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February 2, 2026Biochemistry and Cell Biology0 citations

Sox2 Transcriptional Regulation by Enhancer Elements: A Comprehensive Review With a Unified Enhancer Nomenclature

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MCMariia CherednychenkoNGNatalia A GajewskaJMJennifer A. Mitchell

Key Points

  • To clarify the regulatory mechanisms controlling SOX2 expression through enhancer elements.
  • Reviewed existing literature on SOX2 enhancer activity across species and tissues.
  • Collected data on predicted and validated SOX2 enhancers from various studies.
  • Proposed a unified nomenclature for enhancers based on their distance from the SOX2 transcription start site.
  • Identified numerous SOX2 enhancers with varying levels of evidence for their activity.
  • Highlighted the inconsistency in enhancer nomenclature across studies.
  • Emphasized the importance of a unified naming system to facilitate better communication and understanding.

Abstract

Transcription factor SOX2 is essential for a number of biological processes, including mammalian nervous system development and adult brain stem cell maintenance. Expression of this gene requires precise control by a complex network of regulatory elements, which still remains poorly understood. Years of research by different groups have generated a large amount of data on multiple SOX2 enhancers, with varying levels of evidence for their activity across species and tissues. However, the volume of information in the field and inconsistent nomenclature, with the same enhancer referred to by different study-specific names, make understanding progress in SOX2 enhancer regulation challenging. In this review, we brought together current knowledge on predicted and experimentally validated SOX2 enhancers, highlighting links between conserved elements studied in different species. We also propose a unified enhancer naming system based on the distance from the SOX2 transcription start site in the genome of interest, aiming to improve consistency and make communication in the field more straightforward.

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Cite This Study

Cherednychenko et al. (2026) studied this question.

synapsesocial.com/papers/6980ffe7c1c9540dea812d2chttps://doi.org/10.1139/bcb-2025-0375
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Early neural specification of stem cells is mediated by a set of SOX2-dependent neural-associated enhancers2024 · 18 citations
  2. 2Construction of developmental lineage relationships in the mouse mammary gland by single-cell RNA profiling2017 · 208 citations
  3. 3Extensive Promoter-Centered Chromatin Interactions Provide a Topological Basis for Transcription Regulation2012 · 1,348 citations
  4. 4Epigenetic reprogramming of a distal developmental enhancer cluster drives SOX2 overexpression in breast and lung adenocarcinoma2023 · 22 citations
  5. 5The Pou5f1/Pou3f-dependent but SoxB-independent regulation of conserved enhancer N2 initiates Sox2 expression during epiblast to neural plate stages in vertebrates2010 · 76 citations