4.5 Article

Inhibition of human betaine-homocysteine methyltransferase expression by S-adenosylmethionline and methylthioadenosine

Journal

BIOCHEMICAL JOURNAL
Volume 401, Issue -, Pages 87-96

Publisher

PORTLAND PRESS LTD
DOI: 10.1042/BJ20061119

Keywords

betaine-homocysteine nnethyltransferase (BHMT); endoplasmic reticulum stress; HepG2 cell; 5 '-methylthioadenosine; nuclear factor kappa B (NF-kappa B); S-adenosylmethionine

Funding

  1. NCCIH NIH HHS [R01 AT001576, AT1576] Funding Source: Medline
  2. NIAAA NIH HHS [AA13847, AA12677, T32 AA007578, T32 AA07578, R01 AA012677, R01 AA013847] Funding Source: Medline
  3. NIDDK NIH HHS [P30 DK048522, DK51719, DK48522, R01 DK051719] Funding Source: Medline
  4. National Center for Complementary & Integrative Health [R01AT001576] Funding Source: NIH RePORTER
  5. NATIONAL INSTITUTE OF DIABETES AND DIGESTIVE AND KIDNEY DISEASES [P30DK048522, R01DK051719] Funding Source: NIH RePORTER
  6. NATIONAL INSTITUTE ON ALCOHOL ABUSE AND ALCOHOLISM [R01AA012677, R01AA013847, T32AA007578] Funding Source: NIH RePORTER

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BHMT (betaine-homocysteine methyltransferase) remethylates homocysteine to form methionine. SAM (S-adenosyltnethionine) inhibits BHMT activity, but whether SAM modulates BHMT gene expression is unknown. Transcriptional regulation of the human BHMT is also unknown. The present study examined regulation of the human BHMT gene by SAM and its metabolite, MTA (5'-methylthioadenosine). To facilitate these studies, we cloned the 2.7 kb 5'-flanking region of the human BHMT gene (GenBank (R) accession number AY325901). Both SAM and MTA treatment of HepG2 cells resulted in a dose- and time-dependent decrease in BHMT mRNA levels, which paralleled their effects on the BHMT promoter activity. Maximal suppression was observed with the BHMT promoter construct -347/+33. which contains a number of NF-kappa B (nuclear factor kappa B) binding sites. SAM and MTA treatment increased NF-kappa B nuclear binding and NF-kappa B-driven luciferase activities, and increased nuclear binding activity of multiple histone deacetylase co-repressors to the NF-kappa B sites. Overexpression of p50 and p65 decreased BHMT promoter activity, while blocking NF-kappa B activation increased BHMT expression and promoter activity, and prevented SAM but not MTA's ability to inhibit BHMT expression. The NF-kappa B binding site at -301 is responsible, at least in part, for this effect. Lower BHMT expression can impair homocysteine metabolism, which can induce ER (endoplasmic reticulum) stress. Indeed, NITA treatment resulted in increased expression ER stress markers. In conclusion, SAM and MTA down-regulate BHMT expression in HepG2 cells in part by inducing NF-kappa B, which acts as a repressor for the human BHMT gene. While SAM's mechanism is NF-kappa B-dependent, MTA has both NF-kappa B-dependent and -independent mechanisms.

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