Autocrine LTA signaling drives NF-κB and JAK-STAT activity and myeloid gene expression in Hodgkin lymphoma

Author:

von Hoff Linda1,Kärgel Eva1,Franke Vedran2ORCID,McShane Erik3ORCID,Schulz-Beiss Kathrin W.4ORCID,Patone Giannino5,Schleussner Nikolai67,Kolesnichenko Marina1,Hübner Norbert5,Daumke Oliver4ORCID,Selbach Matthias3,Akalin Altuna2ORCID,Mathas Stephan67,Scheidereit Claus1ORCID

Affiliation:

1. Research Group “Signal Transduction in Tumor Cells,”

2. Research Group “Bioinformatics/Mathematical Modelling Platform,”

3. Research Group “Proteome Dynamics,”

4. Research Group “Structural Biology of Membrane Associated Processes,”

5. Research Group “Genetics and Genomics of Cardiovascular Diseases,” and

6. Research Group “Biology of Malignant Lymphomas,” Max-Delbrück-Center for Molecular Medicine, Berlin, Germany; and

7. Research Group “Hematology, Oncology, and Tumor Immunology,” Charité-Universitätsmedizin Berlin, Berlin, Germany

Abstract

Abstract Persistent NF-κB activation is a hallmark of the malignant Hodgkin/Reed-Sternberg (HRS) cells in classical Hodgkin lymphoma (cHL). Genomic lesions, Epstein-Barr virus infection, soluble factors, and tumor–microenvironment interactions contribute to this activation. Here, in an unbiased approach to identify the cHL cell-secreted key factors for NF-κB activation, we have dissected the secretome of cultured cHL cells by chromatography and subsequent mass spectrometry. We identified lymphotoxin-α (LTA) as the causative factor for autocrine and paracrine activation of canonical and noncanonical NF-κB in cHL cell lines. In addition to inducing NF-κB, LTA promotes JAK2/STAT6 signaling. LTA and its receptor TNFRSF14 are transcriptionally activated by noncanonical NF-κB, creating a continuous feedback loop. Furthermore, LTA shapes the expression of cytokines, receptors, immune checkpoint ligands and adhesion molecules, including CSF2, CD40, PD-L1/PD-L2, and VCAM1. Comparison with single-cell gene-activity profiles of human hematopoietic cells showed that LTA induces genes restricted to the lymphoid lineage, as well as those largely restricted to the myeloid lineage. Thus, LTA sustains autocrine NF-κB activation, impacts activation of several signaling pathways, and drives expression of genes essential for microenvironmental interactions and lineage ambiguity. These data provide a robust rationale for targeting LTA as a treatment strategy for cHL patients.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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