Parenclitic network analysis of methylation data for cancer identification
Abstract
We make use of ideas from the theory of complex networks to implement a machine learning classification of human DNA methylation data, that carry signatures of cancer development. The data were obtained from patients with various kinds of cancers and represented as parenclictic networks, wherein nodes correspond to genes, and edges are weighted according to pairwise variation from control group subjects. We demonstrate that for the types of cancer under study, it is possible to obtain a high performance of binary classification between cancer-positive and negative samples based on network measures. Remarkably, an accuracy as high as is achieved with only network topology indices, in a dramatic reduction of complexity from the original gene methylation levels. Moreover, it was found that the parenclictic networks are scale-free in cancer-negative subjects, and deviate from the power-law node degree distribution in cancer. The node centrality ranking and arising modular structure could provide insights into the systems biology of cancer.
Keywords
Cite
@article{arxiv.1506.04421,
title = {Parenclitic network analysis of methylation data for cancer identification},
author = {Alexander Karsakov and Thomas Bartlett and Iosif Meyerov and Alexey Zaikin and Mikhail Ivanchenko},
journal= {arXiv preprint arXiv:1506.04421},
year = {2017}
}
Comments
10 pages, 4 figures