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Cytogenetic, telomere, and telomerase studies in five surgically managed lumbosacral chordomas
M G Butler1, G A Dahir, L K Hedges
1Division of Genetics, Vanderbilt University School of Medicine, Nashville, Tennesse 37232-2578, USA.
Abstract:
Lumbosacral chordomas are rare skeletal sarcomas of the spine that originate from the remnant notochord. The understanding of this human cancer is limited to observations of its clinical behavior and its embryonic link. Thus, we performed chromosome and molecular analyses from five surgically harvested chordomas in an effort to document genetic and biochemical abnormalities which might aid in understanding the tumor biology of this understudied neoplasm. Cytogenetic analysis of the five chordomas revealed normal results in four patients and random abnormalities in only one tumor cell in the 100 cells studied from the fifth patient. A repeat telomeric probe (TTAGGG)50 was hybridized to genomic DNA isolated from chordoma cells (and HeLa cells) and digested with HinfI. The tumor DNA was paired with leukocyte DNA from age-matched controls and revealed telomere elongation in four of the four chordoma patients studied with molecular genetic techniques. Conversely, telomere length reduction has been reported during in vitro senescence of human fibroblasts, giant cell tumor of bone, colon cancer, intracranial tumors, childhood leukemia, Wilms tumor, and in HeLa cells. Telomerase activity (telomerase is required to maintain telomere integrity) was also determined by visualizing the extension of radioactive telomeric repeats on DNA sequencing gels. The telomeric fragments were assembled during incubation of the cytoplasmic extract containing telomerase. Telomerase activity was observed in HeLa (positive control and commercially available cell line), giant cell tumor of bone (positive control tumor cells from living patients), and in chordoma cells from one of the two chordoma patients (but to a lesser degree compared with HeLa). As expected, the chordoma patients' fibroblasts exhibited no telomerase activity.
Insights
Lumbosacral chordomas, rare spinal cancers, show abnormal telomere elongation and some telomerase activity. These findings offer insights into the tumor biology of this understudied neoplasm.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Lumbosacral chordomas are rare spinal sarcomas originating from notochord remnants.
- Understanding of chordoma tumor biology is limited, relying mainly on clinical observations and embryonic links.
Purpose of the Study:
- To investigate genetic and biochemical abnormalities in lumbosacral chordomas.
- To enhance the understanding of chordoma tumor biology through molecular and cytogenetic analyses.
Main Methods:
- Chromosome and molecular analyses were performed on five surgically harvested chordomas.
- Telomere length was assessed using a repeat telomeric probe and Southern blotting.
- Telomerase activity was determined by visualizing radioactive telomeric repeat extension on DNA sequencing gels.
Main Results:
- Cytogenetic analysis revealed normal results in most chordoma samples.
- Molecular genetic techniques showed telomere elongation in four of four chordoma patients.
- Telomerase activity was detected in one of two chordoma patients, though less than in HeLa cells.
Conclusions:
- Chordomas exhibit telomere elongation, a deviation from telomere length reduction seen in other cancers and senescence.
- The presence of telomerase activity in chordoma cells suggests a potential role in maintaining telomere integrity.
- Further research into these genetic and biochemical abnormalities is crucial for understanding chordoma tumor biology.