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J Lescallett

Publications and source records attributed to J Lescallett.

2 recordsLinked to original sources

Comparison of TP53 mutations identified by oligonucleotide microarray and conventional DNA sequence analysis.

As the rate of gene discovery accelerates, more efficient methods are needed to analyze genes in human tissues. To assess the efficiency, sensitivity, and specificity of different methods, alterations of TP53 were independently evaluated in 108 ovarian tumors by conventional DNA sequence analysis and oligonucleotide microarray (p53 GeneChip). All mutations identified by oligonucleotide microarray and all disagreements with conventional gel-based DNA sequence analysis were confirmed by re-analysis with manual and automated dideoxy DNA sequencing. A total of 77 ovarian cancers were identified as having TP53 mutations by one of the two approaches, 71 by microarray and 63 by gel-based DNA sequence analysis. The same mutation was identified in 57 ovarian cancers, and the same wild type TP53 sequence was observed in 31 ovarian cancers by both methods, for a concordance rate of 81%. Among the mutation analyses discordant by these methods for TP53 sequence were 14 cases identified as mutated by microarray but not by conventional DNA sequence analysis and 6 cases identified as mutated by conventional DNA sequence analysis but not by microarray. Overall, the oligonucleotide microarray demonstrated a 94% accuracy rate, a 92% sensitivity, and an 100% specificity. Conventional DNA sequence analysis demonstrated an 87% accuracy rate, 82% sensitivity, and a 100% specificity. Patients with TP53 mutations had significantly shorter overall survival than those with no mutation (P = 0.02). Women with mutations in loop2, loop3, or the loop-sheet-helix domain had shorter survival than women with other mutations or women with no mutations (P = 0.01). Although further refinement would be helpful to improve the detection of certain types of TPS3 alterations, oligonucleotide microarrays were shown to be a powerful and effective tool for TP53 mutation detection.

Female↗

A novel BRCA1 mutation in an identical twin pair with similar clinical histories.

Factors affecting the penetrance and expression of BRCA1 are not understood. Breast cancer risk and ovarian cancer risk, in general, are known to be associated with non-Mendelian factors. However, whether and how these various factors influence tumor development in BRCA1 mutation carriers is not known. Here we report the breast and ovarian cancer syndrome in an identical twin pair. These female identical twins had remarkably similar clinical histories. Both twins developed histologically similar ovarian cancer in their mid-fifties. One twin was diagnosed with stage III disease and died of refractory metastatic disease. The other twin was diagnosed with stage I disease but ultimately died of recurrent disease. Neither twin developed breast or colon cancer. The twins have both similarities and differences in terms of nongenetic cancer-related risk factors. Results of BRCA1 analysis of DNA from both twins revealed a novel mutation, 2711delA, which resulted in a premature termination at codon 892. This report has intriguing implications concerning the role of genotype in the ultimate penetrance and expression of disease among BRCA1 mutation carriers.

Breast Neoplasms↗