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June 14, 20260 citationsOpen Access

High-resolution nuclear cell biology by cryo-electron tomography

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ZKZanetta KechagiaOMOhad Medalia

Key Points

  • The aim is to explore how cryo-electron tomography enhances our understanding of nuclear biology and its functions.
  • Review of previous studies employing cryo-electron tomography for high-resolution imaging of nuclear structures.
  • Analysis of nuclear architecture, chromatin organization, and nuclear pore complex dynamics.
  • Cryo-electron tomography provides three-dimensional views of nuclear architecture at sub-nanometer resolution.
  • Insights gained have resolved debates regarding nuclear structure-function relationships.
  • Linkages between macromolecular assemblies and essential nuclear processes are better understood.

Abstract

The nucleus is a structurally diverse and dynamic organelle that anchors chromatin and orchestrates a large number of essential processes, including transcription, replication, ribosome biogenesis, and nucleocytoplasmic transport. Understanding how nuclear macromolecular assemblies are organized and coordinate these processes requires high-resolution imaging methods, capable of achieving sub-molecular resolution while preserving native cellular structures. Cryo-electron tomography (cryo-ET) now provides unprecedented three-dimensional views of nuclear architecture , up to sub-nanometer resolution. In this review, we discuss how cryo-ET has reshaped our understanding of nuclear biology including chromatin organization, nuclear pore complex (NPC) architecture and dynamics, and chromatin - lamina interactions. We highlight how these insights have resolved long-standing debates in biology, linked nuclear structure to function, and set the stage for future developments that will bridge molecular and cellular scales.

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Cite This Study

Kechagia et al. (2026) studied this question.

synapsesocial.com/papers/6a2e4779b1cc60ccdea8bf8chttps://doi.org/10.5167/uzh-434471
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