Nuclear addressing provides a clue for the transforming activity of amino-truncated CCN3 proteins

Nathalie Planque1, Chang Long Li, Simon Saule

  • 1Université Paris7-D. Diderot, UFR de Biochimie, Laboratoire d'Oncologie Virale et Moléculaire, 2 Place Jussieu, 75005 Paris, France. nathalie.planque@paris7.jussieu.fr

Insights

Amino-truncated CCN3 variants, unlike full-length CCN3, localize to the nucleus. The carboxyterminal module drives this nuclear import, suggesting nuclear CCN3 variants regulate transcription and may contribute to oncogenesis.

Area of Science:

  • Cell biology
  • Molecular oncology
  • Developmental biology

Background:

  • CCN3 (Cyr61, Ctgf, Nov) is a secreted protein regulating cell growth and differentiation.
  • CCN3 is implicated in fibrotic diseases and cancers.
  • Amino-truncated CCN3 variants were previously linked to oncogenic transformation.

Purpose of the Study:

  • To investigate the subcellular localization of amino-truncated CCN3 variants.
  • To identify the CCN3 module responsible for nuclear addressing.
  • To explore the role of nuclear CCN3 in transcriptional regulation and oncogenicity.

Main Methods:

  • Analysis of CCN3 variant subcellular localization using cell-based assays.
  • Identification of functional domains within CCN3 responsible for nuclear import.
  • Assessment of nuclear CCN3's impact on transcriptional activity.

Main Results:

  • Amino-truncated CCN3 variants are localized to the nucleus.
  • The carboxyterminal (CT) module of CCN3 mediates nuclear addressing.
  • Nuclear CCN3 variants exhibit transcriptional regulatory functions, with the CT module conferring negative regulation.

Conclusions:

  • Nuclear localization of amino-truncated CCN3 variants is mediated by the CT module.
  • Nuclear CCN3 variants function as transcriptional regulators.
  • The nuclear import of truncated CCN3 may be a key mechanism driving its oncogenic potential.

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