Evidence map›Paper›PMID 40038581›Full record

ArticleBMC bioinformatics2025

Dual-approach co-expression analysis framework (D-CAF) enables identification of novel circadian co-regulation from multi-omic timeseries data.

Joshua Chuah, Carmalena V Cordi, Juergen Hahn, Jennifer M Hurley

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Article in BMC bioinformatics, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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4 · The record

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5 · Who and what money

Authors and funding

4 authors.

Joshua ChuahDepartment of Electrical, Computer, and Biomedical Engineering, Union College, 807 Union St, Schenectady, NY, 12308, USA. chuahj@union.edu.
Carmalena V CordiDepartment of Biological Sciences, Rensselaer Polytechnic Institute, 110 8th St, Troy, NY, 12180, USA.
Juergen HahnDepartment of Biomedical Engineering, Rensselaer Polytechnic Institute, 110 8th St, Troy, NY, 12180, USA.
Jennifer M HurleyDepartment of Biomedical Engineering, Rensselaer Polytechnic Institute, 110 8th St, Troy, NY, 12180, USA. hurlej2@rpi.edu.

Funding

Investigating Circadian Post-Transcriptional Regulation using Widefield Microscopy.R35GM128687 · NIGMS · RENSSELAER POLYTECHNIC INSTITUTE · PI Jennifer Marie Hurley · 2018 to 2026
$4.0M
Multiscale Modeling of Circadian RhythmsU01EB022546 · NIBIB · BATTELLE PACIFIC NORTHWEST LABORATORIES · PI CANNON, WILLIAM R, DUNLAP, JAY C. · 2016 to 2019
$2.3M
Predoctoral Training Program for Alzheimer’s Disease at the Interface of Data Science, Engineering and BiologyT32AG078123 · NIA · RENSSELAER POLYTECHNIC INSTITUTE · PI Chunyu Wang · 2023 to 2026
$974k
National Science Foundation 2045674NIA NIH HHS T32 AG078123NIA NIH HHS T32AG078123NIBIB NIH HHS U01EB02254NIBIB NIH HHS U01 EB022546NIGMS NIH HHS R35 GM128687NIGMS NIH HHS R35GM128687
6 · The paper itself

Abstract

backgroundThe circadian clock is a central driver of many biological and behavioral processes, regulating the levels of many genes and proteins, termed clock controlled genes and proteins (CCGs/CCPs), to impart biological timing at the molecular level. While transcriptomic and proteomic data has been analyzed to find potential CCGs and CCPs, multi-omic modeling of circadian data, which has the potential to enhance the understanding of circadian control of biological timing, remains relatively rare due to several methodological hurdles. To address this gap, a dual-approach co-expression analysis framework (D-CAF) was created to perform co-expression analysis that is robust to Gaussian noise perturbations on time-series measurements of both transcripts and proteins.

resultsApplying this D-CAF framework to previously gathered transcriptomic and proteomic data from mouse macrophages gathered over circadian time, we identified small, highly significant clusters of oscillating transcripts and proteins in the unweighted similarity matrices and larger, less significant clusters of of oscillating transcripts and proteins using the weighted similarity network. Functional enrichment analysis of these clusters identified novel immunological response pathways that appear to be under circadian control.

conclusionsOverall, our findings suggest that D-CAF is a tool that can be used by the circadian community to integrate multi-omic circadian data to improve our understanding of the mechanisms of circadian regulation of molecular processes.

Indexed as

Circadian ClocksCircadian RhythmComputational BiologyGene Expression ProfilingAnimalsGene Expression RegulationMacrophagesMiceMultiomicsProteomicsTranscriptomeCircadianClusteringCo-expressionCo-regulationMulti-omicsNetwork analysisProteomicsRobustnessTranscriptomics

Identifiers

PMID40038581
PMCPMC11881278

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.