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DeltaNp73 modulates nerve growth factor-mediated neuronal differentiation through repression of TrkA
1Center for Comparative Oncology, 2128 Tupper Hall, University of California at Davis, Davis, CA 95616, USA.
Abstract:
p73, a member of the p53 family, expresses two classes of proteins: the full-length TAp73 and the N-terminally truncated DeltaNp73. While TAp73 possesses many p53-like features, DeltaNp73 is dominant negative towards TAp73 and p53 and appears to have distinct functions in tumorigenesis and neuronal development. Given its biological importance, we investigated the role of DeltaNp73 in nerve growth factor (NGF)-mediated neuronal differentiation in PC12 cells. We show that overexpression of DeltaNp73alpha or DeltaNp73beta inhibits NGF-mediated neuronal differentiation in both p53-dependent and -independent manners. In line with this, we showed that the level of endogenous DeltaNp73 is progressively diminished in differentiating PC12 cells upon NGF treatment and knockdown of DeltaNp73 promotes NGF-mediated neuronal differentiation. Interestingly, we found that the ability of DeltaNp73 to suppress NGF-mediated neuronal differentiation is correlated with its ability to regulate the expression of TrkA, the high-affinity NGF receptor. Specifically, we found that DeltaNp73 directly binds to the TrkA promoter and transcriptionally represses TrkA expression, which in turn attenuates the NGF-mediated mitogen-activated protein kinase pathway. Conversely, the steady-state level of TrkA is increased upon knockdown of DeltaNp73. Furthermore, we found that histone deacetylase 1 (HDAC1) and HDAC2 are recruited by DeltaNp73 to the TrkA promoter and act as corepressors to suppress TrkA expression, which can be relieved by trichostatin A, an HDAC inhibitor. Taken together, we conclude that DeltaNp73 negatively regulates NGF-mediated neuronal differentiation by transrepressing TrkA.
Insights
DeltaNp73 protein inhibits nerve growth factor (NGF)-mediated neuronal differentiation by repressing TrkA expression. Reducing DeltaNp73 levels promotes differentiation, highlighting its role in neuronal development.
Area of Science:
- Molecular Biology
- Neuroscience
- Cell Biology
Background:
- p73 protein family includes full-length TAp73 and truncated DeltaNp73.
- DeltaNp73 acts as a dominant negative regulator and has distinct roles in tumorigenesis and neuronal development.
- Investigating DeltaNp73's function in nerve growth factor (NGF)-mediated neuronal differentiation is crucial.
Purpose of the Study:
- To elucidate the role of DeltaNp73 in NGF-mediated neuronal differentiation in PC12 cells.
- To determine the mechanism by which DeltaNp73 influences neuronal differentiation.
- To explore the relationship between DeltaNp73, TrkA expression, and the NGF signaling pathway.
Main Methods:
- Overexpression and knockdown of DeltaNp73 in PC12 cells.
- Assessment of NGF-mediated neuronal differentiation.
- Analysis of TrkA promoter activity and expression levels.
- Chromatin immunoprecipitation assays to detect protein-DNA interactions.
- Treatment with histone deacetylase inhibitors.
Main Results:
- Overexpression of DeltaNp73 inhibited NGF-induced neuronal differentiation in a p53-dependent and -independent manner.
- Endogenous DeltaNp73 levels decreased during NGF treatment, and its knockdown enhanced differentiation.
- DeltaNp73 directly repressed TrkA promoter activity, reducing TrkA expression and attenuating the MAPK pathway.
- Histone deacetylase 1 and 2 were recruited by DeltaNp73 to the TrkA promoter, mediating transcriptional repression.
Conclusions:
- DeltaNp73 negatively regulates NGF-mediated neuronal differentiation.
- This regulation occurs through the direct transcriptional repression of the high-affinity NGF receptor, TrkA.
- HDAC1 and HDAC2 act as corepressors in the DeltaNp73-mediated suppression of TrkA expression.
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