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May 4, 20263 citations

Nuclear speckles: a fundamental layer of gene regulation.

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HNHiroe NambaSMSana MirEGErin L Groce

Key Points

  • This research aims to explore the role of nuclear speckles in gene regulation and their implications for disease.
  • Studies integrating genomics with imaging techniques to visualize nuclear speckles and their interactions with chromatin.
  • Analysis of how nuclear speckles function in various biological processes and diseases.
  • Nuclear speckles are identified as critical structures for gene activation across broad genomic regions.
  • Their involvement in diseases such as cancer and neurodegeneration is emphasized, linking gene expression dysregulation to pathology.

Abstract

Within the cell nucleus, non-DNA structures called nuclear bodies interact with chromatin to regulate gene expression and organize our genetic material. Among nuclear bodies, nuclear speckles are prominent. They interact with broad genomic regions, serve as major gene-activating structures, and are implicated in viral infection, cancer, neurodegeneration, stress response, and development. Advances that integrate genomics with imaging are leading to a deeper understanding of how nuclear speckles fit into our current knowledge of chromatin biology, genome organization, and the central dogma of biology. Collectively, these recent studies emphasize nuclear speckles as key gene regulatory structures within the cell nucleus, offering new perspectives on how gene expression dysregulation is linked to disease.

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Cite This Study

Namba et al. (2026) studied this question.

synapsesocial.com/papers/69f837ab3ed186a739981ea7https://doi.org/10.1016/j.tcb.2026.04.001
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