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Expression of MDM2 during mammary tumorigenesis
J Pinkas1, S P Naber, J S Butel
1Department of Veterinary and Animal Sciences, University of Massachusetts, Amherst 01003, USA.
Abstract:
The MDM2 oncoprotein encodes a 90 kDa nuclear phosphoprotein capable of abrogating the growth suppressive functions of p53 and pRb tumor suppressor proteins by direct interaction. Alternative splicing of MDM2 protein coding sequences has been documented during tumor progression in human ovarian and bladder carcinomas. The aim of this study was to determine whether alternative splicing of MDM2 occurs during breast tumorigenesis in mice and humans and whether protein coding sequences were affected. Specimens representing normal and malignant breast tissues from the murine D2 mammary tumor model system and human breast carcinomas were examined. Three distinct mdm2 mRNA transcripts of 3.3, 1.6 and 1.5 kb were detected in normal and malignant murine mammary tissues by Northern blot analysis using a full-length mdm2 cDNA probe. Additional Northern blot analysis using a probe derived from exon 12 of murine mdm2 demonstrated that the 1.5 and 1.6 kb transcripts lack sequences encoding the C-terminus of the protein. No evidence of internal deletions of protein coding sequences of mdm2 was detected in any of the normal mammary tissues or D2 murine mammary tumors examined by reverse transcription PCR (RT-PCR). Three distinct MDM2 transcripts of 6.7, 4.7 and 1.9 kb were detected in malignant human breast tissue by Northern blot analysis using a cDNA probe specific for the complete open reading frame of human MDM2. However, a cDNA probe specific for the last exon of human MDM2 hybridized only to the 6.7 and 4.7 kb transcripts, demonstrating that the 1.9 kb transcript lacked protein coding sequences contained in exon 12. Similarly, no internal deletions were detected in a panel of malignant human breast tissues using RT-PCR and analogous primers within human MDM2. Therefore, breast tumors differ from other solid tumors reported previously in that no internal deletions of MDM2 protein coding sequences were observed. However, the data document the presence of multiple MDM2 mRNA transcripts in both normal and malignant breast tissues. A subset of MDM2 transcripts were shown to lack the last exon which contains sequences coding for the RING and zinc fingers and domains which are targets for caspase-3 mediated proteolytic degradation and are required to target p53 for proteosomal degradation.
Insights
MDM2 alternative splicing occurs in breast tumors, producing transcripts lacking protein coding sequences. Unlike other cancers, internal deletions were not observed in MDM2 protein coding sequences during breast tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The MDM2 oncoprotein interacts with p53 and pRb tumor suppressors, inhibiting their growth-suppressive functions.
- Alternative splicing of MDM2 has been observed in ovarian and bladder carcinomas during tumor progression.
Purpose of the Study:
- To investigate alternative splicing of MDM2 during breast tumorigenesis in mice and humans.
- To determine if protein coding sequences of MDM2 are affected by alternative splicing in breast tumors.
Main Methods:
- Northern blot analysis of murine and human breast tissues using MDM2 cDNA probes.
- Reverse transcription PCR (RT-PCR) to detect internal deletions in MDM2 protein coding sequences.
Main Results:
- Multiple MDM2 mRNA transcripts (3.3, 1.6, 1.5 kb) were detected in murine mammary tissues.
- Murine transcripts of 1.5 and 1.6 kb lacked C-terminal sequences; no internal deletions were found.
- Human breast tissues showed MDM2 transcripts (6.7, 4.7, 1.9 kb), with the 1.9 kb transcript lacking exon 12 sequences.
- No internal deletions in human MDM2 protein coding sequences were detected via RT-PCR.
Conclusions:
- Breast tumors exhibit MDM2 alternative splicing, with some transcripts lacking the final exon containing RING and zinc finger domains.
- Unlike other solid tumors, internal deletions in MDM2 protein coding sequences were not observed in breast tumors.
- The study identifies multiple MDM2 mRNA transcripts in normal and malignant breast tissues, with implications for p53 regulation.