4.6 Article

Transcriptional Regulation of Cystathionine-γ-Lyase in Endothelial Cells by NADPH Oxidase 4-Dependent Signaling

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 291, Issue 4, Pages 1774-1788

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M115.685578

Keywords

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Funding

  1. British Heart Foundation (BHF) [FS/11/80/29330, RG/13/11/30384]
  2. BHF Centre of Excellence Award [RE/13/2/30182]
  3. Biotechnology and Biological Sciences Research Council [BB/C503646/1] Funding Source: researchfish
  4. British Heart Foundation [PG/11/124/29318, PG/10/98/28655, RG/13/11/30384, FS/14/1/30551, RG/12/12/29872, PG/15/26/31373, PG/13/13/30018, FS/11/45/28859] Funding Source: researchfish
  5. Medical Research Council [998501, G1000458, MR/K003232/1, G0600785, MR/L009684/1, G0700320] Funding Source: researchfish
  6. MRC [G0600785, G1000458, G0700320, MR/L009684/1, MR/K003232/1] Funding Source: UKRI

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The gasotransmitter, hydrogen sulfide (H2S) is recognized as an important mediator of endothelial cell homeostasis and function that impacts upon vascular tone and blood pressure. Cystathionine-gamma-lyase (CSE) is the predominant endothelial generator of H2S, and recent evidence suggests that its transcriptional expression is regulated by the reactive oxygen species, H2O2. However, the cellular source of H2O2 and the redox-dependent molecular signaling pathway that modulates this is not known. We aimed to investigate the role of Nox4, an endothelial generator of H2O2, in the regulation of CSE in endothelial cells. Both gain- and loss-of-function experiments in human endothelial cells in vitro demonstrated Nox4 to be a positive regulator of CSE transcription and protein expression. We demonstrate that this is dependent upon a heme-regulated inhibitor kinase/eIF2 alpha/activating transcription factor 4 (ATF4) signaling module. ATF4 was further demonstrated to bind directly to cis-regulatory sequences within the first intron of CSE to activate transcription. Furthermore, CSE expression was also increased in cardiac microvascular endothelial cells, isolated from endothelial-specific Nox4 transgenic mice, compared with wild-type littermate controls. Using wire myography we demonstrate that endothelial-specific Nox4 transgenic mice exhibit a hypo-contractile phenotype in response to phenylephrine that was abolished when vessels were incubated with a CSE inhibitor, propargylglycine. We, therefore, conclude that Nox4 is a positive transcriptional regulator of CSE in endothelial cells and propose that it may in turn contribute to the regulation of vascular tone via the modulation of H2S production.

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