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Updated: Aug 22, 2026

Differentiation of Mouse Breast Epithelial HC11 and EpH4 Cells
Published on: February 27, 2020
Enhanced cathepsin L expression is mediated by different Ras effector pathways in fibroblasts and epithelial cells
John Collette1, Aylin S Ulku, Channing J Der
1Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill, NC 27599, USA.
Abstract:
Ras expression induces increased expression and altered targeting of lysosomal proteases in multiple cell types, but the specific downstream cytoplasmic signaling pathways mediating these changes have not been identified. In this study, we compared the involvement of 3 major Ras effectors, Raf, phosphatidylinositol 3-kinase (PI3K) and Ral guanine nucleotide exchange factor (RalGEF) in the Ras-mediated alteration of lysosomal protease protein expression and targeting in rat 208F fibroblasts and rat ovarian surface epithelial (ROSE) cells. Effector domain mutants of Ras, constitutively activated variants of Raf, PI3K and RalGEF and pharmacologic inhibitors of MEK and PI3K were utilized to determine the role of these downstream pathways in mediating fibroblast transformation and lysosomal protease regulation in the fibroblasts and epithelial cells. We found that Raf activation of the ERK mitogen-activated protein kinase pathway alone was sufficient to cause morphologic and growth transformation of the fibroblasts and was necessary and sufficient to alter cathepsin L expression and targeting. In contrast, transformation and upregulation of cathepsin L expression in the epithelial cells required the activity of all 3 Ras effectors. Increased protease secretion from the epithelial cells was not observed on ectopic expression of Ras, as it was from the fibroblasts, consistent with the utilization of different signaling pathways in the 2 cell types. In neither cell type did Ras expression increase the expression, processing or secretion of 2 other major lysosomal proteases, cathepsin B and cathepsin D. Thus, Ras utilizes different effectors to mediate transformation and to deregulate cathepsin L expression and secretion in fibroblast and epithelial cells.
Insights
Ras signaling alters lysosomal proteases, but downstream pathways differ by cell type. Raf-ERK signaling drives fibroblast changes, while epithelial cells require Raf, PI3K, and RalGEF for cathepsin L regulation.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Ras proteins are key regulators of cell signaling.
- Ras activation influences lysosomal protease expression and targeting.
- Downstream signaling pathways mediating these Ras effects remain largely uncharacterized.
Purpose of the Study:
- To investigate the roles of Raf, PI3K, and RalGEF in Ras-mediated lysosomal protease regulation.
- To compare signaling pathway involvement in fibroblasts versus epithelial cells.
- To elucidate mechanisms of Ras-induced cell transformation and protease alterations.
Main Methods:
- Utilized effector domain mutants of Ras and constitutively activated variants of Raf, PI3K, and RalGEF.
- Employed pharmacologic inhibitors of MEK and PI3K.
- Analyzed changes in lysosomal protease expression, targeting, and secretion in rat 208F fibroblasts and ROSE cells.
Main Results:
- Raf/ERK pathway activation alone induced fibroblast transformation and altered cathepsin L expression/targeting.
- Epithelial cell transformation and cathepsin L upregulation required all three Ras effectors (Raf, PI3K, RalGEF).
- Ras did not affect cathepsin B or D expression/processing in either cell type.
Conclusions:
- Ras utilizes distinct downstream effectors for transformation and cathepsin L regulation in fibroblasts and epithelial cells.
- The Raf/ERK pathway is critical for Ras effects in fibroblasts.
- Coordinated action of Raf, PI3K, and RalGEF is necessary for Ras-mediated changes in epithelial cells.
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