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Epidemiology, clinical features, and molecular basis of TTMV::RARA-driven acute promyelocytic leukemia
Xiaosu Zhou1,2,3,4, Jiaqi Chen1,2, Yan-Lai Tang5
1Precision Medicine Center, Beijing Lu Daopei Institute of Hematology, Beijing, China.
Abstract:
Integration of torque teno mini virus (TTMV) generating the TTMV::RARA (retinoic acid receptor α) fusion represents a newly recognized subtype of acute promyelocytic leukemia (APL) that merits detailed investigation. We present, to our knowledge, the first comprehensive characterization of its epidemiologic profile, clinical presentation, virologic characteristics, and underlying molecular mechanisms. Our findings indicate that TTMV::RARA is more prevalent in pediatric patients and represents the second most common retinoic acid receptor fusion after PML::RARA. Affected patients exhibit a high incidence of extramedullary involvement, particularly myeloid sarcoma. Cytogenetic abnormalities involving i(17)(q10) or 7q22 were identified in 52.0% of cases, largely in a mutually exclusive manner. Co-occurring mutations in epigenetic regulators were present in 76.9% of patients. Although most patients achieved initial remission, relapse was common and associated with rapid acquisition of all-trans retinoic acid (ATRA)-resistant mutation and secondary chemoresistance. Venetoclax-containing regimens demonstrated encouraging clinical efficacy. Phylogenetic analysis indicated that patient-derived TTMV strains clustered into a distinct clade. TTMV integration consistently occurred within RARA intron 2, involving a consensus fragment of 510 to 610 base pairs encompassing the viral promoter and open reading frame 2 (ORF2) N terminus, likely mediated by microhomology-driven recombination. Tandem RUNX1-binding motifs within the integrated viral promoter may underlie the myelotropism of these TTMV strains and facilitate transcriptional activation of TTMV::RARA. The chimeric protein retains at least the first 56 N-terminal residues of ORF2 and remains transcriptionally responsive to pharmacological concentrations of ATRA. These findings establish TTMV::RARA-APL as a distinct leukemia entity, laying the foundation for future studies on virus-mediated leukemogenesis and therapeutic strategies.
Insights
Torque teno mini virus (TTMV) integration creates a new acute promyelocytic leukemia (APL) subtype, TTMV::RARA, often seen in children. This distinct leukemia entity shows unique molecular features and treatment responses.
Area of Science:
- Hematology
- Virology
- Oncology
Background:
- A novel subtype of acute promyelocytic leukemia (APL) has emerged, characterized by the integration of torque teno mini virus (TTMV) and the resultant TTMV::RARA fusion.
- This discovery necessitates a thorough investigation into its epidemiological, clinical, virological, and molecular aspects.
Purpose of the Study:
- To comprehensively characterize the TTMV::RARA fusion in acute promyelocytic leukemia (APL).
- To elucidate the epidemiologic profile, clinical presentation, virologic characteristics, and molecular mechanisms driving this distinct leukemia subtype.
Main Methods:
- Epidemiologic data collection and analysis.
- Clinical presentation and outcome assessment.
- Virologic characterization, including phylogenetic analysis and integration site mapping.
- Molecular analyses of gene fusions, cytogenetic abnormalities, and co-occurring mutations.
- Assessment of therapeutic responses, including venetoclax-containing regimens.
Main Results:
- TTMV::RARA-APL is more prevalent in pediatric patients, representing the second most common retinoic acid receptor fusion.
- High incidence of extramedullary involvement (e.g., myeloid sarcoma) and frequent co-occurring mutations in epigenetic regulators were observed.
- Relapse was common, associated with resistance to all-trans retinoic acid (ATRA) and chemotherapy; venetoclax showed efficacy.
- TTMV integration occurred in RARA intron 2 via microhomology-driven recombination, with viral promoter elements potentially driving myelotropism.
- The TTMV::RARA fusion protein retained responsiveness to ATRA.
Conclusions:
- TTMV::RARA-APL is established as a distinct leukemia entity with unique characteristics.
- Findings provide a foundation for future research into virus-mediated leukemogenesis and novel therapeutic strategies.
- Understanding the molecular mechanisms of TTMV::RARA-APL can inform targeted treatment approaches.
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