Abstract

The Synechocystis Slr0642 protein and its plastidial Arabidopsis (Arabidopsis thaliana) ortholog At2g32040 belong to the folate-biopterin transporter (FBT) family within the major facilitator superfamily. Both proteins transport folates when expressed in Escherichia coli. Because the structural requirements for transport activity are not known for any FBT protein, we applied mutational analysis to identify residues that are critical to transport and interpreted the results using a comparative structural model based on E. coli lactose permease. Folate transport was assessed via the growth of an E. coli pabA abgT strain, which cannot synthesize or take up folates or p-aminobenzoylglutamate. In total, 47 residues were replaced with Cys or Ala. Mutations at 22 positions abolished folate uptake without affecting Slr0642 expression in membranes, whereas other mutations had no effect. Residues important for function mostly line the predicted central cavity and are concentrated in the core alpha-helices H1, H4, H7, and H10. The essential residue locations are consistent with a folate-binding site lying roughly equidistant from both faces of the transporter. Arabidopsis has eight FBT proteins besides At2g32040, often lacking conserved critical residues. When six of these proteins were expressed in E. coli or in Leishmania folate or pterin transporter mutants, none showed evidence of folate or pterin transport activity, and only At2g32040 was isolated by functional screening of Arabidopsis cDNA libraries in E. coli. Such negative data could reflect roles in transport of other substrates. These studies provide the first insights into the native structure and catalytic mechanism of FBT family carriers.

Highlights

  • Carrier-mediated folate transport into cells and between subcellular compartments is vital in organisms that require folates and is vital in plants due to the way the folate synthesis pathway and folates are compartmented

  • The folate-biopterin transporter (FBT) family belongs to the major facilitator superfamily (MFS) [16]

  • MFS proteins consist of a single polypeptide chain containing 12 transmembrane ␣-helices, with both N and C termini on the cytoplasmic side of the membrane [17]

Read more

Summary

Introduction

Carrier-mediated folate transport into cells and between subcellular compartments is vital in organisms that require folates and is vital in plants due to the way the folate synthesis pathway and folates are compartmented. A C-terminal His tag was added to allow immunodetection, which did not alter performance; the tagged and untagged versions of Slr0642 gave identical growth of the pabA abgT mutant on 5-FHTF medium (Fig. 2B).

Results
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call