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首页> 外文期刊>Nature Communications >Caspase-10 inhibits ATP-citrate lyase-mediated metabolic and epigenetic reprogramming to suppress tumorigenesis
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Caspase-10 inhibits ATP-citrate lyase-mediated metabolic and epigenetic reprogramming to suppress tumorigenesis

机译:Caspase-10抑制ATP-柠檬酸盐溶酶介导的代谢和表观遗传重编程以抑制肿瘤发生

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摘要

Caspase-10 belongs to the class of initiator caspases and is a close homolog of caspase-8. However, the lack of caspase-10 in mice and limited substrate repertoire restricts the understanding of its physiological functions. Here, we report that ATP-citrate lyase (ACLY) is a caspase-10 substrate. Caspase-10 cleaves ACLY at the conserved Asp1026 site under conditions of altered metabolic homeostasis. Cleavage of ACLY abrogates its enzymatic activity and suppresses the generation of acetyl-CoA, which is critical for lipogenesis and histone acetylation. Thus, caspase-10-mediated ACLY cleavage results in reduced intracellular lipid levels and represses GCN5-mediated histone H3 and H4 acetylation. Furthermore, decline in GCN5 activity alters the epigenetic profile, resulting in downregulation of proliferative and metastatic genes. Thus caspase-10 suppresses ACLY-promoted malignant phenotype. These findings expand the substrate repertoire of caspase-10 and highlight its pivotal role in inhibiting tumorigenesis through metabolic and epigenetic mechanisms.
机译:Caspase-10属于引发剂胱天蛋白酶的类,是Caspase-8的密切同源物。然而,小鼠中缺乏Caspase-10和有限的基板曲目限制了对其生理功能的理解。在这里,我们报告说,ATP-柠檬酸酯裂解酶(酰基)是半胱天冬酶-10衬底。在改变代谢稳态的条件下,Caspase-10在保守的ASP1026位点上均匀切割。癌症消除酶活性并抑制乙酰-CoA的产生,这对于脂肪生成和组蛋白乙酰化至关重要。因此,Caspase-10介导的促进裂解导致细胞内脂质水平降低,并抑制GCN5介导的组蛋白H3和H4乙酰化。此外,GCN5活性的下降改变了表观遗传概况,导致增殖和转移基因的下调。因此,Caspase-10抑制酰度促进的恶性表型。这些发现扩展了Caspase-10的基材曲目,并突出了通过代谢和表观遗传机制抑制肿瘤发生的枢转作用。

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