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Merck
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  • Recognition of Histone Crotonylation by Taf14 Links Metabolic State to Gene Expression.

Recognition of Histone Crotonylation by Taf14 Links Metabolic State to Gene Expression.

Molecular cell (2019-11-05)
Graeme J Gowans, Joseph B Bridgers, Jibo Zhang, Raghuvar Dronamraju, Anthony Burnetti, Devin A King, Aline V Thiengmany, Stephen A Shinsky, Natarajan V Bhanu, Benjamin A Garcia, Nicolas E Buchler, Brian D Strahl, Ashby J Morrison
摘要

Metabolic signaling to chromatin often underlies how adaptive transcriptional responses are controlled. While intermediary metabolites serve as co-factors for histone-modifying enzymes during metabolic flux, how these modifications contribute to transcriptional responses is poorly understood. Here, we utilize the highly synchronized yeast metabolic cycle (YMC) and find that fatty acid β-oxidation genes are periodically expressed coincident with the β-oxidation byproduct histone crotonylation. Specifically, we found that H3K9 crotonylation peaks when H3K9 acetylation declines and energy resources become limited. During this metabolic state, pro-growth gene expression is dampened; however, mutation of the Taf14 YEATS domain, a H3K9 crotonylation reader, results in de-repression of these genes. Conversely, exogenous addition of crotonic acid results in increased histone crotonylation, constitutive repression of pro-growth genes, and disrupted YMC oscillations. Together, our findings expose an unexpected link between metabolic flux and transcription and demonstrate that histone crotonylation and Taf14 participate in the repression of energy-demanding gene expression.

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Sigma-Aldrich
抗乙酰组蛋白H3(Lys9)抗体, serum, Upstate®
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Anti-Histone H3 Antibody, CT, pan, clone A3S, rabbit monoclonal, clone A3S, Upstate®, from rabbit
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Anti-Glucose-6-Phosphate Dehydrogenase (G-6-PDH) antibody produced in rabbit, IgG fraction of antiserum, lyophilized powder
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抗乙酰组蛋白H3(Lys9)抗体, Upstate®, from rabbit
Sigma-Aldrich
抗乙酰组蛋白H3(Lys9)抗体,试用装, Upstate®, from rabbit