» Articles » PMID: 11473577

AAA+ Superfamily ATPases: Common Structure--diverse Function

Overview
Journal Genes Cells
Date 2001 Jul 28
PMID 11473577
Citations 370
Authors
Affiliations
Soon will be listed here.
Abstract

The AAA+ superfamily of ATPases, which contain a homologous ATPase module, are found in all kingdoms of living organisms where they participate in diverse cellular processes including membrane fusion, proteolysis and DNA replication. Recent structural studies have revealed that they usually form ring-shaped oligomers, which are crucial for their ATPase activities and mechanisms of action. These ring-shaped oligomeric complexes are versatile in their mode of action, which collectively seem to involve some form of disruption of molecular or macromolecular structure; unfolding of proteins, disassembly of protein complexes, unwinding of DNA, or alteration of the state of DNA-protein complexes. Thus, the AAA+ proteins represent a novel type of molecular chaperone. Comparative analyses have also revealed significant similarities and differences in structure and molecular mechanism between AAA+ ATPases and other ring-shaped ATPases.

Citing Articles

MoxR effects as an ATPase on anti-stress and pathogenicity of Riemerella anatipestifer.

Zhang Y, Zhang Y, He Y, Hou Y, Li X, Yang X Vet Res. 2025; 56(1):44.

PMID: 39962505 PMC: 11834572. DOI: 10.1186/s13567-025-01454-7.


p.Arg4810Lys (c.14429G>A) is associated with extracranial arterial stenosis.

Shimada D, Miyawaki S, Nakanishi K, Jono T, Maruoka H, Kawai T Brain Commun. 2025; 7(1):fcaf049.

PMID: 39958261 PMC: 11829204. DOI: 10.1093/braincomms/fcaf049.


Quantitative insights into processivity of an Hsp100 protein disaggregase on folded proteins.

Banwait J, Lucius A Biophys J. 2025; 124(5):753-764.

PMID: 39861950 PMC: 11897543. DOI: 10.1016/j.bpj.2025.01.016.


Temperature-driven changes in membrane fluidity differentially impact FILAMENTATION TEMPERATURE-SENSITIVE H2-mediated photosystem II repair.

Zhang J, Lee K, Liu Y, Kim C Plant Cell. 2024; 37(1).

PMID: 39665689 PMC: 11684078. DOI: 10.1093/plcell/koae323.


Unraveling antibiotic resistance in IA strain: genomic insights, structural analysis, and prospects for targeted therapeutics.

Al-Asadi S, Abdul Wahhab B, Bootwala J, Alwatar W, Al-Kahachi R Microbiol Spectr. 2024; :e0392623.

PMID: 39472000 PMC: 11619425. DOI: 10.1128/spectrum.03926-23.