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Digital certificate of participation
Official invitation letter after successful registration
E-proceedings & resource materials
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The conference's session tracks effectively support the following SDGs.
This track focuses on the latest technological innovations in epigenomics, including high-throughput sequencing and single-cell epigenetic profiling. Discussions will center on how these advancements enhance our understanding of chromatin dynamics and epigenetic regulation.
This session will explore the role of DNA methylation in gene expression and its implications for cellular function. Researchers will present findings on how alterations in methylation patterns contribute to various biological processes and diseases.
This track examines the diverse roles of histone modifications in shaping chromatin architecture and influencing gene expression. Presentations will highlight the interplay between histone marks and transcriptional regulation.
This session will delve into the molecular mechanisms of chromatin remodeling and its impact on gene accessibility. Participants will discuss the roles of ATP-dependent chromatin remodelers and their implications for epigenetic regulation.
This track focuses on the epigenetic mechanisms that govern developmental processes across various organisms. Researchers will share insights into how epigenetic modifications influence cell fate decisions and tissue differentiation.
This session will explore the significance of nucleosome positioning in regulating gene expression. Presentations will address how nucleosome dynamics affect transcriptional activity and chromatin accessibility.
This track will investigate the role of epigenetic markers as potential biomarkers for various diseases, including cancer and neurodegenerative disorders. Researchers will present data on how epigenetic alterations can inform diagnosis and treatment strategies.
This session will focus on the emerging roles of non-coding RNAs in modulating epigenetic landscapes. Discussions will highlight how these molecules influence chromatin dynamics and gene expression.
This track will examine the relationship between genome architecture and epigenetic modifications. Presentations will explore how three-dimensional genome organization impacts gene regulation and chromatin interactions.
This session will cover methodologies for comprehensive epigenome mapping and profiling across different cell types and conditions. Researchers will discuss the implications of these maps for understanding gene regulation and epigenetic diversity.
This track will explore the functional roles of histone variants in chromatin dynamics and gene regulation. Presentations will highlight how these variants contribute to the complexity of epigenetic regulation and cellular identity.