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

Circulating Tumor Cell Migration Requires Fibronectin Acting through Integrin B1 or SLUG

View through CrossRef
Fibronectin (FN1) is an extracellular matrix protein gaining increasing attention for its multifaceted roles in cancer progression. Using our recently established circulating tumor cell (CTC) lines, we had demonstrated increased FN1 expression and enhanced migration in CTC lines, in comparison to primary tumor cell lines. Whether increased FN1 expression is directly required for CTC migration, and the specific role of FN1’s regulation of integrin B1 (ITGB1) and SLUG (SNAI2) in CTC migration remains unclear. Here, for the first time, we report that the knockdown of FN1, ITGB1, or SLUG expression in CTCs leads to a significant decrease in CTC migration. Knocking down two or all three of these proteins simultaneously did not further inhibit migration. We observed a corresponding increase in CTC migration when recombinant FN1 was added to CTCs. This effect was significantly impeded by prior knockdown of ITGB1 or SLUG. Using knock down experiments and western blotting analysis, we confirmed FN1’s regulation of ITGB1 and SLUG to occur via two separate, independent pathways. Consequently, we can conclude that FN1-dependent enhanced migration of CTCs requires downstream signaling through either ITGB1 or SLUG and that FN1 regulation of ITGB1 and SLUG may have important implications for cancer progression and metastasis.
Title: Circulating Tumor Cell Migration Requires Fibronectin Acting through Integrin B1 or SLUG
Description:
Fibronectin (FN1) is an extracellular matrix protein gaining increasing attention for its multifaceted roles in cancer progression.
Using our recently established circulating tumor cell (CTC) lines, we had demonstrated increased FN1 expression and enhanced migration in CTC lines, in comparison to primary tumor cell lines.
Whether increased FN1 expression is directly required for CTC migration, and the specific role of FN1’s regulation of integrin B1 (ITGB1) and SLUG (SNAI2) in CTC migration remains unclear.
Here, for the first time, we report that the knockdown of FN1, ITGB1, or SLUG expression in CTCs leads to a significant decrease in CTC migration.
Knocking down two or all three of these proteins simultaneously did not further inhibit migration.
We observed a corresponding increase in CTC migration when recombinant FN1 was added to CTCs.
This effect was significantly impeded by prior knockdown of ITGB1 or SLUG.
Using knock down experiments and western blotting analysis, we confirmed FN1’s regulation of ITGB1 and SLUG to occur via two separate, independent pathways.
Consequently, we can conclude that FN1-dependent enhanced migration of CTCs requires downstream signaling through either ITGB1 or SLUG and that FN1 regulation of ITGB1 and SLUG may have important implications for cancer progression and metastasis.

Related Results

Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
2065-LB: Slug Regulates Adipogenesis and Adipose Tissue Growth
2065-LB: Slug Regulates Adipogenesis and Adipose Tissue Growth
Adipose stem cell commitment, proliferation, and differentiation critically regulate adipose tissue development and homeostasis. Transcription factor Slug, also known as Snai2, is ...
PeTra: A Novel Computer Code for Simulation of Slug Flow
PeTra: A Novel Computer Code for Simulation of Slug Flow
Abstract This paper presents a new transient code, PeTra (Petroleum Transport), specially designed for tracking slugs and pigs in multiphase pipelines. PeTra is a...
Abstract 397: The Interaction of Integrin beta1 to Galpha13 Mediates RhoA Inhibition and Cell Migration
Abstract 397: The Interaction of Integrin beta1 to Galpha13 Mediates RhoA Inhibition and Cell Migration
Background: Integrin-dependent cell migration is critically important in many physiological and pathological processes such as angiogenesis, inflammation, wound healing...
1720-P: Epigenetic Regulator Slug Directly Promotes Beige Adipogenesis
1720-P: Epigenetic Regulator Slug Directly Promotes Beige Adipogenesis
Introduction and Objective: Brown adipose tissue and beige adipocytes are activated by cold exposure to maintain temperature homeostasis, and adipose thermogenesis also confers ben...
Fibronectin Regulation of Integrin B1 and SLUG in Circulating Tumor Cells
Fibronectin Regulation of Integrin B1 and SLUG in Circulating Tumor Cells
Metastasis is the leading cause of cancer death worldwide. Circulating tumor cells (CTCs) are a critical step in the metastatic cascade and a good tool to study this process. We is...
Abstract 3916: The effect of snail on cellular adhesion in prostate cancer cells
Abstract 3916: The effect of snail on cellular adhesion in prostate cancer cells
Abstract Purpose: The purpose of the study is to determine the role of Snail transcription factor on cellular adhesion to fibronectin and collagen, in human prostate...

Back to Top