4.6 Article

Fragile sites, dysfunctional telomere and chromosome fusions: What is 5S rDNA role?

Journal

GENE
Volume 608, Issue -, Pages 20-27

Publisher

ELSEVIER
DOI: 10.1016/j.gene.2017.01.013

Keywords

Robertsonian fusion; Telomeric instability; 5S rRNA structure; Pseudogene; FISH

Funding

  1. CNN (Conselho Nacional de Desenvolvimento Cientifico e Tecnologico) [472095/2013-7]
  2. SETI - PR (Secretaria de Ciencia e Tecnologia do Estado do Parana) [243/2014]
  3. Fundacao Araucaria (Fundacao Araucaria de Apoio ao Desenvolvimento Cientifico e Tecnologico do Estado do Parana) [38105.41335985.13042013]

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Repetitive DNA regions are known as fragile chromosomal sites which present a high flexibility and low stability. Our focus was characterize fragile sites in 5S rDNA regions. The Ancistrus sp. species shows a diploid number of 50 and an indicative Robertsonian fusion at chromosomal pair 1. Two sequences of 5S rDNA were identified: 5S.1 rDNA and 5S.2 rDNA. The first sequence gathers the necessary structures to gene expression and shows a functional secondary structure prediction. Otherwise, the 5S.2 rDNA sequence does not contain the upstream sequences that are required to expression, furthermore its structure prediction reveals a nonfunctional ribosomal RNA. The chromosomal mapping revealed several 55.1 and 5S.2 rDNA clusters. In addition, the 5S.2 rDNA clusters were found in acrocentric and metacentric chromosomes proximal regions. The pair 1 5S.2 rDNA cluster is co-located with interstitial telomeric sites (ITS). Our results indicate that its clusters are hotspots to chromosomal breaks. During the meiotic prophase bouquet arrangement, double strand breaks (DSBs) at proximal 5S.2 rDNA of acrocentric chromosomes could lead to homologous and non-homologous repair mechanisms as Robertsonian fusions. Still, ITS sites provides chromosomal instability, resulting in telomeric recombination via TRF2 shelterin protein and a series of breakage-fusion-bridge cycles. Our proposal is that 5S rDNA derived sequences, act as chromosomal fragile sites in association with some chromosomal rearrangements of Loricariidae. (C) 2017 Elsevier B.V. All rights reserved.

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