Haem oxygenase is synthetically lethal with the tumour suppressor fumarate hydratase

被引:400
作者
Frezza, Christian [1 ]
Zheng, Liang [1 ]
Folger, Ori [2 ]
Rajagopalan, Kartik N. [3 ,4 ]
MacKenzie, Elaine D. [1 ]
Jerby, Livnat [2 ]
Micaroni, Massimo [5 ]
Chaneton, Barbara [1 ]
Adam, Julie
Hedley, Ann [1 ]
Kalna, Gabriela [1 ]
Tomlinson, Ian P. M. [6 ]
Pollard, Patrick J.
Watson, Dave G. [7 ]
Deberardinis, Ralph J. [3 ,4 ]
Shlomi, Tomer [8 ]
Ruppin, Eytan [2 ,9 ]
Gottlieb, Eyal [1 ]
机构
[1] Beatson Inst Canc Res, Canc Res UK, Glasgow G61 1BD, Lanark, Scotland
[2] Tel Aviv Univ, Blavatnik Sch Comp Sci, IL-69978 Tel Aviv, Israel
[3] Univ Texas SW Med Ctr Dallas, Dept Pediat, Dallas, TX 75390 USA
[4] Univ Texas SW Med Ctr Dallas, McDermott Ctr Human Growth & Dev, Dallas, TX 75390 USA
[5] Univ Queensland, Inst Mol Biosci, Brisbane, Qld 4072, Australia
[6] Univ Oxford, Wellcome Trust Ctr Human Genet, Mol & Populat Genet Lab, Oxford OX3 7BN, England
[7] Univ Strathclyde, Strathclyde Inst Pharmaceut & Biomed Sci, Glasgow G4 0NR, Lanark, Scotland
[8] Technion Israel Inst Technol, Dept Comp Sci, IL-32000 Haifa, Israel
[9] Tel Aviv Univ, Sackler Sch Med, IL-69978 Tel Aviv, Israel
基金
英国惠康基金; 以色列科学基金会;
关键词
RENAL-CANCER; MODELS; CELLS; RECONSTRUCTION; PROTEIN; ASSAY;
D O I
10.1038/nature10363
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Fumarate hydratase (FH) is an enzyme of the tricarboxylic acid cycle (TCA cycle) that catalyses the hydration of fumarate into malate. Germline mutations of FH are responsible for hereditary leiomyomatosis and renal-cell cancer (HLRCC)(1). It has previously been demonstrated that the absence of FH leads to the accumulation of fumarate, which activates hypoxia-inducible factors (HIFs) at normal oxygen tensions(2-4). However, so far no mechanism that explains the ability of cells to survive without a functional TCA cycle has been provided. Here we use newly characterized genetically modified kidney mouse cells in which Fh1 has been deleted, and apply a newly developed computer model of the metabolism of these cells to predict and experimentally validate a linear metabolic pathway beginning with glutamine uptake and ending with bilirubin excretion from Fh1-deficient cells. This pathway, which involves the biosynthesis and degradation of haem, enables Fh1-deficient cells to use the accumulated TCA cycle metabolites and permits partial mitochondrial NADH production. We predicted and confirmed that targeting this pathway would render Fh1-deficient cells nonviable, while sparing wild-type Fh1-containing cells. This work goes beyond identifying a metabolic pathway that is induced in Fh1-deficient cells to demonstrate that inhibition of haem oxygenation is synthetically lethal when combined with Fh1 deficiency, providing a new potential target for treating HLRCC patients.
引用
收藏
页码:225 / U132
页数:6
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