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Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
The bladder tumor suppressor protein TERE1 (UBIAD1) modulates cell cholesterol: implications for tumor progression
William J Fredericks1, Terry McGarvey, Huiyi Wang
1Division of Urology, Department of Surgery, University of Pennsylvania, VAMC Philadelphia, Philadelphia, PA 19104, USA. william.fredericks@uphs.upenn.edu
Abstract:
Convergent evidence implicates the TERE1 protein in human bladder tumor progression and lipid metabolism. Previously, reduced TERE1 expression was found in invasive urologic cancers and inhibited cell growth upon re-expression. A role in lipid metabolism was suggested by TERE1 binding to APOE, a cholesterol carrier, and to TBL2, a candidate protein in triglyceride disorders. Natural TERE1 mutations associate with Schnyder's corneal dystrophy, characterized by lipid accumulation. TERE1 catalyzes menaquinone synthesis, known to affect cholesterol homeostasis. To explore this relationship, we altered TERE1 and TBL2 dosage via ectopic expression and interfering RNA and measured cholesterol by Amplex red. Protein interactions of wild-type and mutant TERE1 with GST-APOE were evaluated by binding assays and molecular modeling. We conducted a bladder tumor microarray TERE1 expression analysis and assayed tumorigenicity of J82 cells ectopically expressing TERE1. TERE1 expression was reduced in a third of invasive specimens. Ectopic TERE1 expression in J82 bladder cancer cells dramatically inhibited nude mouse tumorigenesis. TERE1 and TBL2 proteins inversely modulated cellular cholesterol in HEK293 and bladder cancer cells from 20% to 50%. TERE1 point mutations affected APOE interactions, and resulted in cholesterol levels that differed from wild type. Elevated tumor cell cholesterol is known to affect apoptosis and growth signaling; thus, loss of TERE1 in invasive bladder cancer may represent a defect in menaquinone-mediated cholesterol homeostasis that contributes to progression.
Insights
The TERE1 protein impacts bladder cancer progression and cholesterol levels. Reduced TERE1 expression in invasive cancers may disrupt cholesterol homeostasis, promoting tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- TERE1 protein is implicated in human bladder tumor progression and lipid metabolism.
- Reduced TERE1 expression correlates with invasive urologic cancers and inhibited cell growth.
- TERE1's role in lipid metabolism is suggested by its interaction with APOE and TBL2, and its involvement in menaquinone synthesis.
Purpose of the Study:
- To investigate the relationship between TERE1, TBL2, and cellular cholesterol levels.
- To evaluate the impact of TERE1 mutations on APOE interactions and cholesterol homeostasis.
- To assess the role of TERE1 expression in bladder tumor progression and tumorigenicity.
Main Methods:
- Altering TERE1 and TBL2 expression using ectopic expression and interfering RNA.
- Measuring cellular cholesterol levels using Amplex red assay.
- Evaluating protein interactions via binding assays and molecular modeling.
- Analyzing TERE1 expression in bladder tumor microarrays and assessing cell tumorigenicity.
Main Results:
- TERE1 and TBL2 inversely modulated cellular cholesterol by 20-50% in HEK293 and bladder cancer cells.
- TERE1 expression was reduced in one-third of invasive bladder cancer specimens.
- Ectopic TERE1 expression significantly inhibited bladder cancer cell tumorigenesis in vivo.
- TERE1 point mutations altered APOE interactions and affected cholesterol levels.
Conclusions:
- Loss of TERE1 in invasive bladder cancer may contribute to tumor progression.
- TERE1 plays a role in menaquinone-mediated cholesterol homeostasis.
- TERE1's function in regulating cholesterol is critical for controlling tumor cell growth and apoptosis.
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