Related Experiment Video
Updated: Jul 13, 2026

Targeted Antibody Blocking by a Dual-Functional Conjugate of Antigenic Peptide and Fc-III Mimetics (DCAF)
Published on: September 17, 2019
MDM2 RNA binding is blocked by novel monoclonal antibody h-MDM2-F4-14
John J Anderson1, Christine Challen, Helen Atkins
1Department of Academic Haematology, The University of Newcastle Upon Tyne, UK. j.j.anderson@ncl.ac.uk
Abstract:
Amplification of MDM2 has been described in a variety of human cancers. Prognostic studies have revealed that abnormal MDM2 expression correlates with poor prognosis. Many of the consequences of mdm2/p53 interactions have been investigated, and mdm2-p53 dependent events characterized. In contrast, understanding of mdm2-p53 independent activities is comparatively in it's infancy amongst these the ability of mdm2 to bind RNA. However, although the significance of this activity has been the subject of some speculation, the precise role and impact of this function upon cell replication or apoptosis has yet to be fully defined. These studies have been obstructed by a lack of specific reagents able to interfere with this reaction. As a prelude to further exploring the significance of mdm2 RNA binding we report the inhibition of mdm2 RNA binding activity by newly produced MDM2 monoclonal antibodies anti-h-mdm2 F4-14 and F2-2. A variety of MDM2 specific antibodies have been produced and applied in research without complete knowledge of their reactivity profiles, but in the face of the growing number of mdm2 RNA isoforms, the results of such studies can be difficult to interpret. Each of the RNA binding inhibitory antibodies produced in this study was found to be reactive with full length MDM2 protein expressed in tumor cell lysates, transfected NIH3T3 cell lysates and via eukaryotic cell free rabbit reticulocyte in vitro translation. Antibody F4-14, the most potently inhibitory antibody, reacts strongly with the full length MDM2 together with protein isoforms A, B, C and D. In contrast, antibody F2-2 reacts only with full-length MDM2 protein. The ability of h-mdm2-F4-14 and to a lesser extent F2-2 to inhibit RNA binding presents the possibility of modulating human mdm2s ability to bind RNA, compromise this function and present opportunities to investigate in more detail the biological significance of this activity.
Insights
New monoclonal antibodies inhibit MDM2 RNA binding, a crucial step in cancer. These reagents allow researchers to study the independent functions of MDM2 protein and its role in cell replication and apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- MDM2 amplification is common in human cancers and linked to poor prognosis.
- While MDM2's interaction with p53 is well-studied, its p53-independent functions, like RNA binding, are less understood.
- The biological significance of MDM2's RNA binding activity in cell replication and apoptosis remains undefined.
Purpose of the Study:
- To develop specific reagents to inhibit MDM2 RNA binding activity.
- To investigate the role of MDM2-RNA interactions in cellular processes.
Main Methods:
- Production of novel MDM2 monoclonal antibodies (anti-h-mdm2 F4-14 and F2-2).
- Testing antibody reactivity against full-length MDM2 and its isoforms in various cell lysates and in vitro translation systems.
- Assessing the inhibitory effects of antibodies on MDM2 RNA binding activity.
Main Results:
- Antibodies F4-14 and F2-2 were generated and shown to inhibit MDM2 RNA binding.
- Both antibodies recognized full-length MDM2 protein.
- Antibody F4-14 recognized multiple MDM2 isoforms (A, B, C, D), while F2-2 recognized only full-length MDM2.
Conclusions:
- The developed monoclonal antibodies, particularly F4-14, can inhibit MDM2's RNA binding function.
- These antibodies provide valuable tools for further research into the p53-independent roles of MDM2 and its impact on cancer biology.
More Related Videos
10:18Magnetic Fluorescent Bead-Based Dual-Reporter Flow Analysis of PDL1-Vaxx Peptide Vaccine-Induced Antibody Blockade of the PD-1/PD-L1 Interaction
Published on: July 7, 2023
10:19High-throughput Flow Cytometry Cell-based Assay to Detect Antibodies to N-Methyl-D-aspartate Receptor or Dopamine-2 Receptor in Human Serum
Published on: November 23, 2013