RAF/MEK/extracellular signal–related kinase pathway suppresses dendritic cell migration and traps dendritic cells in Langerhans cell histiocytosis lesions

Author:

Hogstad Brandon1,Berres Marie-Luise12,Chakraborty Rikhia34,Tang Jun56ORCID,Bigenwald Camille1ORCID,Serasinghe Madhavika1,Lim Karen Phaik Har34,Lin Howard34ORCID,Man Tsz-Kwong34,Remark Romain1,Baxter Samantha5,Kana Veronika1,Jordan Stefan1,Karoulia Zoi1ORCID,Kwan Wing-hong1,Leboeuf Marylene1,Brandt Elisa2,Salmon Helene1,McClain Kenneth34,Poulikakos Poulikos1,Chipuk Jerry1ORCID,Mulder Willem J.M.5,Allen Carl E.34,Merad Miriam1ORCID

Affiliation:

1. Department of Oncological Sciences, Icahn School of Medicine at Mount Sinai, New York, NY

2. Department of Internal Medicine III, University Hospital, RWTH Aachen, Aachen, Germany

3. Texas Children’s Cancer Center, Texas Children’s Hospital, Houston, TX

4. Division of Pediatric Hematology-Oncology, Department of Pediatrics, Baylor College of Medicine, Houston, TX

5. Translational and Molecular Imaging Institute, Icahn School of Medicine at Mount Sinai, New York, NY

6. Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, NY

Abstract

Langerhans cell histiocytosis (LCH) is an inflammatory myeloid neoplasia characterized by granulomatous lesions containing pathological CD207+ dendritic cells (DCs) with constitutively activated mitogen-activated protein kinase (MAPK) pathway signaling. Approximately 60% of LCH patients harbor somatic BRAFV600E mutations localizing to CD207+ DCs within lesions. However, the mechanisms driving BRAFV600E+ LCH cell accumulation in lesions remain unknown. Here we show that sustained extracellular signal–related kinase activity induced by BRAFV600E inhibits C-C motif chemokine receptor 7 (CCR7)–mediated DC migration, trapping DCs in tissue lesions. Additionally, BRAFV600E increases expression of BCL2-like protein 1 (BCL2L1) in DCs, resulting in resistance to apoptosis. Pharmacological MAPK inhibition restores migration and apoptosis potential in a mouse LCH model, as well as in primary human LCH cells. We also demonstrate that MEK inhibitor-loaded nanoparticles have the capacity to concentrate drug delivery to phagocytic cells, significantly reducing off-target toxicity. Collectively, our results indicate that MAPK tightly suppresses DC migration and augments DC survival, rendering DCs in LCH lesions trapped and resistant to cell death.

Funder

HistioCure Foundation

National Heart, Lung, and Blood Institute

National Institutes of Health

German Research Association

St Baldrick’s Foundation

Alex’s Lemonade Stand Foundation

American Society of Hematology

Howard Hughes Medical Institute

Dan L. Duncan Cancer Center

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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