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mBAND and mFISH analysis of chromosomal aberrations and breakpoint distribution in chromosome 1 of AG01522 human fibroblasts that were exposed to radiation of different qualities.

Authors :
Berardinelli, F.
De Vitis, M.
Nieri, D.
Cherubini, R.
De Nadal, V.
Gerardi, S.
Tanzarella, C.
Sgura, A.
Antoccia, A.
Source :
Mutation Research - Genetic Toxicology & Environmental Mutagenesis. Nov2015, Vol. 793, p55-63. 9p.
Publication Year :
2015

Abstract

High-resolution multicolour banding FISH (mBAND) and multiplex FISH (mFISH) were used to analyse the aberrations of chromosome 1 in irradiated-AG01522 human primary fibroblasts. The cells were exposed to 1 Gy of a panel of radiation of different qualities, such as X-rays, low-energy protons (28 keV/μm), helium-ions (62 keV/μm) and carbon-ions (96 and 252 keV/μm). mBAND and mFISH analysis in calyculin-A G2-condensed chromosome spreads allowed us to detect intra- and interchromosome aberrations involving chromosome 1, including simple and complex-type exchanges, inversions (both para- and pericentric ones), deletions and rings. The data indicate that the induction of chromosomal exchanges was influenced by both Linear energy transfer (LET) and particle types. Moreover, the complex-to-simple exchanges ratio ( C -ratio) and interchromosome to intrachromosome exchanges ratio ( F -ratio) were evaluated by mFISH and mBAND techniques, respectively. Our results indicate that the C -ratio is a more reliable marker of radiation quality, with values that increased linearly in an LET-dependent manner. In addition, by means of mBAND analysis, the distribution of radiation-induced breakpoints along chromosome 1 was analyzed and compared with the expected distributions of the breaks. The expected values were calculated assuming a random distribution of the breakpoints. The data indicate that, irrespective of the radiation that was used, the breakpoints were non-randomly distributed along chromosome 1. In particular, breaks in the pericentromeric region were encountered at a higher frequency than expected. A deeper analysis revealed that breaks were not located in the constitutive heterochromatin ( G -bands 1p11/1q11 and 1q12), but rather in a region comprised between 1p11.2 and 1p22.1, which includes G -light and G -dark bands. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13835718
Volume :
793
Database :
Academic Search Index
Journal :
Mutation Research - Genetic Toxicology & Environmental Mutagenesis
Publication Type :
Academic Journal
Accession number :
110599281
Full Text :
https://doi.org/10.1016/j.mrgentox.2015.05.012