Fructose-1-kinase has pleiotropic roles inEscherichia coli

Author:

Weeramange Chamitha,Menjivar Cindy,O’Neil Pierce T.ORCID,Qaidi Samir El,Harrison Kelly S.,Meinhardt Sarah,Bird Cole L.,Sreenivasan Shwetha,Hardwidge Philip R.,Fenton Aron W.,Hefty P. Scott,Bose Jeffrey L.,Swint-Kruse Liskin

Abstract

AbstractInEscherichia coli, the master transcription regulator Catabolite Repressor Activator (Cra) regulates >100 genes in central metabolism. Cra binding to DNA is allosterically regulated by binding to fructose-1-phosphate (F-1-P), but the only documented source of F-1-P is from the concurrent import and phosphorylation of exogenous fructose. Thus, many have proposed that fructose-1,6-bisphosphate (F-1,6-BP) is also a physiological regulatory ligand. However, the role of F-1,6-BP has been widely debated. Here, we report that theE. colienzyme fructose-1-kinase (FruK) can carry out its “reverse” reaction under physiological substrate concentrations to generate F-1-P from F-1,6-BP. We further show that FruK directly binds Cra with nanomolar affinity and forms higher order, heterocomplexes. Growth assays with a ΔfruKstrain andfruKcomplementation show that FruK has a broader role in metabolism than fructose catabolism. The ΔfruKstrain also alters biofilm formation. SincefruKitself is repressed by Cra, these newly-reported events add layers to the dynamic regulation ofE. colicentral metabolism that occur in response to changing nutrients. These findings might have wide-spread relevance to other γ-proteobacteria, which conserve both Cra and FruK.

Publisher

Cold Spring Harbor Laboratory

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