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Updated: Jul 14, 2026

Purification of Ubiquitinated p53 Proteins from Mammalian Cells
Published on: March 21, 2022
Regulation of p73 by Hck through kinase-dependent and independent mechanisms
Preeti Paliwal1, Vegesna Radha, Ghanshyam Swarup
1Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad, India. preeti@ccmb.res.in <preeti@ccmb.res.in>
Background:
p73, a p53 family member is a transcription factor that plays a role in cell cycle, differentiation and apoptosis. p73 is regulated through post translational modifications and protein interactions. c-Abl is the only known tyrosine kinase that phosphorylates and activates p73. Here we have analyzed the role of Src family kinases, which are involved in diverse signaling pathways, in regulating p73.
Results:
Exogenously expressed as well as cellular Hck and p73 interact in vivo. In vitro binding assays show that SH3 domain of Hck interacts with p73. Co-expression of p73 with Hck or c-Src in mammalian cells resulted in tyrosine phosphorylation of p73. Using site directed mutational analysis, we determined that Tyr-28 was the major site of phosphorylation by Hck and c-Src, unlike c-Abl which phosphorylates Tyr-99. In a kinase dependent manner, Hck co-expression resulted in stabilization of p73 protein in the cytoplasm. Activation of Hck in HL-60 cells resulted in tyrosine phosphorylation of endogenous p73. Both exogenous and endogenous Hck localize to the nuclear as well as cytoplasmic compartment, just as does p73. Ectopically expressed Hck repressed the transcriptional activity of p73 as determined by promoter assays and semi-quantitative RT-PCR analysis of the p73 target, Ipaf and MDM2. SH3 domain- dependent function of Hck was required for its effect on p73 activity, which was also reflected in its ability to inhibit p73-mediated apoptosis. We also show that Hck interacts with Yes associated protein (YAP), a transcriptional co-activator of p73, and shRNA mediated knockdown of YAP protein reduces p73 induced Ipaf promoter activation.
Conclusion:
We have identified p73 as a novel substrate and interacting partner of Hck and show that it regulates p73 through mechanisms that are dependent on either catalytic activity or protein interaction domains. Hck-SH3 domain-mediated interactions play an important role in the inhibition of p73-dependent transcriptional activation of a target gene, Ipaf, as well as apoptosis.
Insights
Src family kinases, specifically Hck (hematopoietic cell kinase), regulate the tumor suppressor p73. Hck phosphorylates p73 and inhibits its transcriptional activity and apoptosis-inducing functions through its SH3 domain.
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncology
Background:
- p73 is a transcription factor crucial for cell cycle control, differentiation, and apoptosis.
- p73 activity is regulated by post-translational modifications and protein interactions.
- c-Abl is the only known tyrosine kinase that phosphorylates and activates p73.
Purpose of the Study:
- To investigate the role of Src family kinases in regulating p73.
- To identify the specific mechanisms by which Src family kinases interact with and modify p73 function.
Main Methods:
- In vivo and in vitro binding assays to assess protein interactions.
- Site-directed mutagenesis to identify phosphorylation sites.
- Promoter assays and semi-quantitative RT-PCR to evaluate transcriptional activity.
- Western blotting and immunofluorescence to detect protein localization and phosphorylation.
Main Results:
- Hck (hematopoietic cell kinase) interacts with p73, with the SH3 domain of Hck binding to p73.
- Hck and c-Src phosphorylate p73 at Tyr-28, distinct from c-Abl's phosphorylation site (Tyr-99).
- Hck stabilizes p73 in the cytoplasm and represses its transcriptional activity on target genes like Ipaf and MDM2.
- Hck inhibits p73-mediated apoptosis and interacts with YAP, a p73 co-activator.
Conclusions:
- p73 is a novel substrate and interacting partner of Hck.
- Hck regulates p73 through both catalytic activity and protein interaction domains.
- Hck's SH3 domain is critical for inhibiting p73-dependent gene transcription and apoptosis.
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