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Targeted RNA Sequencing Assay to Characterize Gene Expression and Genomic Alterations
Published on: August 4, 2016
Searching for non-RET molecular alterations in medullary thyroid carcinoma: expression analysis by mRNA differential
Thomas J Musholt1, Julia Hanack, Christoph Brehm
1Department of General and Abdominal Surgery, Johannes Gutenberg University, Langenbeckstr.1, 55101 Mainz, Germany. thomas@musholt.com
Abstract:
Some 25%-70% of sporadic medullary thyroid carcinomas (MTCs) are associated with somatic mutations within the RET proto-oncogene. In a significant number of MTCs, however, no such genetic variations can be detected, which implies alternative pathogenic molecular alterations. To assess altered RET mutation-specific gene expression, and to identify yet unknown gene transcripts involved in the tumorigenesis of MTC, we performed an expression analysis by mRNA differential display (RT-DD). Snap-frozen tumor tissues and corresponding normal thyroid tissues of 8 patients suffering from MTC (6 sporadic, 2 hereditary tumors) were included in the study; 5/8 MTCs harbored RET point mutations (codons 618, 634, 918). The RT-DD method was refined by use of fluorescence-labeled arbitrary oligonucleotides, electrophoresis on an automated sequencer, and a novel fragment-recovery technique utilizing a high-performance fluorescence scanner. More than 400 differentially expressed mRNA transcripts--representing upregulated or downregulated genes in the compared tissues--were detected. In all, 28 selected fragments were recovered, cloned, sequenced, and identified. Differential expression of gene transcripts with known association to cell proliferation or tumor progression--such as annexin A2, Rab11a, trefoil proteins, superoxide dismutase (SOD1), mitochondrial displacement loop (D-loop), and G protein subunit gamma11--as well as of the neuroendocrine marker chromogranin was observed. Furthermore, several mRNA transcripts of yet unknown genes displayed mutation-specific upregulation or downregulation in MTC. Illumination of the molecular basis especially of C-cell carcinomas without detectable alterations of the RET receptor tyrosine kinase will be required for the development of therapeutic strategies for advanced tumors that cannot be bridled or cured by surgical interventions alone.
Insights
This study investigated gene expression in medullary thyroid carcinomas (MTCs) lacking RET proto-oncogene mutations. Researchers identified novel gene transcripts and known genes involved in cell proliferation and tumor progression, offering insights into MTC tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Medullary thyroid carcinoma (MTC) often involves somatic mutations in the RET proto-oncogene, but some cases lack these.
- Alternative molecular alterations are implied in MTC tumorigenesis when RET mutations are absent.
- Understanding these alternative pathways is crucial for developing new therapeutic strategies.
Purpose of the Study:
- To analyze gene expression in MTCs, particularly those without detectable RET mutations.
- To identify novel gene transcripts associated with MTC development.
- To explore altered RET mutation-specific gene expression patterns.
Main Methods:
- Utilized mRNA differential display (RT-DD) on tumor and normal thyroid tissues from 8 MTC patients.
- Employed fluorescence-labeled oligonucleotides, automated sequencing, and advanced fragment recovery.
- Recovered, cloned, sequenced, and identified over 400 differentially expressed mRNA transcripts.
Main Results:
- Identified differential expression of genes linked to cell proliferation and tumor progression (e.g., annexin A2, SOD1, chromogranin).
- Detected upregulation or downregulation of mRNA transcripts in MTCs, some associated with specific RET mutations.
- Discovered several novel mRNA transcripts showing mutation-specific expression patterns in MTC.
Conclusions:
- Gene expression analysis reveals key molecular alterations in MTC beyond RET mutations.
- Identified novel and known genes involved in MTC tumorigenesis, offering potential therapeutic targets.
- Further research into MTCs without RET alterations is vital for advanced tumor treatment.