FIH permits NAA10 to catalyze the oxygen-dependent lysyl-acetylation of HIF-1 alpha

  • Kang, Jengmin
  • Chun, Yang-Sook
  • Huh, June
  • Park, Jong-Wan
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31
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33

초록

The N-terminal acetyltransferase A (NatA) complex, which is composed of NAA10 and NAA15, catalyzes N-terminal acetylation of many proteins in a co-translational manner. Structurally, the catalytic subunit NAA10 was believed to have no activity toward an internal lysine residue because the gate of its catalytic pocket is too narrow. However, several studies have demonstrated that the monomeric NAA10 can acetylate the internal lysine residues of several substrates including hypoxia-inducible factor 1 alpha (HIF-1 alpha). How NAA10 acetylates lysine residues has been an unsolved question. We here found that human FIH (factor inhibiting HIF) hydroxylates human NAA10 at W38 oxygen-dependently and this permits NAA10 to express the lysyl-acetyltransferase activity. The hydroxylated W38 forms a new hydrogen-bond with A67 and widens the gate at the catalytic pocket, which allows the entrance of a lysine residue to the site. Since the FIH-dependent hydroxylation of NAA10 occurs oxygen-dependently, NAA10 acetylates HIF-1 alpha under normoxia but does not under hypoxia. Consequently, the acetylation promotes the pVHL binding to HIF-1 alpha, and in turn HIF-1 alpha is destructed via the ubiquitin-proteasome system. This study provides a novel oxygen-sensing process that determines the substrate specificity of NAA10 depending on an ambient oxygen tension.

키워드

FIHNAA10HIF-1 alphaTryptophan hydroxylationLysine acetylationINDUCIBLE-FACTOR (HIF)-1-ALPHAASPARAGINYL HYDROXYLASEPOSTTRANSLATIONAL MODIFICATIONHYPOXIAPROTEINSCANCERACETYLTRANSFERASEDESTABILIZATIONREGULATORHARD1
제목
FIH permits NAA10 to catalyze the oxygen-dependent lysyl-acetylation of HIF-1 alpha
저자
Kang, JengminChun, Yang-SookHuh, JunePark, Jong-Wan
DOI
10.1016/j.redox.2018.09.002
발행일
2018-10
유형
Article
저널명
Redox Biology
19
페이지
364 ~ 374