Sites of chromosomal instability in the context of nuclear architecture and function

Author:

Pentzold ConstanzeORCID,Kokal Miriam,Pentzold Stefan,Weise Anja

Abstract

AbstractChromosomal fragile sites are described as areas within the tightly packed mitotic chromatin that appear as breaks or gaps mostly tracing back to a loosened structure and not a real nicked break within the DNA molecule. Most facts about fragile sites result from studies in mitotic cells, mainly during metaphase and mainly in lymphocytes. Here, we synthesize facts about the genomic regions that are prone to form gaps and breaks on metaphase chromosomes in the context of interphase. We conclude that nuclear architecture shapes the activity profile of the cell, i.e. replication timing and transcriptional activity, thereby influencing genomic integrity during interphase with the potential to cause fragility in mitosis. We further propose fragile sites as examples of regions specifically positioned in the interphase nucleus with putative anchoring points at the nuclear lamina to enable a tightly regulated replication–transcription profile and diverse signalling functions in the cell. Consequently, fragility starts before the actual display as chromosomal breakage in metaphase to balance the initial contradiction of cellular overgrowth or malfunctioning and maintaining diversity in molecular evolution.

Funder

Interdisziplinäres Zentrum für Klinische Forschung, Universitätsklinikum Jena

Universitätsklinikum Jena

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Cellular and Molecular Neuroscience,Pharmacology,Molecular Biology,Molecular Medicine

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The Nuclear Envelope in Ageing and Progeria;Biochemistry and Cell Biology of Ageing: Part III Biomedical Science;2023

2. Chromosomal Instability, Selection and Competition: Factors That Shape the Level of Karyotype Intra-Tumor Heterogeneity;Cancers;2022-10-12

3. Cytogenetics;Reference Module in Life Sciences;2022

4. Breaking the paradigm: early insights from mammalian DNA breakomes;The FEBS Journal;2021-05

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