Content area

Abstract

Issue Title: Biometals: function and transport in bacteria, fungi, and humans

Iron and citrate are essential for the metabolism of most organisms, and regulation of iron and citrate biology at both the cellular and systemic levels is critical for normal physiology and survival. Mitochondrial and cytosolic aconitases catalyze the interconversion of citrate and isocitrate, and aconitase activities are affected by iron levels, oxidative stress and by the status of the Fe-S cluster biogenesis apparatus. Assembly and disassembly of Fe-S clusters is a key process not only in regulating the enzymatic activity of mitochondrial aconitase in the citric acid cycle, but also in controlling the iron sensing and RNA binding activities of cytosolic aconitase (also known as iron regulatory protein IRP1). This review discusses the central role of aconitases in intermediary metabolism and explores how iron homeostasis and Fe-S cluster biogenesis regulate the Fe-S cluster switch and modulate intracellular citrate flux. [PUBLICATION ABSTRACT]

Details

Title
Metabolic regulation of citrate and iron by aconitases: role of iron-sulfur cluster biogenesis
Author
Tong, Wing-hang; Rouault, Tracey A
Pages
549-64
Publication year
2007
Publication date
Jun 2007
Publisher
Springer Nature B.V.
ISSN
0966-0844
e-ISSN
15728773
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
223560563
Copyright
Springer Science+Business Media BV 2007