Literature DB >> 26247157

Contrasting mechanisms of de novo copy number mutagenesis suggest the existence of different classes of environmental copy number mutagens.

Hailey N Conover1, Juan Lucas Argueso1.   

Abstract

While gene copy number variations (CNVs) are abundant in the human genome, and often are associated with disease consequences, the mutagenic pathways and environmental exposures that cause these large structural mutations are understudied relative to conventional nucleotide substitutions in DNA. The members of the environmental mutagenesis community are currently seeking to remedy this deficiency, and there is a renewed interest in the development of mutagenicity assays to identify and characterize compounds that may induce de novo CNVs in humans. To achieve this goal, it is critically important to acknowledge that CNVs exist in two very distinct classes: nonrecurrent and recurrent CNVs. The goal of this commentary is to emphasize the deep contrasts that exist between the proposed pathways that lead to these two mutation classes. Nonrecurrent de novo CNVs originate primarily in mitotic cells through replication-dependent DNA repair pathways that involve microhomologies (<10 bp), and are detected at higher frequency in children of older fathers. In contrast, recurrent de novo CNVs are most often formed in meiotic cells through homologous recombination between nonallelic large low-copy repeats (>10,000 bp), without an associated paternal age effect. Given the biological differences between the two CNV classes, it is our belief that nonrecurrent and recurrent CN mutagens will probably differ substantially in their modes of action. Therefore, each CNV class may require their own uniquely designed assays, so that we as a field may succeed in uncovering the broadest possible spectrum of environmental CN mutagens.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  CNV; germline; meiosis

Mesh:

Substances:

Year:  2015        PMID: 26247157     DOI: 10.1002/em.21967

Source DB:  PubMed          Journal:  Environ Mol Mutagen        ISSN: 0893-6692            Impact factor:   3.216


  4 in total

Review 1.  Guidelines for DNA recombination and repair studies: Cellular assays of DNA repair pathways.

Authors:  Hannah L Klein; Giedrė Bačinskaja; Jun Che; Anais Cheblal; Rajula Elango; Anastasiya Epshtein; Devon M Fitzgerald; Belén Gómez-González; Sharik R Khan; Sandeep Kumar; Bryan A Leland; Léa Marie; Qian Mei; Judith Miné-Hattab; Alicja Piotrowska; Erica J Polleys; Christopher D Putnam; Elina A Radchenko; Anissia Ait Saada; Cynthia J Sakofsky; Eun Yong Shim; Mathew Stracy; Jun Xia; Zhenxin Yan; Yi Yin; Andrés Aguilera; Juan Lucas Argueso; Catherine H Freudenreich; Susan M Gasser; Dmitry A Gordenin; James E Haber; Grzegorz Ira; Sue Jinks-Robertson; Megan C King; Richard D Kolodner; Andrei Kuzminov; Sarah Ae Lambert; Sang Eun Lee; Kyle M Miller; Sergei M Mirkin; Thomas D Petes; Susan M Rosenberg; Rodney Rothstein; Lorraine S Symington; Pawel Zawadzki; Nayun Kim; Michael Lisby; Anna Malkova
Journal:  Microb Cell       Date:  2019-01-07

2.  Mutagenicity assessment downstream of oil and gas produced water discharges intended for agricultural beneficial reuse.

Authors:  Molly C McLaughlin; Jens Blotevogel; Ruth A Watson; Baylee Schell; Tamzin A Blewett; Erik J Folkerts; Greg G Goss; Lisa Truong; Robyn L Tanguay; Juan Lucas Argueso; Thomas Borch
Journal:  Sci Total Environ       Date:  2020-01-25       Impact factor: 7.963

3.  Small de novo CNVs as biomarkers of parental exposure to low doses of ionizing radiation of caesium-137.

Authors:  Emília Oliveira Alves Costa; Irene Plaza Pinto; Macks Wendhell Gonçalves; Juliana Ferreira da Silva; Lorraynne Guimarães Oliveira; Alex Silva da Cruz; Daniela de Melo E Silva; Cláudio Carlos da Silva; Rinaldo Wellerson Pereira; Aparecido Divino da Cruz
Journal:  Sci Rep       Date:  2018-04-12       Impact factor: 4.379

Review 4.  DNA Copy Number Variations as Markers of Mutagenic Impact.

Authors:  Galina Hovhannisyan; Tigran Harutyunyan; Rouben Aroutiounian; Thomas Liehr
Journal:  Int J Mol Sci       Date:  2019-09-24       Impact factor: 5.923

  4 in total

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