The checkpoint inhibitor PD-1H/VISTA controls osteoclast-mediated multiple myeloma bone disease.

Fu, Jing; Li, Shirong; Ma, Huihui; Yang, Jun; Pagnotti, Gabriel M; Brown, Lewis M; Weiss, Stephen J; Mapara, Markus Y et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

Multiple myeloma bone disease is characterized by the development of osteolytic bone lesions. Recent work identified matrix metalloproteinase 13 as a myeloma-derived fusogen that induces osteoclast activation independent of its proteolytic activity. We now identify programmed death-1 homolog, PD-1H, as the bona fide MMP-13 receptor on osteoclasts. Silencing PD-1H or using Pd-1h<sup>-/-</sup> bone marrow cells abrogates the MMP-13-enhanced osteoclast fusion and bone-resorptive activity. Further, PD-1H interacts with the actin cytoskeleton and plays a necessary role in supporting c-Src activation and sealing zone formation. The critical role of PD-1H in myeloma lytic bone lesions was confirmed using a Pd-1h<sup>-/-</sup> myeloma bone disease mouse model wherein myeloma cells injected into Pd-1h<sup>-/-</sup>Rag2<sup>-/-</sup> results in attenuated bone destruction. Our findings identify a role of PD-1H in bone biology independent of its known immunoregulatory functions and suggest that targeting the MMP-13/PD-1H axis may represent a potential approach for the treatment of myeloma associated osteolysis.

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