Publications by authors named "Swati Bayyana"

Article Synopsis
  • Human height is primarily determined by genetics, but this study explores how modifiable epigenetic factors, specifically blood DNA methylation, influence child height in low and middle-income countries (LMIC).
  • The research identifies a significant link between DNA methylation in the SOCS3 gene and child height, with findings replicating in a high-income country cohort, showing that this effect is independent of genetic factors.
  • Analysis reveals that SOCS3 methylation explains up to 9.5% of height variance in mid-childhood and is influenced by prenatal maternal folate and socio-economic status, highlighting the potential role of epigenetic modifications in child growth in LMIC.
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Preeclampsia is a placental vascular pathology and hypoxia is known to influence placental angiogenesis. Hypoxia Inducible Factors (HIF1α and HIF3α) mediate the response to cellular oxygen concentration and bind to hypoxia response element of target genes. However the mechanism regulating above activity is not well-understood.

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Background: Genetic variants within nearly 1000 loci are known to contribute to modulation of blood lipid levels. However, the biological pathways underlying these associations are frequently unknown, limiting understanding of these findings and hindering downstream translational efforts such as drug target discovery.

Results: To expand our understanding of the underlying biological pathways and mechanisms controlling blood lipid levels, we leverage a large multi-ancestry meta-analysis (N = 1,654,960) of blood lipids to prioritize putative causal genes for 2286 lipid associations using six gene prediction approaches.

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Introduction: Biosynthesis of long-chain polyunsaturated fatty acids requires sequential activities of desaturases and elongases for conversion of fatty acid precursors to products. The delta-6 desaturase enzyme, encoded by FADS2 gene, is a rate limiting enzyme in this pathway. Alterations in D6D enzyme activity can lead to altered fatty acid profiles.

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