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Expression and alternative splicing of c-ret RNA in papillary thyroid carcinomas
O Fluge1, D R Haugen, L A Akslen
1Department of Molecular Biology, University of Bergen, N-5020 Bergen, Norway.
Abstract:
Somatic rearrangements of the ret receptor tyrosine kinase have been consistently reported in papillary thyroid carcinomas (PTC). It is unclear whether the expression of wild-type c-ret may also be implicated in thyroid tumorigenesis. We studied ret mRNA expression in PTC from Norwegian patients. Using RT-PCR, wild-type ret mRNA was detected in all of 22 PTC and in a PTC cell line. c-ret mRNA was clearly overexpressed in PTC as compared to non-neoplastic thyroid tissue. Hybridization using ret exon DNA dot blot arrays and complex cDNA probes confirmed expression of ret RNA in thyroid biopsies. In accordance with the RNA data, Western immunoblotting showed evidence of wild-type Ret protein in PTC. Rearrangements generating the ret/PTC oncogenes co-existed with c-ret mRNA in PTC. Multiple alternative ret splicing variants were detected in PTC. Four novel ret splicing events were found in the region encoding the extracellular domain. The open reading frames of these transcripts were all in-frame with the Ret tyrosine kinase domain. In the central ret mRNA region encoding the cysteine-rich, transmembrane, and main tyrosine kinase domains, no evidence of alternative splicing was detected. Two alternative splice events were detected in the ret mRNA encoding the C-terminal part of Ret protein harboring tyrosine residues important for Ret signaling, excluding exon 19, or retaining intron 19, respectively. Ribonuclease protection assays confirmed the presence of ret alternative splicing events in thyroid biopsies. We conclude that in addition to ret/PTC rearrangements, wild-type c-ret mRNA and alternatively spliced ret transcripts are present in PTC. Transcriptional up-regulation and post-transcriptional mechanisms of c-ret RNA processing may contribute to differences in expression of Ret protein observed in PTC compared to non-neoplastic thyroid tissue.
Insights
Wild-type RET (rearranged during transfection) mRNA and novel alternatively spliced transcripts are overexpressed in papillary thyroid carcinoma (PTC). These findings suggest altered RET expression contributes to thyroid tumor development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Somatic rearrangements of the ret receptor tyrosine kinase are common in papillary thyroid carcinomas (PTC).
- The role of wild-type c-ret expression in thyroid tumorigenesis remains unclear.
Purpose of the Study:
- To investigate wild-type c-ret mRNA expression and alternative splicing in PTC.
- To determine the contribution of altered RET expression to thyroid cancer development.
Main Methods:
- Reverse transcription-polymerase chain reaction (RT-PCR) to detect ret mRNA.
- DNA dot blot arrays and cDNA probes for RNA expression analysis.
- Western immunoblotting for wild-type Ret protein detection.
- Ribonuclease protection assays for alternative splicing confirmation.
Main Results:
- Wild-type ret mRNA and Ret protein were detected in all PTC samples and cell lines studied.
- c-ret mRNA was significantly overexpressed in PTC compared to non-neoplastic thyroid tissue.
- Multiple novel alternative ret splicing variants were identified in PTC, including in the extracellular domain and C-terminal signaling regions.
- ret/PTC oncogene rearrangements were found alongside c-ret mRNA expression.
Conclusions:
- Both wild-type c-ret mRNA overexpression and alternative splicing contribute to altered RET RNA processing in PTC.
- Transcriptional and post-transcriptional mechanisms of c-ret RNA processing may play a role in thyroid tumorigenesis.
- Altered RET expression, beyond rearrangements, is implicated in the development of papillary thyroid carcinoma.