Micronuclei as biomarkers of DNA damage, aneuploidy, inducers of chromosomal hypermutation and as sources of pro-inflammatory DNA in humans.


Journal

Mutation research. Reviews in mutation research
ISSN: 1388-2139
Titre abrégé: Mutat Res Rev Mutat Res
Pays: Netherlands
ID NLM: 101632211

Informations de publication

Date de publication:
Historique:
received: 22 07 2020
accepted: 19 10 2020
entrez: 19 12 2020
pubmed: 20 12 2020
medline: 4 2 2021
Statut: ppublish

Résumé

Micronuclei (MNi) are among the most widely studied biomarkers of DNA damage and chromosomal instability in humans. They originate from chromosome fragments or intact chromosomes that are not included in daughter nuclei during mitosis. The main reasons for their formation are a lack of functional centromere in the chromosome fragments or whole chromosomes or defects in one or more of the proteins of the mitotic system that, consequently, fails to segregate chromosomes properly. Assays have been developed to measure MNi in peripheral blood lymphocytes, red blood cells as well as various types of epithelial cells such as buccal, nasal, urothelial and cervical cells. Some of the assays have been further developed into micronucleus (MN) cytome assays to include additional nuclear anomalies, cell death and nuclear division biomarkers. In addition, the use of molecular probes has been adopted widely for the purpose of understanding the mechanistic origin of MNi. MN assays in humans are used for the purpose of investigating the genotoxic effects of adverse environmental, life-style and occupational factors, genetic susceptibility to DNA damage, and for determining risk of accelerated aging and diseases affected by genomic instability such as developmental defects and cancer. The emerging new knowledge showing that chromosomes trapped in MNi can undergo a high rate of fragmentation and become massively re-arranged have highlighted the possibility that MN formation is not only a biomarker of induced DNA damage but also a mechanism that drives hypermutation. Furthermore, another line of recent research showed that DNA and chromatin leaking from disrupted MNi triggers the innate immune cGAS-STING mechanism that promotes inflammation which can cause a wide-range of age-related diseases if left unresolved. For these reasons, MN assays in humans have become an increasingly important biomarker of disease initiation and progression across all life-stages.

Identifiants

pubmed: 33339572
pii: S1383-5742(20)30062-4
doi: 10.1016/j.mrrev.2020.108342
pii:
doi:

Substances chimiques

Genetic Markers 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

108342

Informations de copyright

Copyright © 2020 Elsevier B.V. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of Competing Interest The authors report no declarations of interest.

Auteurs

Michael Fenech (M)

Clinical and Health Sciences, University of South Australia, Adelaide, SA, 5000, Australia; Genome Health Foundation, North Brighton, SA, 5048, Australia. Electronic address: mf.ghf@outlook.com.

Siegfried Knasmueller (S)

Institute of Cancer Research, Inner Medicine I, Medical University Vienna, Austria.

Claudia Bolognesi (C)

Environmental Carcinogenesis Unit, Ospedale Policlinico San Martino, Genoa, Italy.

Nina Holland (N)

University of California, Berkeley, CA, USA.

Stefano Bonassi (S)

Department of Human Sciences and Quality of Life Promotion, San Raffaele University, Unit of Clinical and Molecular Epidemiology IRCCS San Raffaele Pisana, Rome, Italy.

Micheline Kirsch-Volders (M)

Department of Biology, Vrije Universiteit Brussel, Brussels 1050, Belgium.

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Classifications MeSH