Recurrent MSCE116K mutations in ALK-negative anaplastic large cell lymphoma

Author:

Luchtel Rebecca A.1ORCID,Zimmermann Michael T.2ORCID,Hu Guangzhen1,Dasari Surendra2,Jiang Manli1,Oishi Naoki13,Jacobs Hailey K.1,Zeng Yu14,Hundal Tanya1,Rech Karen L.1,Ketterling Rhett P.1,Lee Jeong-Heon15ORCID,Eckloff Bruce W.6,Yan Huihuang2,Gaonkar Krutika S.2,Tian Shulan2,Ye Zhenqing2,Kadin Marshall E.7,Sidhu Jagmohan8,Jiang Liuyan9ORCID,Voss Jesse1,Link Brian K.10,Syrbu Sergei I.11,Facchetti Fabio12,Bennani N. Nora13,Slager Susan L.2,Ordog Tamas5ORCID,Kocher Jean-Pierre2,Cerhan James R.2ORCID,Ansell Stephen M.13,Feldman Andrew L.1ORCID

Affiliation:

1. Department of Laboratory Medicine and Pathology and

2. Department of Health Sciences Research, Mayo Clinic, Rochester, MN;

3. Department of Pathology, University of Yamanashi, Chuo, Yamanashi, Japan;

4. Department of Pathology, Tongji Hospital, Tongji University School of Medicine, Shanghai, China;

5. Epigenomics Program, Center for Individualized Medicine and

6. Medical Genome Facility, Mayo Clinic, Rochester, MN;

7. Department of Dermatology, Roger Williams Medical Center, Providence, RI;

8. Department of Pathology and Laboratory Medicine, United Health Services Hospitals, Johnson City/Binghamton, NY;

9. Department of Laboratory Medicine and Pathology, Mayo Clinic, Jacksonville, FL;

10. Department of Internal Medicine and

11. Department of Pathology, University of Iowa Hospitals and Clinics, Iowa City, IA;

12. Department of Molecular and Translational Medicine, University of Brescia, Brescia, Italy; and

13. Division of Hematology, Mayo Clinic, Rochester, MN

Abstract

Abstract Anaplastic large cell lymphomas (ALCLs) represent a relatively common group of T-cell non-Hodgkin lymphomas (T-NHLs) that are unified by similar pathologic features but demonstrate marked genetic heterogeneity. ALCLs are broadly classified as being anaplastic lymphoma kinase (ALK)+ or ALK−, based on the presence or absence of ALK rearrangements. Exome sequencing of 62 T-NHLs identified a previously unreported recurrent mutation in the musculin gene, MSCE116K, exclusively in ALK− ALCLs. Additional sequencing for a total of 238 T-NHLs confirmed the specificity of MSCE116K for ALK− ALCL and further demonstrated that 14 of 15 mutated cases (93%) had coexisting DUSP22 rearrangements. Musculin is a basic helix-loop-helix (bHLH) transcription factor that heterodimerizes with other bHLH proteins to regulate lymphocyte development. The E116K mutation localized to the DNA binding domain of musculin and permitted formation of musculin–bHLH heterodimers but prevented their binding to authentic target sequence. Functional analysis showed MSCE116K acted in a dominant-negative fashion, reversing wild-type musculin-induced repression of MYC and cell cycle inhibition. Chromatin immunoprecipitation–sequencing and transcriptome analysis identified the cell cycle regulatory gene E2F2 as a direct transcriptional target of musculin. MSCE116K reversed E2F2-induced cell cycle arrest and promoted expression of the CD30–IRF4–MYC axis, whereas its expression was reciprocally induced by binding of IRF4 to the MSC promoter. Finally, ALCL cells expressing MSCE116K were preferentially targeted by the BET inhibitor JQ1. These findings identify a novel recurrent MSC mutation as a key driver of the CD30–IRF4–MYC axis and cell cycle progression in a unique subset of ALCLs.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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