4.8 Article

Complex-dependent histone acetyltransferase activity of KAT8 determines its role in transcription and cellular homeostasis

期刊

MOLECULAR CELL
卷 81, 期 8, 页码 1749-+

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2021.02.012

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资金

  1. European Union's Horizon 2020 research and innovation program under Marie Sk1odowska-Curie grant [659171, 749362]
  2. Danish Cancer Society [R167-A10877]
  3. Novo Nordisk Foundation (NNF) [NNF17CC0027852]
  4. Memorial Sloan Kettering Cancer Center Support Grant [NIH P30 CA008748]
  5. NIH [R44 CA212733, R44 GM136172, R44 HG008907, R44 GM116584]
  6. Danish National Mass Spectrometry Platform for Functional Proteomics (PRO-MS) [5072-00007B]
  7. VILLUM Center for Bioanalytical Sciences [7292]
  8. Lundbeck Foundation [R231-2016-3093]
  9. Independent Research Fund Denmark [4181-00172B]
  10. Ministry of Education of the Republic of Belarus [3.08.3 [469/54]]
  11. Marie Curie Actions (MSCA) [749362, 659171] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

KAT8 displays complex-dependent catalytic activity, catalyzing different histone modifications within the NSL and MSL complexes. The NSL complex is essential for cell survival and transcription initiation, while the MSL complex proteins and H4K16ac are not required for cell proliferation and chromatin accessibility.
Acetylation of lysine 16 on histone H4 (H4K16ac) is catalyzed by histone acetyltransferase KAT8 and can prevent chromatin compaction in vitro. Although extensively studied in Drosophila, the functions of H4K16ac and two KAT8-containing protein complexes (NSL and MSL) are not well understood in mammals. Here, we demonstrate a surprising complex-dependent activity of KAT8: it catalyzes H4K5ac and H4K8ac as part of the NSL complex, whereas it catalyzes the bulk of H4K16ac as part of the MSL complex. Furthermore, we show that MSL complex proteins and H4K16ac are not required for cell proliferation and chromatin accessibility, whereas the NSL complex is essential for cell survival, as it stimulates transcription initiation at the promoters of housekeeping genes. In summary, we show that KAT8 switches catalytic activity and function depending on its associated proteins and that, when in the NSL complex, it catalyzes H4K5ac and H4K8ac required for the expression of essential genes.

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