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Updated: Aug 8, 2026

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
TLS (translocated-in-liposarcoma) is a high-affinity interactor for steroid, thyroid hormone, and retinoid receptors
C A Powers1, M Mathur, B M Raaka
1Division of Molecular Endocrinology, New York University Medical Center 10016, USA.
Abstract:
Nuclear receptors for steroid hormones, thyroid hormone, retinoids, and vitamin D are thought to mediate their transcriptional effects in concert with coregulator proteins that modulate receptor interactions with components of the basal transcription complex. In an effort to identify potential coregulators, receptor fusions with glutathione-S-transferase were used to isolate proteins in nuclear extracts capable of binding nuclear hormone receptors. Glutathione-S-transferase fusions with mouse retinoid X receptor-alpha enabled the selective isolation of a 65-kDa protein (p65) from nuclear extracts of rat and human cells. Binding of p65 to mouse retinoid X receptor-alpha was centered around the DNA-binding domain. p65 also bound regions encompassing the DNA-binding domain in estrogen, thyroid hormone, and glucocorticoid receptors. p65 was identified as TLS (translocated-in-liposarcoma), a recently identified member of the RNP family of nuclear RNA-binding proteins whose members are thought to function in RNA processing. The N-terminal half of TLS bound to thyroid hormone receptor with high affinity while the receptor was bound to appropriate DNA target sites. Functional studies indicated that the N-terminal half of TLS can interact with thyroid hormone receptor in vivo. TLS was originally discovered as part of a fusion protein arising from a chromosomal translocation causing human myxoid liposarcomas. TLS contains a potent transactivation domain whose translocation-induced fusion with a DNA-binding protein (CHOP) yields a powerful transforming oncogene and transcription factor. The transactivation and RNA-binding properties of TLS and the nature of its interaction with nuclear receptors suggest a novel role in nuclear receptor function.
Insights
Researchers identified TLS (translocated-in-liposarcoma) as a novel nuclear receptor coregulator. This RNA-binding protein interacts with multiple hormone receptors, suggesting a new role in gene transcription regulation.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- Nuclear receptors regulate gene expression through interactions with coregulator proteins.
- Identifying these coregulators is crucial for understanding transcriptional regulation.
Purpose of the Study:
- To identify novel coregulator proteins that interact with nuclear hormone receptors.
- To characterize the interaction between the identified protein and nuclear receptors.
Main Methods:
- Glutathione-S-transferase (GST) fusion proteins were used to isolate binding proteins from nuclear extracts.
- Protein binding assays and in vivo functional studies were performed.
Main Results:
- A 65-kDa protein, p65, was isolated and identified as TLS (translocated-in-liposarcoma).
- TLS binds to the DNA-binding domain of retinoid X receptor-alpha and other nuclear receptors.
- The N-terminal half of TLS interacts with thyroid hormone receptor in vivo.
Conclusions:
- TLS functions as a novel nuclear receptor coregulator.
- TLS's RNA-binding and transactivation properties suggest a multifaceted role in nuclear receptor-mediated transcription.
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