Modulating glycosphingolipid metabolism and autophagy improves outcomes in pre-clinical models of myeloma bone disease

Author:

Leng HoufuORCID,Zhang HanlinORCID,Li Linsen,Zhang ShuhaoORCID,Wang Yanping,Chavda Selina J.,Galas-Filipowicz DariaORCID,Lou Hantao,Ersek Adel,Morris Emma V.ORCID,Sezgin Erdinc,Lee Yi-Hsuan,Li Yunsen,Lechuga-Vieco Ana VictoriaORCID,Tian Mei,Mi Jian-Qing,Yong KweeORCID,Zhong QingORCID,Edwards Claire M.ORCID,Simon Anna KatharinaORCID,Horwood Nicole J.ORCID

Abstract

AbstractPatients with multiple myeloma, an incurable malignancy of plasma cells, frequently develop osteolytic bone lesions that severely impact quality of life and clinical outcomes. Eliglustat, a U.S. Food and Drug Administration-approved glucosylceramide synthase inhibitor, reduced osteoclast-driven bone loss in preclinical in vivo models of myeloma. In combination with zoledronic acid, a bisphosphonate that treats myeloma bone disease, eliglustat provided further protection from bone loss. Autophagic degradation of TRAF3, a key step for osteoclast differentiation, was inhibited by eliglustat as evidenced by TRAF3 lysosomal and cytoplasmic accumulation. Eliglustat blocked autophagy by altering glycosphingolipid composition whilst restoration of missing glycosphingolipids rescued autophagy markers and TRAF3 degradation thus restoring osteoclastogenesis in bone marrow cells from myeloma patients. This work delineates both the mechanism by which glucosylceramide synthase inhibition prevents autophagic degradation of TRAF3 to reduce osteoclastogenesis as well as highlighting the clinical translational potential of eliglustat for the treatment of myeloma bone disease.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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