Structural and biophysical analysis of a Haemophilus influenzae tripartite ATP-independent periplasmic (TRAP) transporter

Author:

Currie Michael J.1,Davies James S.12ORCID,Scalise Mariafrancesca3,Gulati Ashutosh2,Wright Joshua D.1,Newton-Vesty Michael C.1,Abeysekera Gayan S.1,Subramanian Ramaswamy4,Wahlgren Weixiao Y.5,Friemann Rosmarie6,Allison Jane R.7,Mace Peter D.8,Griffin Michael D.W.9,Demeler Borries1011,Wakatsuki Soichi1213,Drew David2,Indiveri Cesare3,Dobson Renwick C.J.19ORCID,North Rachel A.2

Affiliation:

1. Biomolecular Interaction Centre, Maurice Wilkins Centre for Biodiscovery, MacDiarmid Institute for Advanced Materials and Nanotechnology, and School of Biological Sciences, University of Canterbury, PO Box 4800, Christchurch 8140, New Zealand

2. Department of Biochemistry and Biophysics, Stockholm University, 106 91 Stockholm, Sweden

3. Department DiBEST (Biologia, Ecologia, Scienze della Terra) Unit of Biochemistry and Molecular Biotechnology, University of Calabria, Via P. Bucci 4C, 87036 Arcavacata di Rende, Italy

4. Biological Sciences and Biomedical Engineering, Bindley Bioscience Center, Purdue University, 1203 W State St, West Lafayette, IN 47906, USA

5. Department of Chemistry and Molecular Biology, Biochemistry and Structural Biology, University of Gothenburg, Box 462, 40530 Gothenburg, Sweden

6. Centre for Antibiotic Resistance Research (CARe) at University of Gothenburg, Box 440, 40530 Gothenburg, Sweden

7. Biomolecular Interaction Centre, Digital Life Institute, Maurice Wilkins Centre for Molecular Biodiscovery, and School of Biological Sciences, University of Auckland, Auckland 1010, New Zealand

8. Biochemistry Department, School of Biomedical Sciences, University of Otago, Dunedin 9054, New Zealand

9. Bio21 Molecular Science and Biotechnology Institute, Department of Biochemistry and Pharmacology, University of Melbourne, Parkville, Victoria 3010, Australia

10. Department of Chemistry and Biochemistry, University of Montana, Missoula, MT, USA

11. Department of Chemistry and Biochemistry, University of Lethbridge, Lethbridge, AB, Canada

12. Biological Sciences Division, SLAC National Accelerator Laboratory, Menlo Park, CA 94025, USA

13. Department of Structural Biology, Stanford University School of Medicine, Stanford, CA 94305, USA

Abstract

Tripartite ATP-independent periplasmic (TRAP) transporters are secondary-active transporters that receive their substrates via a soluble binding protein to move bioorganic acids across bacterial or archaeal cell membranes. Recent cryo-EM structures of TRAP transporters provide a broad framework to understand how they work, but the mechanistic details of transport are not yet defined. Here we report the cryo-EM structure of the Haemophilus influenzae N -acetylneuraminate TRAP transporter ( Hi SiaQM) at 2.99 Å resolution (extending to 2.2 Å at the core), revealing new features. The improved resolution (the previous Hi SiaQM structure is 4.7 Å resolution) permits accurate assignment of two Na + sites and the architecture of the substrate binding site, consistent with mutagenic and functional data. Moreover, rather than a monomer, the Hi SiaQM structure is a homodimer. We observe lipids at the dimer interface, as well as a lipid trapped within the fusion that links the SiaQ and SiaM subunits. We show that the affinity ( K D ) for the complex between the soluble Hi SiaP protein and Hi SiaQM is in the micromolar range and that a related SiaP can bind Hi SiaQM. This work provides key data that enhances our understanding of the ‘elevator-with-an-operator’ mechanism of TRAP transporters.

Publisher

eLife Sciences Publications, Ltd

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