Literature DB >> 29579312

TGMI: an efficient algorithm for identifying pathway regulators through evaluation of triple-gene mutual interaction.

Chathura Gunasekara1,2, Kui Zhang3, Wenping Deng1, Laura Brown4, Hairong Wei1,2,4,5,6.   

Abstract

Despite their important roles, the regulators for most metabolic pathways and biological processes remain elusive. Presently, the methods for identifying metabolic pathway and biological process regulators are intensively sought after. We developed a novel algorithm called triple-gene mutual interaction (TGMI) for identifying these regulators using high-throughput gene expression data. It first calculated the regulatory interactions among triple gene blocks (two pathway genes and one transcription factor (TF)), using conditional mutual information, and then identifies significantly interacted triple genes using a newly identified novel mutual interaction measure (MIM), which was substantiated to reflect strengths of regulatory interactions within each triple gene block. The TGMI calculated the MIM for each triple gene block and then examined its statistical significance using bootstrap. Finally, the frequencies of all TFs present in all significantly interacted triple gene blocks were calculated and ranked. We showed that the TFs with higher frequencies were usually genuine pathway regulators upon evaluating multiple pathways in plants, animals and yeast. Comparison of TGMI with several other algorithms demonstrated its higher accuracy. Therefore, TGMI will be a valuable tool that can help biologists to identify regulators of metabolic pathways and biological processes from the exploded high-throughput gene expression data in public repositories.

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Year:  2018        PMID: 29579312      PMCID: PMC6009660          DOI: 10.1093/nar/gky210

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  82 in total

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8.  Coloring genetically modified soybean grains with anthocyanins by suppression of the proanthocyanidin genes ANR1 and ANR2.

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9.  REST maintains self-renewal and pluripotency of embryonic stem cells.

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4.  Transcriptional regulation of proanthocyanidin biosynthesis pathway genes and transcription factors in Indigofera stachyodes Lindl. roots.

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Journal:  BMC Plant Biol       Date:  2022-09-13       Impact factor: 5.260

5.  Identification of biological pathway and process regulators using sparse partial least squares and triple-gene mutual interaction.

Authors:  Junyan Hong; Chathura Gunasekara; Cheng He; Sanzhen Liu; Jianqin Huang; Hairong Wei
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  5 in total

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