Longitudinal analyses of CLL in mice identify leukemia-related clonal changes including a Myc gain predicting poor outcome in patients

Author:

Öztürk SelcenORCID,Paul Yashna,Afzal SairaORCID,Gil-Farina Irene,Jauch Anna,Bruch Peter-MartinORCID,Kalter Verena,Hanna Bola,Arseni Lavinia,Roessner Philipp M.ORCID,Schmidt Manfred,Stilgenbauer Stephan,Dietrich SaschaORCID,Lichter PeterORCID,Zapatka MarcORCID,Seiffert MartinaORCID

Abstract

AbstractChronic lymphocytic leukemia (CLL) is a B-cell malignancy mainly occurring at an advanced age with no single major genetic driver. Transgenic expression of TCL1 in B cells leads after a long latency to a CLL-like disease in aged Eµ-TCL1 mice suggesting that TCL1 overexpression is not sufficient for full leukemic transformation. In search for secondary genetic events and to elucidate the clonal evolution of CLL, we performed whole exome and B-cell receptor sequencing of longitudinal leukemia samples of Eµ-TCL1 mice. We observed a B-cell receptor stereotypy, as described in patients, confirming that CLL is an antigen-driven disease. Deep sequencing showed that leukemia in Eµ-TCL1 mice is mostly monoclonal. Rare oligoclonality was associated with inability of tumors to develop disease upon adoptive transfer in mice. In addition, we identified clonal changes and a sequential acquisition of mutations with known relevance in CLL, which highlights the genetic similarities and therefore, suitability of the Eµ-TCL1 mouse model for progressive CLL. Among them, a recurrent gain of chromosome 15, where Myc is located, was identified in almost all tumors in Eµ-TCL1 mice. Interestingly, amplification of 8q24, the chromosomal region containing MYC in humans, was associated with worse outcome of patients with CLL.

Funder

DKFZ Clinician Scientist Program, supported by the Dieter Morszeck Foundation

Deutsche Forschungsgemeinschaft

ERA-NET TRANSCAN-2 program JTC 2014–project FIRE-CLL

Publisher

Springer Science and Business Media LLC

Subject

Oncology,Cancer Research,Hematology

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