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Updated: Jun 23, 2026

Characterization of Cell Membrane Extensions and Studying Their Roles in Cancer Cell Adhesion Dynamics
Published on: March 26, 2018
AND-34/BCAR3 regulates adhesion-dependent p130Cas serine phosphorylation and breast cancer cell growth pattern
Anthony Makkinje1, Richard I Near, Giuseppe Infusini
1Department of Medicine, Section of Hematology and Oncology, Boston Medical Center, Boston, Massachusetts 02118, USA.
Abstract:
NSP protein family members associate with p130Cas, a focal adhesion adapter protein best known as a Src substrate that integrates adhesion-related signaling. Over-expression of AND-34/BCAR3/NSP2 (BCAR3), but not NSP1 or NSP3, induces anti-estrogen resistance in human breast cancer cell lines. BCAR3 over-expression in epithelial MCF-7 cells augments levels of a phosphorylated p130Cas species that migrates more slowly on SDS-PAGE while NSP1 and NSP3 induce modest or no phosphorylation, respectively. Conversely, reduction in BCAR3 expression in mesenchymal MDA-231 cells by inducible shRNA results in loss of such p130Cas phosphorylation. Replacement of NSP3's serine/proline-rich domain with that of AND-34/BCAR3 instills the ability to induce p130Cas phosphorylation. Phospho-amino acid analysis demonstrates that BCAR3 induces p130Cas serine phosphorylation. Mass spectrometry identified phosphorylation at p130Cas serines 139, 437 and 639. p130Cas serine phosphorylation accumulates for several hours after adhesion of MDA-231 cells to fibronectin and is dependent upon BCAR3 expression. BCAR3 knockdown alters p130Cas localization and converts MDA-231 growth to an epithelioid pattern characterized by striking cohesiveness and lack of cellular projections at colony borders. These studies demonstrate that BCAR3 regulates p130Cas serine phosphorylation that is adhesion-dependent, temporally distinct from previously well-characterized rapid Fak and Src kinase-mediated p130Cas tyrosine phosphorylation and that correlates with invasive phenotype.
Insights
The BCAR3 protein regulates p130Cas serine phosphorylation, which is linked to breast cancer cell invasiveness and anti-estrogen resistance. This phosphorylation is adhesion-dependent and distinct from other known p130Cas modifications.
Area of Science:
- Cell Biology
- Molecular Oncology
- Signal Transduction
Background:
- p130Cas is a focal adhesion adapter protein involved in adhesion-related signaling.
- NSP protein family members interact with p130Cas.
- BCAR3 (NSP2) overexpression is linked to anti-estrogen resistance in breast cancer.
Purpose of the Study:
- To investigate the role of BCAR3 in p130Cas phosphorylation.
- To determine the specific sites and regulation of BCAR3-induced p130Cas phosphorylation.
- To correlate BCAR3-mediated p130Cas phosphorylation with cancer cell phenotype.
Main Methods:
- Overexpression and knockdown of BCAR3 in human breast cancer cell lines (MCF-7, MDA-231).
- SDS-PAGE and phospho-amino acid analysis to detect p130Cas phosphorylation.
- Mass spectrometry to identify phosphorylation sites.
- Cell adhesion assays and phenotypic analysis.
Main Results:
- BCAR3 overexpression augments p130Cas serine phosphorylation, while BCAR3 knockdown reduces it.
- Specific serine residues (139, 437, 639) on p130Cas were identified as targets.
- BCAR3-dependent p130Cas serine phosphorylation is adhesion-dependent and occurs hours after cell adhesion.
- BCAR3 knockdown altered p130Cas localization and promoted an epithelioid growth pattern.
Conclusions:
- BCAR3 is a key regulator of adhesion-dependent p130Cas serine phosphorylation.
- This phosphorylation event is temporally distinct from rapid tyrosine phosphorylation events.
- BCAR3-mediated p130Cas serine phosphorylation correlates with a less invasive cellular phenotype.
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