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TonEBP inhibits ciliogenesis by controlling aurora kinase A and regulating centriolar satellite integrity
Batchingis Chinbold1, Hyug Moo Kwon2, Raekil Park3
1Department of Biomedical Science and Engineering, Gwangju Institute of Science and Technology, Gwangju, 61005, Republic of Korea.
Background:
Primary cilia on the surface of eukaryotic cells serve as sensory antennas for the reception and transmission in various cell signaling pathways. They are dynamic organelles that rapidly form during differentiation and cell cycle exit. Defects in these organelles cause a group of wide-ranging disorders called ciliopathies. Tonicity-responsive enhancer-binding protein (TonEBP) is a pleiotropic stress protein that mediates various physiological and pathological cellular responses. TonEBP is well-known for its role in adaptation to a hypertonic environment, to which primary cilia have been reported to contribute. Furthermore, TonEBP is involved in a wide variety of other signaling pathways, such as Sonic Hedgehog and WNT signaling, that promote primary ciliogenesis, suggesting a possible regulatory role. However, the functional relationship between TonEBP and primary ciliary formation remains unclear.
Methods:
TonEBP siRNAs and TonEBP-mCherry plasmids were used to examine their effects on cell ciliation rates, assembly and disassembly processes, and regulators. Serum starvation was used as a condition to induce ciliogenesis.
Results:
We identified a novel pericentriolar localization for TonEBP. The results showed that TonEBP depletion facilitates the formation of primary cilia, whereas its overexpression results in fewer ciliated cells. Moreover, TonEBP controlled the expression and activity of aurora kinase A, a major negative regulator of ciliogenesis. Additionally, TonEBP overexpression inhibited the loss of CP110 from the mother centrioles during the early stages of primary cilia assembly. Finally, TonEBP regulated the localization of PCM1 and AZI1, which are necessary for primary cilia formation.
Conclusions:
This study proposes a novel role for TonEBP as a pericentriolar protein that regulates the integrity of centriolar satellite components. This regulation has shown to have a negative effect on ciliogenesis. Investigations into cilium assembly and disassembly processes suggest that TonEBP acts upstream of the aurora kinase A - histone deacetylase 6 signaling pathway and affects basal body formation to control ciliogenesis. Taken together, our data proposes previously uncharacterized regulation of primary cilia assembly by TonEBP.
Insights
Tonicity-responsive enhancer-binding protein (TonEBP) negatively regulates primary cilia formation by affecting centriolar satellite integrity and acting upstream of aurora kinase A. This reveals a new mechanism controlling ciliogenesis.
Area of Science:
- Cell Biology
- Molecular Biology
- Cilia Biology
Background:
- Primary cilia function as cellular antennae regulating signaling pathways.
- Defects in primary cilia cause ciliopathies.
- Tonicity-responsive enhancer-binding protein (TonEBP) is a stress protein involved in various signaling pathways, including those affecting ciliogenesis.
Purpose of the Study:
- To investigate the functional relationship between TonEBP and primary cilia formation.
- To elucidate the role of TonEBP in regulating ciliogenesis.
Main Methods:
- Used TonEBP siRNAs and plasmids to study effects on ciliation.
- Employed serum starvation to induce primary ciliogenesis.
- Examined TonEBP localization and its impact on key ciliogenesis regulators.
Main Results:
- Identified novel pericentriolar localization for TonEBP.
- TonEBP depletion enhanced cilia formation; overexpression reduced it.
- TonEBP regulates aurora kinase A, CP110, PCM1, and AZI1, impacting ciliogenesis.
Conclusions:
- TonEBP acts as a pericentriolar protein negatively regulating ciliogenesis.
- TonEBP influences centriolar satellite integrity and basal body formation.
- Data suggests TonEBP acts upstream of the aurora kinase A signaling pathway in controlling primary cilia assembly.
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