Related Experiment Video
Updated: Jan 30, 2026

Author Spotlight: Accurately Assessing Thyroid Hormone-Driven Motor Alterations in Mouse
Published on: October 6, 2023
A novel thyroid hormone receptor isoform, TRβ2-46, promotes SKP2 expression and retinoblastoma cell proliferation
Zhengke Li1,2,3, Dong-Lai Qi4, Hardeep P Singh4
1From The Vision Center and The Saban Research Institute, Children's Hospital Los Angeles, Los Angeles, California 90027, LIZ01@mail.etsu.edu.
Abstract:
Retinoblastoma is a childhood retinal tumor that develops from cone photoreceptor precursors in response to inactivating RB1 mutations and loss of functional RB protein. The cone precursor's response to RB loss involves cell type-specific signaling circuitry that helps to drive tumorigenesis. One component of the cone precursor circuitry, the thyroid hormone receptor β2 (TRβ2), enables the aberrant proliferation of diverse RB-deficient cells in part by opposing the down-regulation of S-phase kinase-associated protein 2 (SKP2) by the more widely expressed and tumor-suppressive TRβ1. However, it is unclear how TRβ2 opposes TRβ1 to enable SKP2 expression and cell proliferation. Here, we show that in human retinoblastoma cells TRβ2 mRNA encodes two TRβ2 protein isoforms: a predominantly cytoplasmic 54-kDa protein (TRβ2-54) corresponding to the well-characterized full-length murine Trβ2 and an N-terminally truncated and exclusively cytoplasmic 46-kDa protein (TRβ2-46) that starts at Met-79. Whereas TRβ2 knockdown decreased SKP2 expression and impaired retinoblastoma cell cycle progression, re-expression of TRβ2-46 but not TRβ2-54 stabilized SKP2 and restored proliferation to an extent similar to that of ectopic SKP2 restoration. We conclude that TRβ2-46 is an oncogenic thyroid hormone receptor isoform that promotes SKP2 expression and SKP2-dependent retinoblastoma cell proliferation.
Insights
A specific thyroid hormone receptor beta 2 (TRβ2) protein isoform, TRβ2-46, drives retinoblastoma tumor growth by stabilizing SKP2. This discovery reveals a new therapeutic target for childhood retinal tumors.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Retinoblastoma, a childhood retinal tumor, arises from cone photoreceptor precursors with inactivating RB1 mutations.
- Thyroid hormone receptor beta 2 (TRβ2) opposes tumor suppression by TRβ1, promoting proliferation in RB-deficient cells via SKP2 regulation.
Purpose of the Study:
- To elucidate the mechanism by which TRβ2 promotes retinoblastoma cell proliferation.
- To identify the specific TRβ2 protein isoform responsible for stabilizing SKP2 and driving tumor growth.
Main Methods:
- Analysis of TRβ2 mRNA in human retinoblastoma cells to identify protein isoforms.
- Knockdown and re-expression studies of TRβ2 isoforms (TRβ2-46 and TRβ2-54).
- Assessment of SKP2 expression and cell cycle progression following TRβ2 isoform manipulation.
Main Results:
- Human retinoblastoma cells express two TRβ2 isoforms: a 54-kDa cytoplasmic form (TRβ2-54) and a 46-kDa N-terminally truncated cytoplasmic form (TRβ2-46).
- TRβ2 knockdown reduced SKP2 expression and impaired retinoblastoma cell proliferation.
- Re-expression of TRβ2-46, but not TRβ2-54, stabilized SKP2 and restored proliferation.
Conclusions:
- TRβ2-46 is an oncogenic isoform of the thyroid hormone receptor.
- TRβ2-46 promotes retinoblastoma cell proliferation by upregulating SKP2 expression.
- TRβ2-46 represents a potential therapeutic target for retinoblastoma.
Related Concept Videos
Functions of Thyroid Hormones
TH is indispensable for the normal development and maturation of the skeletal, muscular, and nervous systems during fetal and childhood growth. It facilitates bone mineral turnover and regulates protein synthesis in developing tissues, contributing significantly to overall growth and...
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The...
Types of Hormones
Intracellular Hormone Receptors
Internal Receptors
Plant Hormones

