Related Experiment Video
Updated: Jan 9, 2026
Regulation of Hormone Secretion
14-3-3sigma controls mitotic translation to facilitate cytokinesis
Erik W Wilker1, Marcel A T M van Vugt, Steven A Artim
1Center for Cancer Research, Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Abstract:
14-3-3 proteins are crucial in a wide variety of cellular responses including cell cycle progression, DNA damage checkpoints and apoptosis. One particular 14-3-3 isoform, sigma, is a p53-responsive gene, the function of which is frequently lost in human tumours, including breast and prostate cancers as a result of either hypermethylation of the 14-3-3sigma promoter or induction of an oestrogen-responsive ubiquitin ligase that specifically targets 14-3-3sigma for proteasomal degradation. Loss of 14-3-3sigma protein occurs not only within the tumours themselves but also in the surrounding pre-dysplastic tissue (so-called field cancerization), indicating that 14-3-3sigma might have an important tumour suppressor function that becomes lost early in the process of tumour evolution. The molecular basis for the tumour suppressor function of 14-3-3sigma is unknown. Here we report a previously unknown function for 14-3-3sigma as a regulator of mitotic translation through its direct mitosis-specific binding to a variety of translation/initiation factors, including eukaryotic initiation factor 4B in a stoichiometric manner. Cells lacking 14-3-3sigma, in marked contrast to normal cells, cannot suppress cap-dependent translation and do not stimulate cap-independent translation during and immediately after mitosis. This defective switch in the mechanism of translation results in reduced mitotic-specific expression of the endogenous internal ribosomal entry site (IRES)-dependent form of the cyclin-dependent kinase Cdk11 (p58 PITSLRE), leading to impaired cytokinesis, loss of Polo-like kinase-1 at the midbody, and the accumulation of binucleate cells. The aberrant mitotic phenotype of 14-3-3sigma-depleted cells can be rescued by forced expression of p58 PITSLRE or by extinguishing cap-dependent translation and increasing cap-independent translation during mitosis by using rapamycin. Our findings show how aberrant mitotic translation in the absence of 14-3-3sigma impairs mitotic exit to generate binucleate cells and provides a potential explanation of how 14-3-3sigma-deficient cells may progress on the path to aneuploidy and tumorigenesis.
Insights
14-3-3 sigma protein suppresses tumors by regulating translation during cell division. Loss of this protein impairs cell division, leading to binucleate cells and potentially cancer.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- 14-3-3 proteins regulate diverse cellular processes, including cell cycle and apoptosis.
- 14-3-3 sigma, a tumor suppressor, is often lost in cancers like breast and prostate.
- The mechanism behind 14-3-3 sigma's tumor suppressor function was previously unknown.
Purpose of the Study:
- To elucidate the molecular basis of 14-3-3 sigma's tumor suppressor function.
- To investigate the role of 14-3-3 sigma in regulating translation during mitosis.
- To understand how loss of 14-3-3 sigma contributes to tumorigenesis.
Main Methods:
- Investigated 14-3-3 sigma's interaction with translation factors during mitosis.
- Analyzed the impact of 14-3-3 sigma depletion on cap-dependent and cap-independent translation.
- Examined the effects of altered translation on mitotic progression and cytokinesis.
Main Results:
- Identified a novel function of 14-3-3 sigma in regulating mitotic translation by binding translation initiation factors.
- Demonstrated that cells lacking 14-3-3 sigma exhibit defective translation control during mitosis.
- Observed impaired cytokinesis and accumulation of binucleate cells in 14-3-3 sigma-depleted cells due to aberrant mitotic translation.
Conclusions:
- 14-3-3 sigma acts as a crucial regulator of mitotic translation, ensuring proper cell division.
- Loss of 14-3-3 sigma leads to aberrant translation, mitotic defects, and binucleate cell formation.
- These findings suggest a mechanism by which 14-3-3 sigma deficiency contributes to aneuploidy and tumorigenesis.
Related Concept Videos
Regulation of Hormone Secretion
Humoral...
Hormonal Regulation
Overview of Secretory Vesicles
Various proteins regulate the aggregation of molecules inside the secretory vesicles. Chromogranins...
Insulin Secretory Vesicles
Glucose Homeostasis: Pancreatic Islets and Insulin Secretion
Insulin and C-peptide are...
Feedback Inhibition