4.8 Article

HIV latency is reversed by ACSS2-driven histone crotonylation

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 128, 期 3, 页码 1190-1198

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI98071

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资金

  1. NIH [AI123105, AI43274, AI116342, AI116218, DK108349, AI132128]
  2. UC Davis Research Investments in Science and Engineering grant
  3. NIH grants [U19-AI096113, UM1-AI126619, UNC CFAR P30-AI504100]

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Eradication of HIV-1 (HIV) is hindered by stable viral reservoirs. Viral latency is epigenetically regulated. While the effects of histone acetylation and methylation at the HIV long-terminal repeat (LTR) have been described, our knowledge of the proviral epigenetic landscape is incomplete. We report that a previously unrecognized epigenetic modification of the HIV LTR, histone crotonylation, is a regulator of HIV latency. Reactivation of latent HIV was achieved following the induction of histone crotonylation through increased expression of the crotonyl-CoA-producing enzyme acyl-CoA synthetase short-chain family member 2 (ACSS2). This reprogrammed the local chromatin at the HIV LTR through increased histone acetylation and reduced histone methylation. Pharmacologic inhibition or siRNA knockdown of ACSS2 diminished histone crotonylation-induced HIV replication and reactivation. ACSS2 induction was highly synergistic in combination with either a protein kinase C agonist (PEP005) or a histone deacetylase inhibitor (vorinostat) in reactivating latent HIV. In the SIV-infected nonhuman primate model of AIDS, the expression of ACSS2 was significantly induced in intestinal mucosa in vivo, which correlated with altered fatty acid metabolism. Our study links the HIV/SIV infection-induced fatty acid enzyme ACSS2 to HIV latency and identifies histone lysine crotonylation as a novel epigenetic regulator for HIV transcription that can be targeted for HIV eradication.

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