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January 22, 2026International Journal of Molecular Sciences0 citationsOpen Access

LEM-Domain-Containing Inner Nuclear Membrane Proteins: Emerging Regulators of Intranuclear Signaling

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BLByongsun LeeHLH. J. LeeJSJaeKyung Shim

Key Points

  • The aim is to summarize the roles of LEM-D proteins in intranuclear signaling and their implications for health and disease.
  • Reviewed current literature on LEM-D proteins and their interactions with chromatin and signaling pathways.
  • Analyzed the structural features and functions of LAP2, emerin, and MAN1.
  • Examined the physiological relevance of LEM-D proteins in muscle development and diseases.
  • LEM-D proteins modulate transcription factor activity in various signaling pathways.
  • These proteins retain transcription factors at the inner nuclear membrane, impacting their access to chromatin.
  • Regulated signaling pathways include Hedgehog, Wnt/β-catenin, Notch, and TGF-β.

Abstract

The LAP2–emerin–MAN1-domain (LEM-D) proteins constitute a family of inner nuclear membrane proteins that play essential roles in the spatial regulation of intranuclear signaling. Defined by the conserved LEM domain, these proteins interact with chromatin, nuclear lamins, and barrier-to-autointegration factor (BAF), thereby linking nuclear architecture to signal-dependent transcriptional control. This review summarizes current knowledge on the structural features and molecular functions of representative LEM-D proteins, including LAP2, emerin, and MAN1, with a particular focus on their emerging roles as regulators of intranuclear signaling pathways. We discuss how these proteins modulate the activity of transcription factors involved in Hedgehog, Wnt/β-catenin, STAT3, Notch, and transforming growth factor-β (TGF-β) signaling by temporally retaining them at the inner nuclear membrane and controlling their access to chromatin. Furthermore, this review highlights the physiological and pathological relevance of LEM-D-mediated signaling regulation, especially in the context of muscle development, regeneration, and nuclear envelope-associated diseases such as muscular dystrophies. By integrating structural, signaling, and disease-related perspectives, this review proposes a conceptual framework in which LEM-D proteins function as critical intranuclear signaling hubs. Understanding these mechanisms provides new insights into nuclear signal transduction and suggests potential therapeutic targets for diseases associated with nuclear envelope dysfunction.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/6971bdcf642b1836717e27b4https://doi.org/10.3390/ijms27020942
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