Wang_2024_FEBS.Lett_598_959

Reference

Title : Deacylases-structure, function, and relationship to diseases - Wang_2024_FEBS.Lett_598_959
Author(s) : Wang S , Xing X , Ma J , Zheng S , Song Q , Zhang P
Ref : FEBS Letters , 598 :959 , 2024
Abstract :

Reversible S-acylation plays a pivotal role in various biological processes, modulating protein functions such as subcellular localization, protein stability/activity, and protein-protein interactions. These modifications are mediated by acyltransferases and deacylases, among which the most abundant modification is S-palmitoylation. Growing evidence has shown that this rivalrous pair of modifications, occurring in a reversible cycle, is essential for various biological functions. Aberrations in this process have been associated with various diseases, including cancer, neurological disorders, and immune diseases. This underscores the importance of studying enzymes involved in acylation and deacylation to gain further insights into disease pathogenesis and provide novel strategies for disease treatment. In this Review, we summarize our current understanding of the structure and physiological function of deacylases, highlighting their pivotal roles in pathology. Our aim is to provide insights for further clinical applications.

PubMedSearch : Wang_2024_FEBS.Lett_598_959
PubMedID: 38644468

Citations formats

Wang S, Xing X, Ma J, Zheng S, Song Q, Zhang P (2024)
Deacylases-structure, function, and relationship to diseases
FEBS Letters 598 :959

Wang S, Xing X, Ma J, Zheng S, Song Q, Zhang P (2024)
FEBS Letters 598 :959