Prognostic Significance of TP53 Alterations in Patients with Therapy-Related Myeloid Neoplasms

Authors

  • Eleni Vasileiou Author
  • Marija Juric Author
  • Joanna Pawlak Author

Keywords:

Therapy-Related Myeloid Neoplasm, TP53, Clonal Haematopoiesis, Variant Allele Frequency, Prognosis

Abstract

Therapy-related myeloid neoplasms are enriched for TP53 mutations three to four times over de novo disease, which for years was taken to mean that chemotherapy causes them. Sequencing showed otherwise: the mutant clone is usually present years before treatment, and cytotoxic therapy selects it rather than creating it. Objectives: To review the published evidence on TP53 alterations in therapy-related myeloid neoplasms: how often they occur, where they come from, what they predict for survival, whether variant allele frequency and allelic state carry the same meaning as in de novo disease, and what follows for classification. Material and Methods: Narrative review of sequencing studies, cohort analyses, classification documents and mechanistic work indexed in PubMed and the
major haematology and genetics journals. Studies were eligible if they reported TP53 alteration frequency, clonal origin or outcome in a defined therapy-related or de novo myeloid neoplasm population. No new patient data were generated and no patients were recruited; every estimate quoted is one published by the original investigators. Results: TP53 mutations occur in 21 to 38 per cent of therapy-related myeloid neoplasms against 5 to 10 per cent of de novo disease, rising to 70 to 80 per cent where the karyotype is complex or chromosome 17p, 5q or 7q is lost. Median overall survival was 6.1 months with mutation against 14.1 months without (p <
0.0001 univariate, p = 0.0020 multivariate). Whole-genome sequencing of therapy-related disease found the mutational burden and the proportion of chemotherapy-related transversions no higher than in de novo disease, and in four patients the exact mutation was detectable at 0.003 to 0.7 per cent in blood collected three to six years before the neoplasm appeared. In 488 patients, a variant allele frequency of 10 per cent or above, or loss of the TP53 locus, defined the poor-prognosis group, and single-hit and multi-hit disease carried equally poor outcome, unlike de novo disease. Conclusion: The allelic state distinction that governs classification of de novo TP53-mutated disease does not transfer to the therapy-related setting, where outcome is uniformly poor once the clone exceeds a modest variant allele frequency. Detecting these clones before cytotoxic treatment is the more consequential opportunity.
Abbreviations: t-MN – Therapy-Related Myeloid Neoplasm, t-AML – Therapy-Related Acute Myeloid Leukaemia, t-MDS – Therapy-Related Myelodysplastic Syndrome, VAF – Variant Allele Frequency, CH – Clonal Haematopoiesis, CHIP – Clonal Haematopoiesis of Indeterminate Potential, LOH – Loss of Heterozygosity, cnLOH – Copy-Neutral Loss of Heterozygosity, ICC – International Consensus Classification, WHO – World Health Organization, ELN – European LeukemiaNet, HSPC – Haematopoietic Stem and Progenitor Cell.

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Published

2024-11-17

How to Cite

Prognostic Significance of TP53 Alterations in Patients with Therapy-Related Myeloid Neoplasms. (2024). Annals of Leukemia Research, 5(1), 31-36. https://somatopub.com/index.php/ALR/article/view/331

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