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The Cyclophilin A-CD147 complex promotes the proliferation and homing of multiple myeloma cells.

Nature medicine (2015-05-26)
Di Zhu, Zhongqiu Wang, Jian-Jun Zhao, Teresa Calimeri, Jiang Meng, Teru Hideshima, Mariateresa Fulciniti, Yue Kang, Scott B Ficarro, Yu-Tzu Tai, Zachary Hunter, Douglas McMilin, Haoxuan Tong, Constantine S Mitsiades, Catherine J Wu, Steven P Treon, David M Dorfman, Geraldine Pinkus, Nikhil C Munshi, Pierfrancesco Tassone, Jarrod A Marto, Kenneth C Anderson, Ruben D Carrasco
RESUMEN

B cell malignancies frequently colonize the bone marrow. The mechanisms responsible for this preferential homing are incompletely understood. Here we studied multiple myeloma (MM) as a model of a terminally differentiated B cell malignancy that selectively colonizes the bone marrow. We found that extracellular CyPA (eCyPA), secreted by bone marrow endothelial cells (BMECs), promoted the colonization and proliferation of MM cells in an in vivo scaffold system via binding to its receptor, CD147, on MM cells. The expression and secretion of eCyPA by BMECs was enhanced by BCL9, a Wnt-β-catenin transcriptional coactivator that is selectively expressed by these cells. eCyPA levels were higher in bone marrow serum than in peripheral blood in individuals with MM, and eCyPA-CD147 blockade suppressed MM colonization and tumor growth in the in vivo scaffold system. eCyPA also promoted the migration of chronic lymphocytic leukemia and lymphoplasmacytic lymphoma cells, two other B cell malignancies that colonize the bone marrow and express CD147. These findings suggest that eCyPA-CD147 signaling promotes the bone marrow homing of B cell malignancies and offer a compelling rationale for exploring this axis as a therapeutic target for these malignancies.

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Sigma-Aldrich
Anti-Active-β-Catenin (Anti-ABC) Antibody, clone 8E7, clone 8E7, Upstate®, from mouse
Sigma-Aldrich
Anti-PPIB (AB1) antibody produced in rabbit, IgG fraction of antiserum