Co-Occurring CSF3R W791* Germline and Somatic T618I Driver Mutations Induce Early CNL and Clonal Progression to Mixed Phenotype Acute Leukemia.

Adam, Franziska C; Szybinski, Jakub; Halter, Jörg P; Cantoni, Nathan; Wenzel, Friedel; Leonards, Katharina; Brkic, Sime; Passweg, Jakob R; Touw, Ivo; Maxson, Julia E; Meyer, Sara C (2022). Co-Occurring CSF3R W791* Germline and Somatic T618I Driver Mutations Induce Early CNL and Clonal Progression to Mixed Phenotype Acute Leukemia. Current oncology, 29(2), pp. 805-815. MDPI 10.3390/curroncol29020068

[img]
Preview
Text
curroncol-29-00068-v2.pdf - Published Version
Available under License Creative Commons: Attribution (CC-BY).

Download (1MB) | Preview

Chronic neutrophilic leukemia (CNL) relates to mutational CSF3R activation with membrane proximal CSF3R mutations such as T618I as driver mutations, but the significance of truncating mutations is not clarified. In CNL, concomitant mutations promote disease progression, but insight into longitudinal acquisition is incomplete. In this study, we investigated the role of co-occurring germline and somatic CSF3R mutations in CNL, and assessed the impact of clonal evolution on transformation to acute leukemia. We employed sequential next generation sequencing and SNP array karyotyping to assess clonal evolution in CNL of early manifestation age based on a 33-year-old patient. Germline vs. somatic mutations were differentiated using a sample from the hair follicle. To investigate a potential predisposition for CNL development and progression by germline CSF3R-W791*, allelic localizations were evaluated. We detected a somatic CSF3R-T618I mutation at 46% variant allele frequency (VAF) at the time of CNL diagnosis, which co-occurred with a CSF3R-W791* truncation at 50% VAF in the germline. Evaluation of allelic localization revealed CSF3R-T618I and W791* on the same allele. A concomitant ASXL1 mutation at 39% VAF increased to 48% VAF upon transformation to mixed phenotype acute leukemia (MPAL), which has both myeloid and lymphoid features. Clonal evolution further involved expansion of the CSF3R double-mutant clone to 90% VAF via copy neutral loss of heterozygosity on chromosome 1p and the emergence of a RUNX1 mutant subclone. Allogeneic transplantation induced complete remission. This study highlights that CNL not only transforms to AML but also to MPAL. The molecular evolution is especially interesting with a CSF3R-W791* mutation in the germline and acquisition of CSF3R-T618I on the same allele compatible with increased susceptibility for mutation acquisition facilitating RUNX1-related clonal transformation.

Item Type:

Journal Article (Further Contribution)

Division/Institute:

04 Faculty of Medicine > Department of Haematology, Oncology, Infectious Diseases, Laboratory Medicine and Hospital Pharmacy (DOLS) > Clinic of Haematology and Central Haematological Laboratory

UniBE Contributor:

Meyer, Sara Christina

Subjects:

600 Technology > 610 Medicine & health

ISSN:

1718-7729

Publisher:

MDPI

Language:

English

Submitter:

Julia Elisa Garcia

Date Deposited:

21 Dec 2023 14:14

Last Modified:

21 Dec 2023 14:23

Publisher DOI:

10.3390/curroncol29020068

PubMed ID:

35200567

Uncontrolled Keywords:

CSF3R chronic neutrophilic leukemia clonal evolution mixed phenotype acute leukemia

BORIS DOI:

10.48350/190287

URI:

https://boris.unibe.ch/id/eprint/190287

Actions (login required)

Edit item Edit item
Provide Feedback