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Updated: Aug 8, 2026

Immunofluorescence Analysis of Endogenous and Exogenous Centromere-kinetochore Proteins
Published on: March 3, 2016
The central region of Gadd45 is required for its interaction with p21/WAF1
1Department of Radiation Oncology, Pittsburgh Cancer Institute, University of Pittsburgh School of Medicine, Pennsylvania 15213, USA.
Abstract:
Cell cycle arrest represents an important response to genotoxic stress and the tumor suppressor p53 has been described to act as a critical effector in this biological event. Upon stress, p53 becomes transcriptionally active and up-regulates the transcription of downstream effector genes, which contain p53 recognition sites in their regulatory regions. Among the genes activated are p21 and GADD45, each of which independently exhibits growth-suppressive activity. The Gadd45 protein has been described to form a complex with p21, and thus, work was undertaken to map the regions of Gadd45 involved in this interaction and to examine the roles of those two proteins in growth suppression. In this report, a Gadd45 overlapping peptide library and a series of Gadd45 deletion mutants were used to define the domains of Gadd45 involved in the association with p21. Results using both in vitro and in vivo methods have shown that the interaction of Gadd45 with p21 involves a central region of Gadd45. Interestingly, the p21-binding domain of Gadd45 also encodes the Cdc2-binding activity, indicating that the central region of Gadd45 may serve as an important "core," through which Gadd45 protein is able to present cross-talk with other cell cycle regulators. In addition, GADD45 inhibition of Cdc2 kinase activity was compared with Myd118 and CR6, two other members of the GADD45 family. GADD45 was shown to generate the strongest inhibitory effect on Cdc2 activity. Finally, results from short-term survival assays further demonstrated that p21 and GADD45 act upon different cellular pathways to exert their growth-suppressive function.
Insights
Cell cycle arrest involves tumor suppressor p53 activating genes like p21 and GADD45. Researchers mapped Gadd45
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- Cell cycle arrest is a key response to genotoxic stress.
- The tumor suppressor p53 is a critical effector in this process.
- p53 activates downstream genes, including p21 and GADD45, which have growth-suppressive activity.
Purpose of the Study:
- To map the regions of Gadd45 involved in its interaction with p21.
- To investigate the roles of p21 and Gadd45 in growth suppression.
- To compare the cell cycle regulatory functions of GADD45 family members.
Main Methods:
- Used a Gadd45 overlapping peptide library and deletion mutants.
- Employed in vitro and in vivo methods to study protein interactions.
- Assessed Gadd45 inhibition of Cdc2 kinase activity and performed survival assays.
Main Results:
- The central region of Gadd45 mediates its interaction with p21.
- This central domain also binds Cdc2, suggesting a role in cross-talk with cell cycle regulators.
- GADD45 showed the strongest inhibition of Cdc2 kinase activity among its family members.
- p21 and GADD45 utilize distinct pathways for growth suppression.
Conclusions:
- The central region of Gadd45 is crucial for p21 binding and interaction with other cell cycle regulators.
- GADD45 exhibits potent inhibition of Cdc2 kinase activity.
- p21 and GADD45 function through separate pathways to inhibit cellular growth.
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