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In , acetylation is an organic reaction with . It introduces an into a chemical compound. Such compounds are termed acetate or simply . Deacetylation is the opposite reaction, the removal of an acetyl group from a chemical compound.


Acetylation/deacetylation in biology
Histone deacetylases "play crucial roles in gene transcription and most likely in all eukaryotic biological processes that involve chromatin".

Acetylation is one type of post-translational modification of proteins. The acetylation of the ε-amino group of , which is common, converts a charged side chain to a neutral one. Acetylation/deacetylation of histones also plays a role in and . These modifications are effected by enzymes called histone acetyltransferases (HATs) and histone deacetylases (HDACs).

Two general mechanisms are known for deacetylation. One mechanism involves zinc binding to the acetyl oxygen. Another family of deacetylases require NAD+, which transfers an ribosyl group to the acetyl oxygen.


Organic synthesis
Acetate esters and are generally prepared by acetylations. Acetylations are often used in making C-acetyl bonds in Friedel-Crafts reactions. Carbanions and their equivalents are susceptible to acetylations.


Acetylation reagents
Many acetylations are achieved using these three reagents:
  • . This reagent is common in the laboratory; its use cogenerates acetic acid.
  • . This reagent is also common in the laboratory, but its use cogenerates hydrogen chloride, which can be undesirable.
  • . At one time acetic anhydride was prepared by the reaction of ketene with acetic acid:
\Delta H = -63 \text{ kJ/mol}


Acetylation of cellulose
Cellulose is a and thus susceptible to acetylation, which is achieved using acetic anhydride. Acetylation disrupts hydrogen bonding, which otherwise dominates the properties of cellulose. Consequently, the cellulose esters are soluble in organic solvents and can be cast into fibers and films.


Acetylation of wood
Acetylation of wood is a chemical modification process that enhances the properties of wood by making it highly resistant to fungi and insects, as well as very durable against moisture and environmental parameters.
(2025). 9783030813147, Springer International Publishing.
Holger Militz: Übersichtsbericht - Acetyliertes Holz - (Naturwissenschaftliche und technologische Grundlagen, materialtechnische und ökonomische Möglichkeiten und Grenzen, aktueller Stand der Umsetzung). SGD Süd-Forstliche Versuchsanstalt Rheinland-Pfalz, 2011, accessed in December 2024.

The process involves the chemical reaction of with the free hydroxyl groups in wood polymers, mostly of lignin and hemicelluloses, without requiring a catalyst. The modification results in bonds between the structural polymeric components, significantly reducing the ability of the -OH groups to form hydrogen bonds with water molecules. This effectively "locks" the cellular walls, minimizing the capacity of wood to absorb water and enhancing its dimensional stability. Approximately 80-90% of the hydroxyl groups of wood are modified during the process. The whole process is an environmentally friendly treatment, and has emerged, in the 21st century, as a significant innovation in the scientific area of .


Transacetylation
Transacetylation uses as an acetyl donor and as a catalyst. This methodology allows the preparation of enantio-enriched alcohols and acetates.
(2025). 9780471936237


See also

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