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The CALR mutations enhance the expression of the immunosuppressive proteins GARP and LAP on peripheral blood lymphocytes through increased binding of activated platelets

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Abstract

Recently, an antibody which inhibits the glycoprotein A repetitions predominant (GARP)-mediated release of active transforming growth factor beta (TGFβ) from the TGFβ propeptide latency-associated peptide (LAP) showed preclinical activity in a murine model of the chronic myeloproliferative neoplasms (MPN). Consequently, we investigated the expression of the immunosuppressive molecules LAP and GARP on peripheral blood lymphocytes from 56 MPN patients and 11 healthy donors (HD). We found that lymphocytes from patients with MPN express higher levels of LAP and GARP with no strong differences found between the different MPN diagnoses. The impact of clinical parameters on the expression of LAP and GARP by lymphocytes showed that patients with calreticulin (CALR)mut MPN have increased expression compared with HD and patients with the Januskinase2 (JAK2) mutation. The fraction of lymphocytes bound to activated platelets (aPLT) strongly correlate to LAP and GARP expression suggesting that it is not the lymphocytes themselves but aPLT, which confer the increased expression of GARP and LAP on MPN patient lymphocytes. Notably, no differences in neither platelet counts nor anti-thrombotic therapy was identified between patients with JAK2- and CALRmut patients. Analysis of platelet gene expression failed to identify differences in expression of relevant genes between JAK2- and CALRmut patients.

Original languageEnglish
Pages (from-to)1417-1429
Number of pages13
JournalBritish Journal of Haematology
Volume205
Issue number4
Early online date20 Aug 2024
DOIs
Publication statusPublished - Oct 2024

Funding

This study is supported by the BRIDGE-Translational Excellence Program (bridge. ku. dk) at the Faculty of Health and Medical Sciences, University of Copenhagen, funded by the Novo Nordisk Foundation. Grant agreement no. NNF20SA0064340. Christina Ellervik is partly funded by the Laboratory Medicine Endowment Fund of Boston Children's Hospital, Boston, USA. The PlateletSeq data were supported by grants from the Cancer Council Western Australia (APP1065493 and CCWA ECCRoY 2016), the University of Western Australia (RA/1/1200/883), The Ruby Red Foundation (RA/1/3246/2), Ann Helene Toakley Charitable Endowment (IPAP2018/1802) and Raine Medical Research Foundation (RPG043-19). Belinda B Guo was supported by a Cancer Council Western Australia Postdoctoral Fellowship and a Gunn Family National Career Development Fellowship for Women in Haematology from Snowdome Foundation and Maddie Riewoldt's Vision. Matthew Linden was an ISAC Marylou Ingram Scholar

FundersFunder number
Novo Nordisk FoundationNNF20SA0064340
Boston Children's Hospital
Cancer Council Western AustraliaAPP1065493, CCWA ECCRoY 2016
University of Western AustraliaRA/1/1200/883
Ruby Red FoundationRA/1/3246/2
Ann Helene Toakley Charitable EndowmentIPAP2018/1802
Raine Medical Research FoundationRPG043-19
Cancer Council Western Australia
Gunn Family National Career Development Fellowship for Women in Haematology

    Keywords

    • Adult
    • Aged
    • Blood Platelets/metabolism
    • Calreticulin/genetics
    • Female
    • Humans
    • Janus Kinase 2/genetics
    • Lymphocytes/metabolism
    • Male
    • Membrane Proteins/genetics
    • Middle Aged
    • Mutation
    • Myeloproliferative Disorders/genetics
    • Platelet Activation/genetics
    • Myeloproliferative neoplasms
    • Adaptive immunity
    • Immune escape
    • Garp
    • Calr
    • TGF beta
    • Platelets

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