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Epigenetic susceptibility of long interspersed nuclear elements-1 | 52585
Journal of Clinical Toxicology

Journal of Clinical Toxicology
Open Access

ISSN: 2161-0495

+44 1478 350008

Epigenetic susceptibility of long interspersed nuclear elements-1 towards arsenic induced DNA damage: A predictive biomarker


4th Global Summit on Toxicology

August 24-26, 2015 Philadelphia, USA

Somnath Paul and Ashok K Giri

Scientific Tracks Abstracts: J Clin Toxicol

Abstract :

Arsenic exposure mainly through drinking water has increased over the years, presently affecting more than 137 million individuals
worldwide. One of the prime facets of arsenic toxicity is disruption of epigenetic profile within the cell, leading to various
outcomes like silencing or activating genes from their normal state of expression. In the field of toxicology, a recent emphasis lies with
the probability of epigenetic alteration and it’s indulgence in DNA damage. Long Interspersed Nuclear Elements (LINE-1) have been
studied as a prospective candidate to understand the global genomic methylation profile. Activity and methylation profile of these
transposable elements have been associated with various forms of cancers as well as genomic stability. Since arsenic exposure yields
a high degree of DNA damage, in our present study we are focusing on the epigenetic risk factor associated with DNA damage and
L1-methylation. A total of 100 arsenic exposed samples were recruited from the district of Murshidabad, West Bengal. Cytogenetic
damage was analyzed using micronucleus (MN) assay from lymphocytes. When the cohort comparison between arsenic exposed
individuals distributed among low, medium and high degree of cytogenetic damage based on the MN frequency, we observed that
there was a positive association (p<0.01) between the lowering of methylation profile of LINE-1 with increase in MN frequency. Our
data suggests a positive influence of LINE-1 methylation may be related to alteration in chromatin landscape, leading to subsequent
genomic instability upon arsenic mediated oxidative DNA damage. LINE-1 methylation hence can be predictive biomarker to
epimutagenic events by arsenic.

Biography :

Somnath Paul has completed his PhD dissertation work in 4.5 years, working as graduate student at CSIR-Indian Institute of Chemical Biology since 2010. He is in the
process of writing his thesis, to be submitted to Jadavpur University. He has done his Bachelors in Physiology, from Presidency College, Kolkata and Masters in Genetics
from University of Calcutta. He has published 7 papers in peer reviewed journals. His major thrust area of research is epigenetics and has future interest in doing research
on epigenetic alterations in human diseases and understands the role of epigenetic mechanisms in various patho-physiological outcomes.

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