Fructose-1,6-bisphosphatase 2 inhibits sarcoma progression by restraining mitochondrial biogenesis Journal Article


Authors: Huangyang, P.; Li, F.; Lee, P.; Nissim, I.; Weljie, A. M.; Mancuso, A.; Li, B.; Keith, B.; Yoon, S. S.; Simon, M. C.
Article Title: Fructose-1,6-bisphosphatase 2 inhibits sarcoma progression by restraining mitochondrial biogenesis
Abstract: The remarkable cellular and genetic heterogeneity of soft tissue sarcomas (STSs) limits the clinical benefit of targeted therapies. Here, we show that expression of the gluconeogenic isozyme fructose-1,6-bisphosphatase 2 (FBP2) is silenced in a broad spectrum of sarcoma subtypes, revealing an apparent common metabolic feature shared by diverse STSs. Enforced FBP2 expression inhibits sarcoma cell and tumor growth through two distinct mechanisms. First, cytosolic FBP2 antagonizes elevated glycolysis associated with the "Warburg effect," thereby inhibiting sarcoma cell proliferation. Second, nuclear-localized FBP2 restrains mitochondrial biogenesis and respiration in a catalytic-activity-independent manner by inhibiting the expression of nuclear respiratory factor and mitochondrial transcription factor A (TFAM). Specifically, nuclear FBP2 colocalizes with the c-Myc transcription factor at the TFAM locus and represses c-Myc-dependent TFAM expression. This unique dual function of FBP2 provides a rationale for its selective suppression in STSs, identifying a potential metabolic vulnerability of this malignancy and possible therapeutic target. Copyright © 2019 Elsevier Inc. All rights reserved.
Keywords: glycolysis; myc; mitochondrial function; fructose-1,6-bisphosphatase 2; sarcoma progression; tfam
Journal Title: Cell Metabolism
Volume: 31
Issue: 1
ISSN: 1550-4131
Publisher: Elsevier Inc.  
Date Published: 2020-01-07
Start Page: 174
End Page: 188.e7
Language: English
DOI: 10.1016/j.cmet.2019.10.012
PUBMED: 31761563
PROVIDER: scopus
PMCID: PMC6949384
DOI/URL:
Notes: Article -- Source: Scopus
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  1. Sam Yoon
    108 Yoon