Nature Chemical Biology 2012-06-01

Ultrasensitive regulation of anapleurosis via allosteric activation of PEP carboxylase.

Yi-Fan Xu, Daniel Amador-Noguez, Marshall Louis Reaves, Xiao-Jiang Feng, Joshua D Rabinowitz

Index: Nat. Chem. Biol. 8(6) , 562-8, (2012)

Full Text: HTML

Abstract

Anapleurosis is the filling of the tricarboxylic acid cycle with four-carbon units. The common substrate for both anapleurosis and glucose phosphorylation in bacteria is the terminal glycolytic metabolite phosphoenolpyruvate (PEP). Here we show that Escherichia coli quickly and almost completely turns off PEP consumption upon glucose removal. The resulting buildup of PEP is used to quickly import glucose if it becomes available again. The switch-like termination of anapleurosis results from depletion of fructose-1,6-bisphosphate (FBP), an ultrasensitive allosteric activator of PEP carboxylase. E. coli expressing an FBP-insensitive point mutant of PEP carboxylase grow normally when glucose is steadily available. However, they fail to build up PEP upon glucose removal, grow poorly when glucose availability oscillates and suffer from futile cycling at the PEP node on gluconeogenic substrates. Thus, bacterial central carbon metabolism is intrinsically programmed with ultrasensitive allosteric regulation to enable rapid adaptation to changing environmental conditions.


Related Compounds

  • D-Fructose-1,6-di...
  • Phosphoenolpyruvat...

Related Articles:

Characterization of the high-affinity uptake of fructose-1,6-bisphosphate by cardiac myocytes.

2012-07-01

[Mol. Cell Biochem. 366(1-2) , 31-9, (2012)]

In silico-screening approaches for lead generation: identification of novel allosteric modulators of human-erythrocyte pyruvate kinase.

2012-01-01

[Methods Mol. Biol. 796 , 351-67, (2012)]

Crh, the paralogue of the phosphocarrier protein HPr, controls the methylglyoxal bypass of glycolysis in Bacillus subtilis.

2011-11-01

[Mol. Microbiol. 82(3) , 770-87, (2011)]

Changes in the contents of metabolites and enzyme activities in rice plants responding to Rhizoctonia solani Kuhn infection: activation of glycolysis and connection to phenylpropanoid pathway.

2012-06-01

[Plant Cell Physiol. 53(6) , 1017-32, (2012)]

Strontium fructose 1,6-diphosphate prevents bone loss in a rat model of postmenopausal osteoporosis via the OPG/RANKL/RANK pathway.

2012-04-01

[Acta Pharmacol. Sin. 33(4) , 479-89, (2012)]

More Articles...