Impact of mesenchymal stromal cell–derived vesicular cargo on B-cell acute lymphoblastic leukemia progression

Author:

Karantanou Christina1ORCID,Minciacchi Valentina R.1ORCID,Kumar Rahul1,Zanetti Costanza1ORCID,Bravo Jimena1,Pereira Raquel S.1,Tascher Georg2ORCID,Tertel Tobias3ORCID,Covarrubias-Pinto Adriana2ORCID,Bankov Katrin4,Pfeffermann Lisa-Marie5,Bonig Halvard567ORCID,Divieti-Pajevic Paola8,McEwan David G.9ORCID,Giebel Bernd3ORCID,Münch Christian2,Dikic Ivan210,Krause Daniela S.126111213ORCID

Affiliation:

1. 1Institute for Tumor Biology and Experimental Therapy, Georg-Speyer-Haus, Frankfurt am Main, Germany

2. 2Institute of Biochemistry II, Medical Faculty, Goethe University, Frankfurt am Main, Germany

3. 3Institute for Transfusion Medicine, University Hospital Essen, Essen, Germany

4. 4Department of Pathology, Goethe University, Frankfurt am Main, Germany

5. 5German Red Cross Blood Service Baden-Württemberg-Hessen, Institute Frankfurt, Frankfurt, Germany

6. 6Institute for Transfusion Medicine and Immunohematology, Goethe University, Frankfurt, Germany

7. 7Department of Medicine/Hematology, University of Washington, Seattle, WA

8. 8Goldman School of Dental Medicine, Boston University, Boston, MA

9. 9Cancer Research UK Beatson Institute, Glasgow, United Kingdom

10. 10Buchmann Institute for Molecular Life Sciences, Frankfurt am Main, Germany

11. 11Institute for General Pharmacology and Toxicology, Goethe University, Frankfurt am Main, Germany

12. 12Frankfurt Cancer Institute, Frankfurt am Main, Germany

13. 13German Cancer Research Center (DKFZ), Heidelberg, Germany

Abstract

Abstract Leukemia cells reciprocally interact with their surrounding bone marrow microenvironment (BMM), rendering it hospitable to leukemia cell survival, for instance through the release of small extracellular vesicles (sEVs). In contrast, we show here that BMM deficiency of pleckstrin homology domain family M member 1 (PLEKHM1), which serves as a hub between fusion and secretion of intracellular vesicles and is important for vesicular secretion in osteoclasts, accelerates murine BCR-ABL1+ B-cell acute lymphoblastic leukemia (B-ALL) via regulation of the cargo of sEVs released by BMM-derived mesenchymal stromal cells (MSCs). PLEKHM1-deficient MSCs and their sEVs carry increased amounts of syntenin and syndecan-1, resulting in a more immature B-cell phenotype and an increased number/function of leukemia-initiating cells (LICs) via focal adhesion kinase and AKT signaling in B-ALL cells. Ex vivo pretreatment of LICs with sEVs derived from PLEKHM1-deficient MSCs led to a strong trend toward acceleration of murine and human BCR-ABL1+ B-ALL. In turn, inflammatory mediators such as recombinant or B-ALL cell–derived tumor necrosis factor α or interleukin-1β condition murine and human MSCs in vitro, decreasing PLEKHM1, while increasing syntenin and syndecan-1 in MSCs, thereby perpetuating the sEV-associated circuit. Consistently, human trephine biopsies of patients with B-ALL showed a reduced percentage of PLEKHM1+ MSCs. In summary, our data reveal an important role of BMM-derived sEVs for driving specifically BCR-ABL1+ B-ALL, possibly contributing to its worse prognosis compared with BCR-ABL1− B-ALL, and suggest that secretion of inflammatory cytokines by cancer cells in general may similarly modulate the tumor microenvironment.

Publisher

American Society of Hematology

Subject

Hematology

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