: Epigenetics studies the heritable modifications of genome expression that do not affect the nucleotide sequence. Epigenetic modifications can be divided into: DNA methylation, histone modifications, and modulation of genome expression by non-coding RNAs. Alteration of these mechanisms can alter the phenotype, and can lead to disease onset. The endogenous gasotransmitter hydrogen sulfide (H2 S) plays pleiotropic roles in many systems, including the cardiovascular (CV) system, and its mechanism of action mainly includes S-persulfidation of cysteine residues. Recent evidence suggests that many H2 S-mediated biological activities are based on the epigenetic regulation of cellular function, with effects ranging from DNA methylation to modification of histones and regulation of non-coding RNAs. This review describes the role of H2 S-regulating epigenetic mechanisms, providing a panorama of the current literature, and offers a novel scenario for the development of H2 S-releasing 'epidrugs' with a potential clinical use in the prevention and treatment of many CV and non-CV disorders.

Hydrogen sulfide and epigenetics: Novel insights into the cardiovascular effects of this gasotransmitter / Spezzini, J.; Piragine, E.; d'Emmanuele di Villa Bianca, R.; Bucci, M.; Martelli, A.; Calderone, V.. - In: BRITISH JOURNAL OF PHARMACOLOGY. - ISSN 1476-5381. - 180:14(2023), pp. 1793-1802. [10.1111/bph.16083]

Hydrogen sulfide and epigenetics: Novel insights into the cardiovascular effects of this gasotransmitter

d'Emmanuele di Villa Bianca R.;Bucci M.;
2023

Abstract

: Epigenetics studies the heritable modifications of genome expression that do not affect the nucleotide sequence. Epigenetic modifications can be divided into: DNA methylation, histone modifications, and modulation of genome expression by non-coding RNAs. Alteration of these mechanisms can alter the phenotype, and can lead to disease onset. The endogenous gasotransmitter hydrogen sulfide (H2 S) plays pleiotropic roles in many systems, including the cardiovascular (CV) system, and its mechanism of action mainly includes S-persulfidation of cysteine residues. Recent evidence suggests that many H2 S-mediated biological activities are based on the epigenetic regulation of cellular function, with effects ranging from DNA methylation to modification of histones and regulation of non-coding RNAs. This review describes the role of H2 S-regulating epigenetic mechanisms, providing a panorama of the current literature, and offers a novel scenario for the development of H2 S-releasing 'epidrugs' with a potential clinical use in the prevention and treatment of many CV and non-CV disorders.
2023
Hydrogen sulfide and epigenetics: Novel insights into the cardiovascular effects of this gasotransmitter / Spezzini, J.; Piragine, E.; d'Emmanuele di Villa Bianca, R.; Bucci, M.; Martelli, A.; Calderone, V.. - In: BRITISH JOURNAL OF PHARMACOLOGY. - ISSN 1476-5381. - 180:14(2023), pp. 1793-1802. [10.1111/bph.16083]
File in questo prodotto:
File Dimensione Formato  
British J Pharmacology - 2023 - Spezzini - Hydrogen sulfide and epigenetics Novel insights into the cardiovascular effects.pdf

accesso aperto

Tipologia: Versione Editoriale (PDF)
Licenza: Dominio pubblico
Dimensione 735.77 kB
Formato Adobe PDF
735.77 kB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/979070
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 14
  • ???jsp.display-item.citation.isi??? 15
social impact