Immunoglobulin Free Light Chains and GAGs Mediate Multiple Myeloma Extracellular Vesicles Uptake and Secondary NfκB
Giuseppe Di Noto1, Marco Chiarini2, Lucia Paolini1
1Department of Molecular and Translational Medicine, Faculty of Medicine, University of Brescia , Brescia , Italy.
Abstract:
Multiple myeloma (MM) is a hematological malignancy caused by a microenviromentally aided persistence of plasma cells in the bone marrow. Monoclonal plasma cells often secrete high amounts of immunoglobulin free light chains (FLCs) that could induce tissue damage. Recently, we showed that FLCs are internalized in endothelial and myocardial cell lines and secreted in extracellular vesicles (EVs). MM serum derived EVs presented phenotypic differences if compared with monoclonal gammopathy of undetermined significance (MGUS) serum derived EVs suggesting their involvement in MM pathogenesis or progression. To investigate the effect of circulating EVs on endothelial and myocardial cells, we purified MM and MGUS serum derived EVs with differential ultracentrifugation protocols and tested their biological activity. We found that MM and MGUS EVs induced different proliferation and internalization rates in endothelial and myocardial cells, thus we tried to find specific targets in MM EVs docking and processing. Pre-treatment of EVs with anti-FLCs antibodies or heparin blocked the MM EVs uptake, highlighting that FLCs and glycosaminoglycans are involved. Indeed, only MM EVs exposure induced a strong nuclear factor kappa B nuclear translocation that was completely abolished after anti-FLCs antibodies and heparin pre-treatment. The protein tyrosine kinase c-src is present on MM circulating EVs and redistributes to the cell plasma membrane after MM EVs exposure. The anti-FLCs antibodies and heparin pre-treatments were able to block the intracellular re-distribution of the c-src kinase and the subsequent c-src kinase containing EVs production. Our results open new insights in EVs cellular biology and in MM therapeutic and diagnostic approaches.
Insights
Multiple myeloma (MM) serum extracellular vesicles (EVs) carry free light chains (FLCs) that drive cellular changes. Targeting FLCs and heparin on MM EVs may offer new therapeutic and diagnostic strategies for this cancer.
Area of Science:
- Hematology
- Cell Biology
- Biochemistry
Background:
- Multiple myeloma (MM) is a plasma cell malignancy characterized by abnormal cell persistence in bone marrow.
- Secreted immunoglobulin free light chains (FLCs) from monoclonal plasma cells can cause tissue damage.
- Extracellular vesicles (EVs) derived from MM serum exhibit distinct phenotypes compared to those from monoclonal gammopathy of undetermined significance (MGUS).
Purpose of the Study:
- To investigate the biological activity of MM and MGUS serum-derived EVs on endothelial and myocardial cells.
- To identify specific molecular targets involved in MM EV uptake and processing.
- To explore the role of FLCs and glycosaminoglycans in MM EV-mediated cellular effects.
Main Methods:
- Differential ultracentrifugation was used to purify EVs from MM and MGUS patient sera.
- Endothelial and myocardial cell lines were exposed to purified EVs to assess proliferation and internalization.
- EVs were pre-treated with anti-FLCs antibodies or heparin to block uptake and analyze downstream signaling.
- Nuclear factor kappa B (NF-κB) translocation and c-src kinase activity were measured.
Main Results:
- MM and MGUS EVs demonstrated differential effects on endothelial and myocardial cell proliferation and internalization.
- Pre-treatment of MM EVs with anti-FLCs antibodies or heparin significantly inhibited their uptake by cells.
- MM EV exposure induced nuclear translocation of NF-κB, which was blocked by anti-FLCs antibodies and heparin.
- The protein tyrosine kinase c-src was found on MM EVs and redistributed upon cell exposure, an effect also blocked by pre-treatment.
Conclusions:
- FLCs and glycosaminoglycans are key mediators of MM EV uptake and subsequent cellular responses, including NF-κB activation and c-src kinase redistribution.
- Circulating MM EVs possess distinct biological activities influencing target cells, potentially contributing to MM pathogenesis.
- These findings suggest novel therapeutic targets and diagnostic biomarkers for MM based on EV-FLC interactions.
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