Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Chondroitin Sulfates Control Invasiveness of the Basal-Like Breast Cancer Cell Line MDA-MB-231 Through ROR1

View through CrossRef
Extracellular and cell surface chondroitin sulfates (CSs) regulate cancer cell properties, including proliferation and invasion. Thus, it is necessary to understand the mechanisms underlying their roles in cancer. Although we have shown that CS has an inherent ability to enhance the invasive activity of the human triple-negative breast cancer cell line MDA-MB-231, its molecular mechanism remains elusive. Here, we focused on receptor tyrosine kinase-like orphan receptor 1 (ROR1) and dickkopf WNT signaling pathway inhibitor 1 (DKK1). MDA-MB-231 cells express high levels of ROR1; their invasive potential depends on ROR1 signaling. Although accumulating evidence has demonstrated that ROR1 is associated with aggressive breast-cancer phenotypes, the whole picture of its biological function remains poorly understood. In this study, we examined whether CS controls ROR1 function. Surface plasmon resonance analysis indicated that CSs were bound to ROR1 in the presence of WNT5A. The invasive activity of MDA-MB-231 cells enhanced by CSs was completely suppressed by ROR1 knockdown. In addition, knockdown of the CS biosynthetic enzymes CHST11 and CHST15 inhibited invasive activity, even in the presence of ROR1. These results suggest that CS is required to induce an ROR1-dependent, aggressive MDA-MB-231 phenotype. ROR1 signaling in MDA-MB-231 cells activated c-Jun N-terminal kinase (JNK), leading to increased invasive potential; moreover, exogenous CSs activated JNK. MDA-MB-231 cells express DKK1, a tumor suppressor factor that binds to CS, at high levels. Knockdown of DKK1 enhanced CS-stimulated tumor invasion activity of MDA-MB-231 cells, suggesting that DKK1 sequesters CS to block ROR1/JNK signaling. These results showed that CSs promotes cancer aggressiveness through the ROR1−JNK axis in MDA-MB-231 cells.
Title: Chondroitin Sulfates Control Invasiveness of the Basal-Like Breast Cancer Cell Line MDA-MB-231 Through ROR1
Description:
Extracellular and cell surface chondroitin sulfates (CSs) regulate cancer cell properties, including proliferation and invasion.
Thus, it is necessary to understand the mechanisms underlying their roles in cancer.
Although we have shown that CS has an inherent ability to enhance the invasive activity of the human triple-negative breast cancer cell line MDA-MB-231, its molecular mechanism remains elusive.
Here, we focused on receptor tyrosine kinase-like orphan receptor 1 (ROR1) and dickkopf WNT signaling pathway inhibitor 1 (DKK1).
MDA-MB-231 cells express high levels of ROR1; their invasive potential depends on ROR1 signaling.
Although accumulating evidence has demonstrated that ROR1 is associated with aggressive breast-cancer phenotypes, the whole picture of its biological function remains poorly understood.
In this study, we examined whether CS controls ROR1 function.
Surface plasmon resonance analysis indicated that CSs were bound to ROR1 in the presence of WNT5A.
The invasive activity of MDA-MB-231 cells enhanced by CSs was completely suppressed by ROR1 knockdown.
In addition, knockdown of the CS biosynthetic enzymes CHST11 and CHST15 inhibited invasive activity, even in the presence of ROR1.
These results suggest that CS is required to induce an ROR1-dependent, aggressive MDA-MB-231 phenotype.
ROR1 signaling in MDA-MB-231 cells activated c-Jun N-terminal kinase (JNK), leading to increased invasive potential; moreover, exogenous CSs activated JNK.
MDA-MB-231 cells express DKK1, a tumor suppressor factor that binds to CS, at high levels.
Knockdown of DKK1 enhanced CS-stimulated tumor invasion activity of MDA-MB-231 cells, suggesting that DKK1 sequesters CS to block ROR1/JNK signaling.
These results showed that CSs promotes cancer aggressiveness through the ROR1−JNK axis in MDA-MB-231 cells.

Related Results

Wnt5a Enhances Chemokine-Directed Migration of T-Cells Made to Express ROR1
Wnt5a Enhances Chemokine-Directed Migration of T-Cells Made to Express ROR1
Successful treatment of patients with chimeric antigen-receptor T-cells (CAR-T) requires effective homing and migration of infused CAR-T cells to the anatomic sites of tumor cells....
Combined Therapy of Zanubrutinib and Zilovertamab in the Inhibition of Invasive Capability of Chronic Lymphocytic Leukemia Cells
Combined Therapy of Zanubrutinib and Zilovertamab in the Inhibition of Invasive Capability of Chronic Lymphocytic Leukemia Cells
Signaling pathways such as CXCR4/CXCL12 can regulate migration and trafficking of chronic lymphocytic leukemia (CLL) cells from the blood to lymphoid tissues, where they receive gr...
Expression of ROR1 and ROR2 in Hairy Cell Leukemia Cells Enhances Constitutive Activation of ERK1/2 and Cancer Stemness
Expression of ROR1 and ROR2 in Hairy Cell Leukemia Cells Enhances Constitutive Activation of ERK1/2 and Cancer Stemness
Hairy cell leukemia (HCL) is a malignancy of B-cells that co-express CD19, CD20, CD11c, CD25, CD103, CD123, and CD200 (but not CD5, CD10, CD21, or CD23) and that harbor a V600E BRA...
ROR1 Expression Is Associated with Oncogenic Dedifferentiation in Chronic Lymphocytic Leukemia
ROR1 Expression Is Associated with Oncogenic Dedifferentiation in Chronic Lymphocytic Leukemia
Abstract An integrated analysis of transcriptomic signatures applied to almost 12,000 primary human tumors of 33 different cancer types from The Cancer Genome Atlas ...
Breast Carcinoma within Fibroadenoma: A Systematic Review
Breast Carcinoma within Fibroadenoma: A Systematic Review
Abstract Introduction Fibroadenoma is the most common benign breast lesion; however, it carries a potential risk of malignant transformation. This systematic review provides an ove...
Variant Transcript of ROR1 ENST00000545203 Does Not Encode ROR1 Protein
Variant Transcript of ROR1 ENST00000545203 Does Not Encode ROR1 Protein
Drs. John and Ford reported in biomedicines that a variant transcript encoding receptor tyrosine kinase-like orphan receptor 1 (ROR1), namely ENST00000545203 or variant 3 (ROR1V3),...
Desmoid-Type Fibromatosis of The Breast: A Case Series
Desmoid-Type Fibromatosis of The Breast: A Case Series
Abstract IntroductionDesmoid-type fibromatosis (DTF), also called aggressive fibromatosis, is a rare, benign, locally aggressive condition. Mammary DTF originates from fibroblasts ...

Back to Top