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Published on: August 1, 2018
Loss of FHIT expression in cervical carcinoma cell lines and primary tumors
D L Greenspan1, D C Connolly, R Wu
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Abstract:
Allelic deletions involving the short arm of chromosome 3 (3p13-21.1) have been observed frequently in cervical carcinomas. Recently, a candidate tumor suppressor gene, FHIT (Fragile Histidine Triad), was cloned and mapped to this chromosomal region (3p14.2). Abnormal FHIT transcripts have been identified previously in a variety of tumor cell lines and primary carcinomas, although their significance and the molecular mechanisms underlying their origin remain incompletely defined. In addition, integration of human papillomavirus DNA has been identified at a fragile site (FRA3B) within the FHIT locus in cervical cancer. These observations motivated us to evaluate FHIT mRNA and protein expression in cervical cancer cell lines, primary cervical carcinomas, and normal tissues. Transcripts of the expected size and sequence were the predominant species identified by reverse transcription (RT)-PCR in cultured keratinocytes and all normal tissues evaluated. In contrast, aberrant FHIT transcripts were readily demonstrated in 6 of 7 cervical carcinoma cell lines and 17 of 25 (68%) primary cervical carcinomas. Northern blot analyses demonstrated reduced or absent FHIT expression in the cervical carcinoma cell lines, particularly those with aberrant RT-PCR products. Immunohistochemical analysis of Fhit expression in cervical tissues revealed strong immunoreactivity in nonneoplastic squamous and glandular cervical epithelium and marked reduction or loss of Fhit protein in 25 of 33 (76%) primary cervical carcinomas. In those cervical cancer cell lines and primary tumors with exclusively aberrant or absent FHIT transcripts by RT-PCR, Fhit protein expression was always markedly reduced or absent. The frequent alterations in FHIT expression in many cervical carcinomas, but not in normal tissues, suggest that FHIT gene alterations may play an important role in cervical tumorigenesis.
Insights
Alterations in the FHIT gene, a tumor suppressor, are common in cervical cancers. Reduced FHIT gene and protein expression in tumors suggests its role in cervical tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Allelic deletions at chromosome 3p13-21.1 are frequent in cervical carcinomas.
- The FHIT (Fragile Histidine Triad) gene, a candidate tumor suppressor, is located at 3p14.2.
- Abnormal FHIT transcripts and human papillomavirus DNA integration at the FHIT locus have been noted in cervical cancer.
Purpose of the Study:
- To evaluate FHIT mRNA and protein expression in cervical cancer cell lines, primary tumors, and normal tissues.
- To determine the significance of FHIT alterations in cervical tumorigenesis.
Main Methods:
- Reverse transcription-polymerase chain reaction (RT-PCR) to detect FHIT transcripts.
- Northern blot analysis to assess FHIT gene expression levels.
- Immunohistochemistry to evaluate Fhit protein expression in cervical tissues.
Main Results:
- Aberrant FHIT transcripts were found in 6/7 cervical cancer cell lines and 17/25 (68%) primary carcinomas.
- Reduced or absent FHIT expression was observed in cervical carcinoma cell lines, especially those with aberrant transcripts.
- Marked reduction or loss of Fhit protein was detected in 25/33 (76%) primary cervical carcinomas.
- FHIT alterations correlated with reduced or absent Fhit protein expression.
Conclusions:
- Frequent alterations in FHIT gene and protein expression occur in cervical carcinomas but not normal tissues.
- These findings suggest that FHIT gene alterations play a significant role in the development of cervical cancer.

