Published 2023
Table of Contents:
“...Conserved sequences and chromatin features
aid in the identification of regulatory elements -- Sequence conservation and characteristic motifs -- Chromatin features -- Emergent approaches for the identification of regulatory elements --
Computational methods for harnessing epigenomic
data sets to predict regulatory elements -- Epigenetic
programming in perinatal and early development -- Switching chromatin states-dynamic epigenomic landscape at developmental cis-regulatory elements -- Trans-regulatory networks govern stem cell pluripotency and differentiation -- Regulatory elements in early development inform adult health and disease states -- Conclusion -- References -- 4 -- Genomic imprinting and developmental physiology: intrauterine growth and postnatal period -- Genomic imprinting: discovery and early work -- Imprinted gene functions converge on neuronal and metabolic
processes that govern early development: The cost of altered im ... -- Genomic imprinting-mediated control of fetal growth and placental resources -- Genomic imprinting and human imprinting disorders -- Imprinted genes regulate multiple maternal-fetal interactions and are essential for early survival -- Postnatal control of growth and development is mediated by imprinted genes via key metabolic systems and is crucial for pre ... -- Final comments -- References -- 5 -- Role of RNA epigenetics in development -- Introduction -- RNA modifications -- RNA N6-methyladenosine modification (m6A) -- RNA 5-methylcytosine (m5C) modification -- RNA A-to-I editing -- Role of RNA modifications in development -- Conclusion and future perspective -- References -- 2 -- Epigenetic
programming of placenta regulatesshort-term and long-term health outcomes -- 6 -- Epigenetic regulation of placental function -- Introduction -- Epigenetic regulation during placentation....
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