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Characterization of Pediatric Acute Myeloid Leukemia With t(7;12)(q36;p13)
Anders Östlund1, Ahmed Waraky1,2, Anna Staffas3
1Department of Laboratory Medicine, Institute of Biomedicine, University of Gothenburg, Gothenburg, Sweden.
Insights
Pediatric Acute myeloid leukemia (AML) with t(7;12) is a distinct subtype characterized by high MNX1 expression, not necessarily MNX1::ETV6 fusions. This consistent molecular profile defines a phenotypically homogeneous AML subgroup.
Area of Science:
- Hematology
- Molecular Biology
- Genetics
Background:
- Acute myeloid leukemia (AML) with t(7;12)(q36;p13) is a recognized pediatric AML subtype.
- The exact leukemogenesis mechanism and the role of MNX1 and ETV6 signaling remain unclear.
- Fusion transcripts MNX1::ETV6 are found in only about 50% of cases, despite high MNX1 expression in all.
Purpose of the Study:
- To investigate the clinical and biological characteristics of pediatric AML with t(7;12).
- To elucidate the underlying molecular mechanisms driving leukemogenesis in this AML subtype.
Main Methods:
- Whole transcriptome (WTS) and whole genome sequencing (WGS) were performed on pediatric AML samples with t(7;12).
- Clinical data and survival outcomes were analyzed.
- Principal component analysis (PCA) was used to analyze transcriptomic data.
Main Results:
- No significant difference in event-free or overall survival was observed compared to other pediatric AML.
- WTS identified various ETV6-containing fusion transcripts, but not with MNX1.
- WGS revealed NOM1 as a common fusion partner on chromosome 7.
- PCA demonstrated that all t(7;12) AML cases cluster together, separate from other pediatric AML subtypes.
- All cases exhibited high expression of MNX1, MNX1-AS1, and MNX1-AS2.
Conclusions:
- AML with t(7;12) represents a phenotypically homogeneous subgroup, irrespective of fusion transcript variations.
- Ectopic expression of MNX1 is likely the primary leukemia-driving event.
- High MNX1 expression should be considered the defining criterion for classifying this AML subtype.
Abstract:
Acute myeloid leukemia (AML) with t(7;12)(q36;p13) is a recurrent translocation in AML in infants or very young children and was recently included in the World Health Organization (WHO) Classification of Hematolymphoid Tumors. AML with t(7;12) is reported to involve MNX1 and ETV6 signaling; however, the mechanism of leukemogenesis is not well understood, and the presence of MNX1::ETV6 fusion transcripts has only been confirmed in approximately 50% of cases. In contrast, high expression of MNX1 has been seen in all investigated cases. In this study, we investigated the clinical as well as biological characteristics of 12 pediatric AML with t(7;12) and performed whole transcriptome (WTS) and whole genome sequencing (WGS) on six of these. There was no significant difference in event-free survival or overall survival of these t(7;12) AML patients compared with other AML in the same age group. Interestingly, WTS identified several fusion transcripts involving ETV6 but not together with MNX1. WGS identified the genomic breakpoints and revealed that a common fusion partner on chromosome 7 was NOM1. Principal component analysis (PCA) of the WTS data showed that all t(7;12) AML cases cluster together, separate from all other pediatric AML subtypes; all cases had high expression of MNX1, MNX1-AS1, and MNX1-AS2. Hence, t(7;12) AML, despite expressing different fusion transcripts and with varying translocation breakpoints, constitutes a phenotypically homogenous subgroup. This underlines that the leukemia-driving event most likely is ectopic expression of MNX1 and that this therefore should be the defining Classifying criteria of this type of AML.
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