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Messenger RNA and MicroRNA transcriptomic signatures of cardiometabolic risk factors

David D. McManus, Jian Rong, Tianxiao Huan, Seán Lacey, Kahraman Tanrıverdi, Peter J. Munson, Martin G. Larson, Roby Joehanes, Venkatesh L. Murthy, Ravi V. Shah, Jane E. Freedman, Daniel Levy

BMC Genomics · 2017 · ▲ 42 citations

Abstract

BACKGROUND: Cardiometabolic (CM) risk factors are heritable and cluster in individuals. We hypothesized that CM risk factors are associated with multiple shared and unique mRNA and microRNA (miRNA) signatures. We examined associations of mRNA and miRNA levels with 6 CM traits: body mass index, HDL-cholesterol and triglycerides, fasting glucose, and systolic and diastolic blood pressures through cross-sectional analysis of 2812 Framingham Heart Study who had whole blood collection for RNA isolation for mRNA and miRNA expression studies and who consented to genetic research. We excluded participants taking medication for hypertension, dyslipidemia, or diabetes. We measured mRNA (n = 17,318; using the Affymetrix GeneChip Human Exon 1.0 ST Array) and miRNA (n = 315; using qRT-PCR) expression in whole blood. We used linear regression for mRNA analyses and a combination of linear and logistic regression for miRNA analyses. We conducted miRNA-mRNA coexpression and gene ontology enrichment analyses to explore relations between pleiotropic miRNAs, mRNA expression, and CM trait clustering. RESULTS: We identified hundreds of significant associations between mRNAs, miRNAs, and individual CM traits. Four mRNAs (FAM13A, CSF2RB, HIST1H2AC, WNK1) were associated with all 6 CM traits (FDR < 0.001) and four miRNAs (miR-197-3p, miR-328, miR-505-5p, miR-145-5p) were associated with four CM traits (FDR < 0.05). Twelve mRNAs, including WNK1, that were coexpressed with the four most pleiotropic miRNAs, were also miRNA targets. mRNAs coexpressed with pleiotropic miRNAs were enriched for RNA metabolism (miR-505-5p), ubiquitin-dependent protein catabolism (miR-197-3p, miR-328) and chromatin assembly (miR-328). CONCLUSIONS: We identified mRNA and miRNA signatures of individual CM traits and their clustering. Implicated transcripts may play causal roles in CM risk or be downstream consequences of CM risk factors on the transcriptome. Studies are needed to establish whether or not pleiotropic circulating transcripts illuminate causal pathways for CM risk.

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Provenance

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OpenAlex
DOI
10.1186/s12864-017-3533-9
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2026-07-28 MST

Cite this

APA
McManus, D.D., Rong, J., Huan, T., Lacey, S., Tanrıverdi, K., Munson, P.J., Larson, M.G., Joehanes, R., Murthy, V.L., Shah, R.V., Freedman, J.E., &amp; Levy, D. (2017). Messenger RNA and MicroRNA transcriptomic signatures of cardiometabolic risk factors. <em>BMC Genomics</em>. https://doi.org/10.1186/s12864-017-3533-9
Vancouver
McManus DD, Rong J, Huan T, Lacey S, Tanrıverdi K, Munson PJ, et al. Messenger RNA and MicroRNA transcriptomic signatures of cardiometabolic risk factors. BMC Genomics. 2017. doi:10.1186/s12864-017-3533-9.
BibTeX
@article{david2017Messen, title = {Messenger RNA and MicroRNA transcriptomic signatures of cardiometabolic risk factors}, author = {David D. McManus and Jian Rong and Tianxiao Huan and Seán Lacey and Kahraman Tanrıverdi and Peter J. Munson and Martin G. Larson and Roby Joehanes and Venkatesh L. Murthy and Ravi V. Shah and Jane E. Freedman and Daniel Levy}, journal = {BMC Genomics}, year = {2017}, doi = {10.1186/s12864-017-3533-9}, }

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