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AuthorZughaier, Susu M
AuthorRouquette-Loughlin, Corinne E
AuthorShafer, William M
Available date2020-06-04T12:15:35Z
Publication Date2020-02-01
Publication NamePathogens
Identifierhttp://dx.doi.org/10.3390/pathogens9020132
CitationZughaier, S.M.; Rouquette-Loughlin, C.E.; Shafer, W.M. Identification of a Neisseria gonorrhoeae Histone Deacetylase: Epigenetic Impact on Host Gene Expression. Pathogens 2020, 9, 132.
IdentifierArticle # 132
URIhttp://hdl.handle.net/10576/15021
AbstractEpigenetic reprogramming in macrophages is termed trained innate immunity, which regulates immune tolerance and limits tissue damage during infection. is a strict human pathogen that causes the sexually transmitted infection termed gonorrhea. Here, we report that this pathogen harbors a gene that encodes a histone deacetylase-like enzyme (Gc-HDAC) that shares high 3D-homology to human HDAC1, HDAC2 and HDAC8. A Gc-HDAC null mutant was constructed to determine the biologic significance of this gene. The results showed that WT gonococci reduced the expression of host defense peptides LL-37, HBD-1 and SLPI in macrophages when compared to its Gc-HDAC-deficient isogenic strain. The enrichment of epigenetic marks in histone tails control gene expression and are known to change during bacterial infections. To investigate whether gonococci exert epigenetic modifications on host chromatin, the enrichment of acetylated lysine 9 in histone 3 (H3K9ac) was investigated using the TLR-focused ChIP array system. The data showed that infection with WT gonococci led to higher H3K9ac enrichment at the promoters of pro-inflammatory mediators' genes, many TLRs, adaptor proteins and transcription factors, suggesting gene activation when compared to infection with the Gc-HDAC-deficient mutant. Taken together, the data suggest that gonococci can exert epigenetic modifications on host cells to modulate certain macrophage defense genes, leading to a maladaptive state of trained immunity.
Languageen
PublisherMDPI
SubjectH3K9ac
HDAC
Neisseria gonorrhoeae
chemokines
cytokines
epigenetic
gonorrhea
infection
macrophage
survival
TitleIdentification of a Histone Deacetylase: Epigenetic Impact on Host Gene Expression.
TypeArticle
Issue Number2
Volume Number9


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