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A novel androgen-regulated isoform of the TSC2 tumour suppressor gene increases cell proliferation
Jennifer Munkley1, Prabhakar Rajan, Nicholas P Lafferty
1Institute of Genetic Medicine, Newcastle University, Newcastle-upon-Tyne, United Kingdom.
Abstract:
TSC2 (Tuberous sclerosis complex 2) is an important tumour suppressor gene, mutations within which are linked to the development of tuberous sclerosis and implicated in multiple tumour types. TSC2 protein complexes with TSC1 and blocks the ability of the Rheb (Ras homolog enriched in brain) GTPase to activate mTOR (mammalian target of rapamycin), a crucial signal transducer which regulates protein synthesis and cell growth. Here, we report the characterisation of a novel isoform of TSC2 which is under direct control of the ligand-activated androgen receptor. TSC2 isoform A (TSC2A) is derived from an internal androgen-regulated alternative promoter and encodes a 508-amino acid cytoplasmic protein corresponding to the C-terminal region of full-length TSC2, lacking the interaction domain for TSC1 and containing an incomplete interaction domain required for Rheb inactivation. Expression of TSC2A is induced in response to androgens and full-length TSC2 is co-ordinately down-regulated, indicating an androgen-driven switch in TSC2 protein isoforms. In contrast to the well-characterised suppressive effect on cell proliferation of full-length TSC2 protein, both LNCaP and HEK293 cells over-expressing TSC2 isoform A proliferate more rapidly (measured by MTT assays) and have increased levels of cells in S-phase (measured by both Edu staining and FACS analysis). Our work indicates, for the first time, a novel role for this well-known tumour suppressor gene, which encodes an activator of cell proliferation in response to androgen stimulation.
Insights
A novel Tuberous Sclerosis Complex 2 (TSC2) isoform, TSC2A, is activated by androgens. This isoform promotes cell proliferation, contrasting with the tumor-suppressive function of full-length TSC2.
Area of Science:
- Molecular Biology
- Oncology
- Endocrinology
Background:
- Tuberous Sclerosis Complex 2 (TSC2) is a tumor suppressor gene regulating cell growth via the mTOR pathway.
- Mutations in TSC2 are associated with tuberous sclerosis and various cancers.
- The TSC2 protein interacts with TSC1 to inhibit Rheb GTPase activity, thereby controlling mTOR signaling.
Purpose of the Study:
- To characterize a novel isoform of TSC2 (TSC2A) regulated by the androgen receptor.
- To investigate the functional consequences of TSC2A expression on cell proliferation.
Main Methods:
- Identification and characterization of the TSC2A isoform.
- Analysis of androgen receptor-mediated regulation of TSC2 isoforms.
- Assessment of cell proliferation using MTT assays, Edu staining, and FACS analysis.
Main Results:
- A novel TSC2 isoform, TSC2A, is identified, originating from an internal androgen-regulated promoter.
- Androgen stimulation induces TSC2A expression while down-regulating full-length TSC2.
- Overexpression of TSC2A enhances cell proliferation and increases S-phase population in LNCaP and HEK293 cells.
Conclusions:
- TSC2A represents a novel androgen-regulated activator of cell proliferation.
- This finding reveals a new role for the TSC2 gene in promoting cell growth under androgen stimulation.
- The switch between TSC2 isoforms offers a new perspective on tumor development and progression.
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