Interpretation of the role of germline and somatic non-coding mutations in cancer: expression and chromatin conformation informed analysis.

Michael Pudjihartono, Jo K Perry, Cris Print, Justin M O'Sullivan, William Schierding

Journal: Clinical epigenetics 2022;14(1):120

PMID: 36171609

Abstract

BACKGROUND

There has been extensive scrutiny of cancer driving mutations within the exome (especially amino acid altering mutations) as these are more likely to have a clear impact on protein functions, and thus on cell biology. However, this has come at the neglect of systematic identification of regulatory (non-coding) variants, which have recently been identified as putative somatic drivers and key germline risk factors for cancer development. Comprehensive understanding of non-coding mutations requires understanding their role in the disruption of regulatory elements, which then disrupt key biological functions such as gene expression.

MAIN BODY

We describe how advancements in sequencing technologies have led to the identification of a large number of non-coding mutations with uncharacterized biological significance. We summarize the strategies that have been developed to interpret and prioritize the biological mechanisms impacted by non-coding mutations, focusing on recent annotation of cancer non-coding variants utilizing chromatin states, eQTLs, and chromatin conformation data.

CONCLUSION

We believe that a better understanding of how to apply different regulatory data types into the study of non-coding mutations will enhance the discovery of novel mechanisms driving cancer.

© 2022. The Author(s).

Address: Liggins Institute, The University of Auckland, Auckland, New Zealand.; The Maurice Wilkins Centre, The University of Auckland, Auckland, New Zealand.; Department of Molecular Medicine and Pathology, School of Medical Sciences, University of Auckland, Auckland, 1142, New Zealand.; Australian Parkinson's Mission, Garvan Institute of Medical Research, Sydney, NSW, Australia.; MRC Lifecourse Epidemiology Unit, University of Southampton, Southampton, UK.; Liggins Institute, The University of Auckland, Auckland, New Zealand. [email protected].; The Maurice Wilkins Centre, The University of Auckland, Auckland, New Zealand. [email protected].
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