MS4A3 promotes differentiation in chronic myeloid leukemia by enhancing common β-chain cytokine receptor endocytosis

Author:

Zhao Helong1234,Pomicter Anthony D.4ORCID,Eiring Anna M.5ORCID,Franzini Anca4ORCID,Ahmann Jonathan4,Hwang Jae-Yeon6,Senina Anna4,Helton Bret7,Iyer Siddharth4,Yan Dongqing4,Khorashad Jamshid S.8,Zabriskie Matthew S.4ORCID,Agarwal Anupriya9,Redwine Hannah M.4,Bowler Amber D.4ORCID,Clair Phillip M.4,McWeeney Shannon K.9,Druker Brian J.9ORCID,Tyner Jeffrey W.9,Stirewalt Derek L.10,Oehler Vivian G.10,Varambally Sooryanarayana11ORCID,Berrett Kristofer C.4,Vahrenkamp Jeffery M.4,Gertz Jason6,Varley Katherine E.6,Radich Jerald P.10,Deininger Michael W.1234ORCID

Affiliation:

1. Versiti Blood Research Institute, Milwaukee, WI;

2. Medical College of Wisconsin, Milwaukee, WI;

3. Division of Hematology and Hematologic Malignancies and

4. Huntsman Cancer Institute, The University of Utah, Salt Lake City, UT;

5. Texas Tech University, El Paso, TX;

6. Department of Oncological Sciences, The University of Utah, Salt Lake City, UT;

7. Department of Chemistry, University of Washington, Seattle, WA;

8. Department of Immunology and Inflammation, Imperial College London, London, United Kingdom;

9. Division of Hematology and Medical Oncology, Oregon Health & Science University Knight Cancer Institute, Portland, OR;

10. Fred Hutchinson Cancer Research Center, Seattle, WA; and

11. Department of Pathology, University of Alabama Birmingham, Birmingham, AL

Abstract

Abstract The chronic phase of chronic myeloid leukemia (CP-CML) is characterized by the excessive production of maturating myeloid cells. As CML stem/progenitor cells (LSPCs) are poised to cycle and differentiate, LSPCs must balance conservation and differentiation to avoid exhaustion, similar to normal hematopoiesis under stress. Since BCR-ABL1 tyrosine kinase inhibitors (TKIs) eliminate differentiating cells but spare BCR-ABL1-independent LSPCs, understanding the mechanisms that regulate LSPC differentiation may inform strategies to eliminate LSPCs. Upon performing a meta-analysis of published CML transcriptomes, we discovered that low expression of the MS4A3 transmembrane protein is a universal characteristic of LSPC quiescence, BCR-ABL1 independence, and transformation to blast phase (BP). Several mechanisms are involved in suppressing MS4A3, including aberrant methylation and a MECOM-C/EBPε axis. Contrary to previous reports, we find that MS4A3 does not function as a G1/S phase inhibitor but promotes endocytosis of common β-chain (βc) cytokine receptors upon GM-CSF/IL-3 stimulation, enhancing downstream signaling and cellular differentiation. This suggests that LSPCs downregulate MS4A3 to evade βc cytokine-induced differentiation and maintain a more primitive, TKI-insensitive state. Accordingly, knockdown (KD) or deletion of MS4A3/Ms4a3 promotes TKI resistance and survival of CML cells ex vivo and enhances leukemogenesis in vivo, while targeted delivery of exogenous MS4A3 protein promotes differentiation. These data support a model in which MS4A3 governs response to differentiating myeloid cytokines, providing a unifying mechanism for the differentiation block characteristic of CML quiescence and BP-CML. Promoting MS4A3 reexpression or delivery of ectopic MS4A3 may help eliminate LSPCs in vivo.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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