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Use of Next Generation Sequencing to Define the Origin of Primary Myelofibrosis
Giuseppe Visani1, Maryam Etebari2,3,4, Fabio Fuligni5
1Hematology and Stem Cell Transplantation, AORMIN, 61121 Pesaro, Italy.
Abstract:
Primary myelofibrosis (PMF) is a chronic myeloproliferative neoplasm (MPN) characterized by progressive bone marrow sclerosis, extra-medullary hematopoiesis, and possible transformation to acute leukemia. In the last decade, the molecular pathogenesis of the disease has been largely uncovered. Particularly, genetic and genomic studies have provided evidence of deregulated oncogenes in PMF as well as in other MPNs. However, the mechanisms through which transformation to either the myeloid or lymphoid blastic phase remain obscure. Particularly, it is still debated whether the disease has origins in a multi-potent hematopoietic stem cells or instead in a commissioned myeloid progenitor. In this study, we aimed to shed light upon this issue by using next generation sequencing (NGS) to study both myeloid and lymphoid cells as well as matched non-neoplastic DNA of PMF patients. Whole exome sequencing revealed that most somatic mutations were the same between myeloid and lymphoid cells, such findings being confirmed by Sanger sequencing. Particularly, we found 126/146 SNVs to be the e same (including JAK2V617F), indicating that most genetic events likely to contribute to disease pathogenesis occurred in a non-commissioned precursor. In contrast, only 9/27 InDels were similar, suggesting that this type of lesion contributed instead to disease progression, occurring at more differentiated stages, or maybe just represented "passenger" lesions, not contributing at all to disease pathogenesis. In conclusion, we showed for the first time that genetic lesions characteristic of PMF occur at an early stage of hematopoietic stem cell differentiation, this being in line with the possible transformation of the disease in either myeloid or lymphoid acute leukemia.
Insights
Genetic mutations in primary myelofibrosis (PMF) originate in early hematopoietic stem cells, not committed progenitors. This finding explains PMF
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Primary myelofibrosis (PMF) is a myeloproliferative neoplasm (MPN) with unclear origins.
- The transformation mechanisms to acute leukemia in PMF are not fully understood.
- It is debated whether PMF originates from multipotent stem cells or myeloid progenitors.
Purpose of the Study:
- To investigate the cellular origin of genetic lesions in PMF.
- To differentiate between stem cell versus progenitor origin of PMF mutations.
- To clarify the early events in PMF pathogenesis.
Main Methods:
- Utilized next-generation sequencing (NGS) on myeloid and lymphoid cells from PMF patients.
- Analyzed matched non-neoplastic DNA alongside neoplastic cells.
- Confirmed findings using Sanger sequencing for specific mutations.
Main Results:
- Most somatic mutations (126/146 SNVs), including JAK2V617F, were identical in myeloid and lymphoid cells.
- This suggests early genetic events occur in a multipotent precursor.
- Fewer insertions/deletions (9/27 InDels) were shared, indicating later stage or passenger mutations.
Conclusions:
- Genetic lesions in PMF arise at an early stage of hematopoietic stem cell differentiation.
- This early origin supports the potential for PMF to transform into myeloid or lymphoid acute leukemia.
- The study provides critical insights into the cellular origins of PMF.
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