Simulated Annealing Based Algorithm for Identifying Mutated Driver Pathways in Cancer

With the development of next-generation DNA sequencing technologies, large-scale cancer genomics projects can be implemented to help researchers to identify driver genes, driver mutations, and driver pathways, which promote cancer proliferation in large numbers of cancer patients. Hence, one of the...

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Veröffentlicht in:BioMed research international 2014-01, Vol.2014 (2014), p.1-7
Hauptverfasser: Li, Hai-Tao, Zhang, Yu-Lang, Zheng, Chun-Hou, Wang, Hong-Qiang
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Sprache:eng
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Zusammenfassung:With the development of next-generation DNA sequencing technologies, large-scale cancer genomics projects can be implemented to help researchers to identify driver genes, driver mutations, and driver pathways, which promote cancer proliferation in large numbers of cancer patients. Hence, one of the remaining challenges is to distinguish functional mutations vital for cancer development, and filter out the unfunctional and random “passenger mutations.” In this study, we introduce a modified method to solve the so-called maximum weight submatrix problem which is used to identify mutated driver pathways in cancer. The problem is based on two combinatorial properties, that is, coverage and exclusivity. Particularly, we enhance an integrative model which combines gene mutation and expression data. The experimental results on simulated data show that, compared with the other methods, our method is more efficient. Finally, we apply the proposed method on two real biological datasets. The results show that our proposed method is also applicable in real practice.
ISSN:2314-6133
2314-6141
DOI:10.1155/2014/375980