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Published on: September 16, 2019
IIp45 inhibits cell migration through inhibition of HDAC6
Ying Wu1, Sonya W Song2, Jiyuan Sun1
1From the Department of Pathology, University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030 and.
Abstract:
IIp45 (aka MIIP) is a newly discovered gene whose protein product inhibits cell migration. HDAC6 is a class IIb deacetylase that specifically deacetylates alpha-tubulin, modulates microtubule dynamics, and promotes cell migration. A yeast two-hybrid assay using IIp45 as bait identified HDAC6 protein as a binding partner of IIp45. This physical interaction of the two functionally antagonistic proteins was confirmed by glutathione S-transferase pulldown assay and co-immunoprecipitation assay in human cells. Serial deletion constructs of HDAC6 were used to characterize the interaction of HDAC6 and IIp45, and this analysis found that the two catalytic domains of HDAC6 protein are required for IIp45 binding. We examined the protein expression patterns of IIp45 and HDAC6 in glioma tissues. Elevated protein levels of HDAC6 were found in high grade glioma samples, in contrast to the decreased protein expression of IIp45. The potential negative regulation of HDAC6 expression by IIp45 was confirmed in cell lines with altered IIp45 expression by constitutive overexpression or small interfering RNA knockdown. Protein turnover study revealed that overexpression of IIp45 significantly reduces the intracellular protein stability of endogenous HDAC6, indicating a possible mechanism for the negative regulation of HDAC6 by IIp45. Results from the HDAC activity assay demonstrated that overexpressed IIp45 effectively decreases HDAC6 activity, increases acetylated alpha-tubulin, and reduces cell migration. The increased cell migration resulting from siIIp45 knockdown was significantly reversed by co-transfection of siHDAC6. Thus, we report here for the first time a novel mechanism by which IIp45 inhibits cell motility through inhibition of HDAC6.
Insights
The newly discovered IIp45 protein inhibits cell migration by binding to and decreasing the activity of HDAC6, a protein promoting cell movement. This interaction offers a novel therapeutic target for controlling cell motility.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- IIp45 (MIIP) protein inhibits cell migration.
- HDAC6 deacetylates alpha-tubulin, promoting cell migration.
- The interaction between IIp45 and HDAC6 is not previously understood.
Purpose of the Study:
- To investigate the interaction between IIp45 and HDAC6.
- To elucidate the mechanism by which IIp45 regulates HDAC6.
- To determine the functional consequences of IIp45-HDAC6 interaction on cell migration.
Main Methods:
- Yeast two-hybrid assay to identify binding partners.
- Glutathione S-transferase pulldown and co-immunoprecipitation assays for interaction confirmation.
- Analysis of protein expression in glioma tissues.
- Cell-based assays including overexpression, knockdown, protein turnover, and HDAC activity assays.
Main Results:
- IIp45 directly binds to HDAC6 through its catalytic domains.
- IIp45 expression is decreased while HDAC6 expression is elevated in high-grade gliomas.
- IIp45 reduces HDAC6 protein stability and activity, leading to decreased cell migration.
- Knockdown of IIp45 increases cell migration, which is reversed by simultaneous knockdown of HDAC6.
Conclusions:
- IIp45 physically interacts with HDAC6, inhibiting its deacetylase activity.
- IIp45 negatively regulates HDAC6 expression and stability.
- IIp45 inhibits glioma cell migration by suppressing HDAC6 activity, representing a novel regulatory mechanism.
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