Please use this identifier to cite or link to this item: https://doi.org/10.1038/jhg.2014.63
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dc.titleAlterations to DNA methylation and expression of CXCL14 are associated with suboptimal birth outcomes
dc.contributor.authorCheong C.Y.
dc.contributor.authorChng K.
dc.contributor.authorLim M.K.
dc.contributor.authorAmrithraj A.I.
dc.contributor.authorJoseph R.
dc.contributor.authorSukarieh R.
dc.contributor.authorChee Tan Y.
dc.contributor.authorChan L.
dc.contributor.authorTan J.H.
dc.contributor.authorChen L.
dc.contributor.authorPan H.
dc.contributor.authorHolbrook J.D.
dc.contributor.authorMeaney M.J.
dc.contributor.authorSeng Chong Y.
dc.contributor.authorGluckman P.D.
dc.contributor.authorStünkel W.
dc.date.accessioned2021-01-27T08:40:31Z
dc.date.available2021-01-27T08:40:31Z
dc.date.issued2014
dc.identifier.citationCheong C.Y., Chng K., Lim M.K., Amrithraj A.I., Joseph R., Sukarieh R., Chee Tan Y., Chan L., Tan J.H., Chen L., Pan H., Holbrook J.D., Meaney M.J., Seng Chong Y., Gluckman P.D., Stünkel W. (2014). Alterations to DNA methylation and expression of CXCL14 are associated with suboptimal birth outcomes. Journal of human genetics 59 (9) : 504 - 511. ScholarBank@NUS Repository. https://doi.org/10.1038/jhg.2014.63
dc.identifier.issn1435232X
dc.identifier.urihttps://scholarbank.nus.edu.sg/handle/10635/185885
dc.description.abstractCXCL14 is a chemokine that has previously been implicated in insulin resistance in mice. In humans, the role of CXCL14 in metabolic processes is not well established, and we sought to determine whether CXCL14 is a risk susceptibility gene important in fetal programming of metabolic disease. For this purpose, we investigated whether CXCL14 is differentially regulated in human umbilical cords of infants with varying birth weights. We found an elevated expression of CXCL14 in human low birth weight (LBW) cords, as well as in cords from nutritionally restricted Macaca fascicularis macaques. To further analyze the regulatory mechanisms underlying the expression of CXCL14, we examined CXCL14 in umbilical cord-derived mesenchymal stem cells (MSCs) that provide an in vitro cell-based system amenable to experimental manipulation. Using both whole frozen cords and MSCs, we determined that site-specific CpG methylation in the CXCL14 promoter is associated with altered expression, and that changes in methylation are evident in LBW infant-derived umbilical cords that may indicate future metabolic compromise through CXCL14.
dc.sourceScopus
dc.typeArticle
dc.contributor.departmentBIOCHEMISTRY
dc.contributor.departmentMICROBIOLOGY AND IMMUNOLOGY
dc.contributor.departmentOBSTETRICS & GYNAECOLOGY
dc.contributor.departmentPAEDIATRICS
dc.contributor.departmentDUKE-NUS MEDICAL SCHOOL
dc.description.doi10.1038/jhg.2014.63
dc.description.sourcetitleJournal of human genetics
dc.description.volume59
dc.description.issue9
dc.description.page504 - 511
dc.description.seriesGUSTO (Growing up towards Healthy Outcomes)
dc.published.statePublished
dc.grant.idNMRC/TCR/004-NUS/2008
dc.grant.idNMRC/TCR/012-NUHS/2014
dc.grant.fundingagencyNational Medical Research Council
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