Recent Developments in the Role of Histone Acetylation in Asthma.

Int Arch Allergy Immunol

Translational Inflammation Research Division and Core Facility for Single Cell Multiomics, Medical Faculty, Philipps University of Marburg, Member of the German Center for Lung Research (DZL) and the Universities of Giessen and Marburg Lung Center (UGMLC), Marburg, Germany.

Published: July 2024

AI Article Synopsis

  • Epigenetic modifications, particularly histone acetylation, play a significant role in how environmental factors influence asthma development and progression.
  • Recent studies have revealed how histone acetylation affects various cells involved in asthma, including immune cells like CD4+ T cells and structural cells like airway epithelial cells.
  • Dietary changes that impact histone acetylation could help prevent asthma, and targeting the enzymes that control this process might lead to new treatments and better diagnostic methods for asthma.

Article Abstract

Background: Epigenetic modifications are known to mediate both beneficial and unfavorable effects of environmental exposures on the development and clinical course of asthma. On the molecular level, epigenetic mechanisms participate in multiple aspects of the emerging and ongoing asthma pathology.

Summary: Studies performed in the last several years expand our knowledge on the role of histone acetylation, a classical epigenetic mark, in the regulation of (patho)physiological processes of diverse cells playing a central role in asthma, including those belonging to the immune system (e.g., CD4+ T cells, macrophages) and lung structure (e.g., airway epithelial cells, pulmonary fibroblasts). Those studies demonstrate a number of specific histone acetylation-associated mechanisms and pathways underlying pathological processes characteristic for asthma, as well as report their modification modalities.

Key Messages: Dietary modulation of histone acetylation levels in the immune system might protect against the development of asthma and other allergies. Interfering with the enzymes controlling the histone acetylation status of structural lung and (local) immune cells might provide future therapeutic options for asthmatics. Despite some methodological obstacles, analysis of the histone acetylation levels might improve asthma diagnostics.

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Source
http://dx.doi.org/10.1159/000536460DOI Listing

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