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Tumor-suppressor function of Beclin 1 in breast cancer cells requires E-cadherin
Tobias Wijshake1,2, Zhongju Zou1,2,3, Beibei Chen4
1Center for Autophagy Research, University of Texas Southwestern Medical Center, Dallas, TX 75390.
Abstract:
Beclin 1, an autophagy and haploinsufficient tumor-suppressor protein, is frequently monoallelically deleted in breast and ovarian cancers. However, the precise mechanisms by which Beclin 1 inhibits tumor growth remain largely unknown. To address this question, we performed a genome-wide CRISPR/Cas9 screen in MCF7 breast cancer cells to identify genes whose loss of function reverse Beclin 1-dependent inhibition of cellular proliferation. Small guide RNAs targeting CDH1 and CTNNA1, tumor-suppressor genes that encode cadherin/catenin complex members E-cadherin and alpha-catenin, respectively, were highly enriched in the screen. CRISPR/Cas9-mediated knockout of CDH1 or CTNNA1 reversed Beclin 1-dependent suppression of breast cancer cell proliferation and anchorage-independent growth. Moreover, deletion of CDH1 or CTNNA1 inhibited the tumor-suppressor effects of Beclin 1 in breast cancer xenografts. Enforced Beclin 1 expression in MCF7 cells and tumor xenografts increased cell surface localization of E-cadherin and decreased expression of mesenchymal markers and beta-catenin/Wnt target genes. Furthermore, CRISPR/Cas9-mediated knockout of BECN1 and the autophagy class III phosphatidylinositol kinase complex 2 (PI3KC3-C2) gene, UVRAG, but not PI3KC3-C1-specific ATG14 or other autophagy genes ATG13, ATG5, or ATG7, resulted in decreased E-cadherin plasma membrane and increased cytoplasmic E-cadherin localization. Taken together, these data reveal previously unrecognized cooperation between Beclin 1 and E-cadherin-mediated tumor suppression in breast cancer cells.
Insights
Beclin 1, a tumor suppressor, collaborates with E-cadherin to inhibit breast cancer growth. Loss of E-cadherin or alpha-catenin reverses Beclin 1
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Beclin 1 is a tumor suppressor protein involved in autophagy, frequently deleted in breast and ovarian cancers.
- The mechanisms by which Beclin 1 suppresses tumor growth are not fully understood.
- Understanding Beclin 1's function is crucial for developing targeted cancer therapies.
Purpose of the Study:
- To identify genes that, when lost, reverse Beclin 1-mediated inhibition of cancer cell proliferation.
- To elucidate the molecular mechanisms underlying Beclin 1's tumor-suppressive functions.
- To investigate the interplay between Beclin 1 and other tumor suppressors in breast cancer.
Main Methods:
- Genome-wide CRISPR/Cas9 screening in MCF7 breast cancer cells.
- CRISPR/Cas9-mediated gene knockout of identified targets (CDH1, CTNNA1, BECN1, UVRAG).
- Analysis of cell proliferation, anchorage-independent growth, and protein localization in cell lines and xenografts.
Main Results:
- Loss of E-cadherin (CDH1) or alpha-catenin (CTNNA1) reversed Beclin 1's suppression of cancer cell proliferation and growth.
- Beclin 1 expression enhanced E-cadherin localization and suppressed mesenchymal markers and Wnt signaling.
- Knockout of BECN1 or UVRAG (PI3KC3-C2) disrupted E-cadherin localization, unlike other autophagy genes.
Conclusions:
- Beclin 1 cooperates with E-cadherin in suppressing breast cancer.
- The Beclin 1-E-cadherin axis represents a novel tumor suppressive pathway in breast cancer.
- Targeting this pathway could offer new therapeutic strategies for breast cancer treatment.
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