The Histone Deacetylase SIRT6 Is a Tumor Suppressor that Controls Cancer Metabolism
Author(s) -
Carlos Sebastián,
Bernadette Zwaans,
Dafne M. Silberman,
Melissa Gymrek,
Alon Goren,
Lei Zhong,
Oren Ram,
Jessica Truelove,
Alexander R. Guimarães,
Debra Toiber,
Claudia Cosentino,
Joel K. Greenson,
Alasdair I. MacDonald,
Liane M. McGlynn,
Fraser Maxwell,
Joanne Edwards,
Sofia Giacosa,
Ernesto Guccione,
Ralph Weissleder,
B Bernstein,
Aviv Regev,
Paul G. Shiels,
David B. Lombard,
Raúl Mostoslavsky
Publication year - 2012
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2012.10.047
Subject(s) - sirt6 , biology , carcinogenesis , warburg effect , cancer research , anaerobic glycolysis , histone deacetylase , suppressor , cancer , reprogramming , cancer cell , tumor progression , hdac4 , regulator , microbiology and biotechnology , histone , genetics , acetylation , cell , sirtuin , gene
Reprogramming of cellular metabolism is a key event during tumorigenesis. Despite being known for decades (Warburg effect), the molecular mechanisms regulating this switch remained unexplored. Here, we identify SIRT6 as a tumor suppressor that regulates aerobic glycolysis in cancer cells. Importantly, loss of SIRT6 leads to tumor formation without activation of known oncogenes, whereas transformed SIRT6-deficient cells display increased glycolysis and tumor growth, suggesting that SIRT6 plays a role in both establishment and maintenance of cancer. By using a conditional SIRT6 allele, we show that SIRT6 deletion in vivo increases the number, size, and aggressiveness of tumors. SIRT6 also functions as a regulator of ribosome metabolism by corepressing MYC transcriptional activity. Lastly, Sirt6 is selectively downregulated in several human cancers, and expression levels of SIRT6 predict prognosis and tumor-free survival rates, highlighting SIRT6 as a critical modulator of cancer metabolism. Our studies reveal SIRT6 to be a potent tumor suppressor acting to suppress cancer metabolism.
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