Downregulated CDH3 decreases proliferation, migration, and invasion in thyroid cancer
AMERICAN JOURNAL OF TRANSLATIONAL RESEARCH
Authors: Zhou, Yili; Chi, Yili; Bhandari, Adheesh; Xia, Erjie; Thakur, Prabhat Chandra; Qu, Jinmiao; Wang, Ouchen; Zhang, Xiaohua
Abstract
Background: Placental-Cadherin (CDH3), a cell adhesion molecule, is associated with the function of cells to bind with other cells and the extracellular matrix (ECM). CDH3 is highly expressed in many malignancies, and has been proved it could be a serum marker to monitor colorectal cancer, but the CDH3 expression levels in thyroid cancer is still not clear. In this article, we will illuminate the correlation between CDHs expression and thyroid cancer. Materials and methods: We analyzed the level of CDH3 expression in 60 pair of tissue samples (contrast thyroid cancer tissues with adjacent normal thyroid tissues) by Real-time PCR, and TCGA data portal. After that, we transfected small interfering RNA to silence CDH3 in thyroid cancer cell lines (KTC-1 and BCPAP) and confirmed the function of CDH3 by performed colony formation, migration, invasion, cell counting kit-8 and apoptosis assays. Results: CDH3 was upregulated in thyroid cancer tissues compared to the adjacent normal tissues (T:N=71.87 +/- 39.88:5.35 +/- 5.91, P<0.0001) and TCGA (T:N=19.43 +/- 13.82:1.22 +/- 1.33, P<0.0001). In thyroid cell lines (KTC-1 and BCPAP) experiments showed that downregulated CDH3 inhibited proliferation, migration, and invasion. Meanwhile, inhibited CDH3 expression could upregulate E-cadherin, downregulated N-cadherin, which may control invasion and migration. Conclusion: Thyroid cancer cells CDH3 expression levels is a correlation with its ability to grow, migrate and invade.
P-cadherin-induced decorin secretion is required for collagen fiber alignment and directional collective cell migration
JOURNAL OF CELL SCIENCE
Authors: Le Borgne-Rochet, Mailys; Angevin, Lucie; Bazellieres, Elsa; Ordas, Laura; Comunale, Franck; Denisov, Evgeny V.; Tashireva, Lubov A.; Perelmuter, Vladimir M.; Bieche, Ivan; Vacher, Sophie; Plutoni, Cedric; Seveno, Martial; Bodin, Stephane; Gauthier-Rouviere, Cecile
Abstract
Directional collective cell migration (DCCM) is crucial for morphogenesis and cancer metastasis. P-cadherin (also known as CDH3), which is a cell-cell adhesion protein expressed in carcinoma and aggressive sarcomacells and associated with poor prognosis, is a major DCCM regulator. However, it is unclear how P-cadherin-mediated mechanical coupling between migrating cells influences force transmission to the extracellular matrix (ECM). Here, we found that decorin, a small proteoglycan that binds to and organizes collagen fibers, is specifically expressed and secreted upon P-cadherin, but not E- and R-cadherin (also known as CDH1 and CDH4, respectively) expression. Through cell biological and biophysical approaches, we demonstrated that decorin is required for P-cadherin-mediated DCCM and collagen fiber orientation in the migration direction in 2D and 3D matrices. Moreover, P-cadherin, through decorin-mediated collagen fiber reorientation, promotes the activation of beta 1 integrin and of the beta-Pix (ARHGEF7)/CDC42 axis, which increases traction forces, allowing DCCM. Our results identify a novel P-cadherin-mediated mechanism to promote DCCM through ECM remodeling and ECM-guided cell migration.