Thrombospondin-1 is an endogenous substrate of cereblon responsible for immunomodulatory drugs-induced thromboembolism.
Kiwamu HatakeyamaYoshikane KikushigeDaisuke IshiharaShunsuke YamamotoGentaro KawanoTaro TochigiToshihiro MiyamotoTeppei SakodaAndy ChristoforouYuya KunisakiMitsuhiro FukataKoji KatoTakumi ItoHiroshi HandaKoichi AkashiPublished in: Blood advances (2024)
Immunomodulatory drugs (IMiDs) are key drugs for treating multiple myeloma and myelodysplastic syndrome with chromosome 5q deletion. IMiDs exert their pleiotropic effects through the interaction between cell-specific substrates and cereblon, a substrate receptor of the E3 ubiquitin ligase complex. Thus, identification of cell-specific substrates is important for understanding the effects of IMiDs. IMiDs increase the risk of thromboembolism, which sometimes results in fatal clinical outcomes. In this study, we sought to clarify the molecular mechanisms underlying IMiDs-induced thrombosis. We investigated cereblon substrates in human megakaryocytes using liquid chromatography-mass spectrometry and found that thrombospondin-1 (THBS-1), which is an inhibitor of a disintegrin-like and metalloproteinase with thrombospondin type 1 motifs 13 (ADAMTS13), functions as an endogenous substrate in human megakaryocytes. IMiDs inhibited the proteasomal degradation of THBS-1 by impairing the recruitment of cereblon to THBS-1, leading to aberrant accumulation of THBS-1. We observed a significant increase in THBS-1 in peripheral blood mononuclear cells (PBMNCs) as well as larger von Willebrand factor (vWF) multimers in the plasma of patients with myeloma, who were treated with IMiDs. These results collectively suggest that THBS-1 represents an endogenous substrate of cereblon. This pairing is disrupted by IMiDs, and the aberrant accumulation of THBS-1 plays an important role in the pathogenesis of IMiDs-induced thromboembolism.
Keyphrases
- mass spectrometry
- high glucose
- endothelial cells
- liquid chromatography
- multiple myeloma
- diabetic rats
- drug induced
- cell therapy
- amino acid
- oxidative stress
- induced pluripotent stem cells
- pulmonary embolism
- gene expression
- structural basis
- high resolution
- pluripotent stem cells
- bone marrow
- ms ms
- capillary electrophoresis
- copy number
- solid phase extraction