Literature DB >> 32963011

FAM46C and FNDC3A Are Multiple Myeloma Tumor Suppressors That Act in Concert to Impair Clearing of Protein Aggregates and Autophagy.

Nicola Manfrini1,2, Marilena Mancino1,3, Annarita Miluzio1, Stefania Oliveto1,2, Matteo Balestra1, Piera Calamita1,2, Roberta Alfieri1, Riccardo L Rossi1, Marco Sassoè-Pognetto4, Chiara Salio5, Alessandro Cuomo6, Tiziana Bonaldi6, Marcello Manfredi7,8,9, Emilio Marengo7,8,10, Elia Ranzato10, Simona Martinotti10, Davide Cittaro11, Giovanni Tonon11,12, Stefano Biffo13,2.   

Abstract

Multiple myeloma is a plasma cell neoplasm characterized by the production of unfolded immunoglobulins, which cause endoplasmic reticulum (ER) stress and sensitivity to proteasome inhibition. The genomic landscape of multiple myeloma is characterized by the loss of several genes rarely mutated in other cancers that may underline specific weaknesses of multiple myeloma cells. One of these is FAM46C that is lost in more than 10% of patients with multiple myeloma. We show here that FAM46C is part of a new complex containing the ER-associated protein FNDC3A, which regulates trafficking and secretion and, by impairing autophagy, exacerbates proteostatic stress. Reconstitution of FAM46C in multiple myeloma cells that had lost it induced apoptosis and ER stress. Apoptosis was preceded by an increase of intracellular aggregates, which was not linked to increased translation of IgG mRNA, but rather to impairment of autophagy. Biochemical analysis showed that FAM46C requires interaction with ER bound protein FNDC3A to reside in the cytoplasmic side of the ER. FNDC3A was lost in some multiple myeloma cell lines. Importantly, depletion of FNDC3A increased the fitness of FAM46C-expressing cells and expression of FNDC3A in cells that had lost it recapitulated the effects of FAM46C, inducing aggregates and apoptosis. FAM46C and FNDC3A formed a complex that modulates secretion routes, increasing lysosome exocytosis. The cellular landscape generated by FAM46C/FNDC3A expression predicted sensitivity to sphingosine kinase inhibition. These results suggest that multiple myeloma cells remodel their trafficking machinery to cope with ER stress. SIGNIFICANCE: This study identifies a new multiple myeloma-specific tumor suppressor complex that regulates autophagy and unconventional secretion, highlighting the sensitivity of multiple myeloma cells to the accumulation of protein aggregates. ©2020 American Association for Cancer Research.

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Year:  2020        PMID: 32963011     DOI: 10.1158/0008-5472.CAN-20-1357

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  3 in total

1.  mTOR-dependent translation drives tumor infiltrating CD8+ effector and CD4+ Treg cells expansion.

Authors:  Benedetta De Ponte Conti; Annarita Miluzio; Fabio Grassi; Sergio Abrignani; Stefano Biffo; Sara Ricciardi
Journal:  Elife       Date:  2021-11-17       Impact factor: 8.713

Review 2.  Multiple myeloma with high-risk cytogenetics and its treatment approach.

Authors:  Ichiro Hanamura
Journal:  Int J Hematol       Date:  2022-05-09       Impact factor: 2.319

3.  Correlation of the prognostic value of FNDC4 in glioblastoma with macrophage polarization.

Authors:  Hongwu Li; Xiaofei Yan; Shaowu Ou
Journal:  Cancer Cell Int       Date:  2022-09-02       Impact factor: 6.429

  3 in total

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