degron系统的细胞模型,首次通过时间分辨显微镜技术追踪UFB动态变化,揭示BLM在有丝分裂期通过与PICH和拓扑异构酶协作解析UFB的新机制,并通过单细胞全基因组测序证实其在维持基因组稳定性中的关键作用。
📝 英文原版摘要
<span class="paragraphSection"><div class="boxTitle">Abstract</div>The BLM helicase is a critical genome maintenance protein involved in diverse cellular processes including DNA replication, repair, transcription, and chromosome segregation. During mitosis, it cooperates with the PICH helicase and topoisomerases to resolve ultrafine DNA bridges (UFBs)—nonchromatinized DNA structures that link sister chromatids—through a mechanism that is not yet fully understood. Here, we tagged endogenous BLM and PICH with fluorescent proteins and BLM with an auxin-inducible degron to generate a cell model system that enables temporal tracking of UFB dynamics in the presence or absence of BLM. Time-resolved lattice light sheet microscopy established the dynamic localization patterns of BLM and PICH throughout the cell cycle. While BLM cycles between PML bodies and DNA repair foci in interphase, these structures disappear at the mitotic entry, and BLM then re-associates with chromatin during anaphase to UFBs as well as to CENP-B-positive mitotic foci. Acute BLM depletion during mitosis increased the fraction of unresolved UFBs, micronuclei containing acentric fragments, binucleation, and resulted in subtle genomic abnormalities detected by single-cell whole genome sequencing. These findings highlight a mitosis-specific role for BLM in UFB resolution and underscore its function in preserving genomic stability.</span>
- 作者:NotionNext
- 链接:https://tangly1024.com/article/31f48bd6-1f96-81af-be6c-dfb37233a957
- 声明:本文采用 CC BY-NC-SA 4.0 许可协议,转载请注明出处。
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