Related Experiment Video
Updated: Aug 9, 2026

Heterokaryon Technique for Analysis of Cell Type-specific Localization
Published on: March 11, 2011
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
Abstract:
CCN3 is a founding member of the CCN (Cyr61, Ctgf, Nov) family of cell growth and differentiation regulators. These secreted proteins are key regulators in embryonic development, and are associated with severe pathologies including fibrotic diseases and cancers. CCN3 was discovered as a MAV integration site in an avian nephroblastoma. Previous work established that the amino-truncated protein expressed in this tumor was inducing morphological transformation of chicken embryo fibroblasts, whereas the full-length secreted CCN3 protein was inhibiting cell growth. Amino-truncated variants were identified in cancer cell lines. Since the lack of signal peptide was expected to alter the fate of the truncated proteins, we hypothesized that modifications of CCN3 subcellular addressing could be responsible for the oncogenic activities of CCN3. The CCN proteins are composed of four structural modules (IGFBP, TSP1, VWC, and CT). We report that amino-truncated variants of CCN3 are addressed to the nucleus and that the carboxyterminal (CT) module of CCN3 is responsible for the nuclear addressing. Furthermore, our data identify nuclear CCN3 variants as potential transcriptional regulators. In this context, the CT module confers on nuclear CCN3 proteins a negative regulatory effect on transcription. We propose that the nuclear localization of amino-truncated CCN3 proteins be correlated to oncogenicity.
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.
Related Concept Videos
Nuclear Protein Sorting
Proteins targeted to the nucleus carry nuclear localization signals or NLS recognized by import receptors in the cytosol. Similarly, proteins with nuclear export signals are recognized by export receptors. Import and export receptors are...
Nuclear Localization Signals and Import
Regulation of Nuclear Protein Sorting
Nuclear Export
NES are of three types- the canonical 10-residue long leucine-rich signal and other...
Nuclear Export of mRNA
Nuclear Export of mRNA