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FHIT gene alterations in esophageal cancer and ulcerative colitis (UC)
1Department of Medicine, University of Maryland School of Medicine and Veterans Affairs Hospital, Baltimore 21201, USA.
Abstract:
FHIT (fragile histidine triad gene), a candidate tumor suppressor gene, was recently identified and cloned at chromosome 3p14.2. Alterations of this gene have been reported in a number of primary human tumors, including colorectal, esophageal, gastric and lung carcinomas. However, some reports have found no abnormalities in this gene. We investigated a total of 63 primary esophageal tumors, nine esophageal cancer cell lines and 17 ulcerative colitis-associated neoplasms (UCANs) for alterations of FHIT. In 13 esophageal tumors, we employed overlapping reverse transcriptase-PCRs (RT-PCRs) to amplify and sequence the complete open reading frame of FHIT. One of 13 primary esophageal tumors analysed by RT-PCR expressed no detectable FHIT transcript; the remaining 12 expressed normal-sized transcripts with wild-type open reading frame sequences. In an additional 50 esophageal tumors, the polymorphic microsatellite loci D3S1300 and D3S1313 were used to evaluate loss of heterozygosity (LOH) at 3p14.2. Eleven of these 50 tumors showed LOH at one or both loci. In all these 11 tumors, genomic PCR and direct sequencing of FHIT exons 5-9 was performed. This analysis revealed that none of these 11 primary esophageal tumors contained any alterations in the FHIT open reading frame or adjacent intron sequences. Finally, among 17 UCANs, the in vitro synthesized protein (IVSP) assay detected no truncated protein products, nor were there any abnormalities in size or DNA sequence of FHIT RT-PCR products. However, in six of nine esophageal carcinoma cell lines, no FHIT RT-PCR product was detectable using either of the overlapping primer sets. Genomic PCR and direct sequencing of exons 5-9, also performed in these nine cell lines, revealed wild-type sequence in eight cell lines; however, one cell line contained no exon 5 PCR product. This cell line also lacked detectable FHIT transcript. These data suggest that the open reading frame of FHIT is not important in the development or progression of most primary esophageal carcinomas or UCANs, although lack of expression of the FHIT transcript may be common in esophageal cancer-derived cell lines. The possibility of an additional tumor suppressor gene at chromosome 3p14.2 remains to be evaluated.
Insights
The fragile histidine triad gene (FHIT) shows no significant alterations in most esophageal tumors or ulcerative colitis-associated neoplasms. However, FHIT transcript expression is frequently lost in esophageal cancer cell lines, suggesting a role in cell line progression.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The fragile histidine triad gene (FHIT) is a candidate tumor suppressor located at chromosome 3p14.2.
- FHIT alterations have been implicated in various human cancers, but findings are inconsistent.
Purpose of the Study:
- To investigate FHIT alterations in primary esophageal tumors, esophageal cancer cell lines, and ulcerative colitis-associated neoplasms (UCANs).
- To determine the role of FHIT in the development and progression of these conditions.
Main Methods:
- Reverse transcriptase-PCR (RT-PCR) to analyze FHIT transcripts.
- Loss of heterozygosity (LOH) analysis using microsatellite markers D3S1300 and D3S1313.
- Genomic PCR and direct sequencing of FHIT exons.
- In vitro synthesized protein (IVSP) assay.
Main Results:
- Most primary esophageal tumors and UCANs showed no FHIT alterations or normal transcripts.
- Loss of heterozygosity (LOH) was observed in some esophageal tumors, but FHIT open reading frame remained unaltered.
- Six of nine esophageal cancer cell lines exhibited no detectable FHIT transcript; one cell line lacked exon 5 PCR product.
Conclusions:
- The FHIT open reading frame is likely not critical for the development of most primary esophageal carcinomas or UCANs.
- Loss of FHIT transcript expression may be significant in esophageal cancer cell lines.
- The potential involvement of other tumor suppressor genes at chromosome 3p14.2 warrants further investigation.