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Structure–Activity Relationship Study Reveals the Molecular Basis for Specific Sensing of Hydrophobic Amino Acids by the Campylobacter jejuni Chemoreceptor Tlp3

journal contribution
posted on 2025-10-16, 03:32 authored by Mohammad F. Khan, MA Machuca, MM Rahman, C Koç, Raymond S. Norton, Brian SmithBrian Smith, A Roujeinikova
Chemotaxis is an important virulence factor of the foodborne pathogen Campylobacter jejuni. Inactivation of chemoreceptor Tlp3 reduces the ability of C. jejuni to invade human and chicken cells and to colonise the jejunal mucosa of mice. Knowledge of the structure of the ligand-binding domain (LBD) of Tlp3 in complex with its ligands is essential for a full understanding of the molecular recognition underpinning chemotaxis. To date, the only structure in complex with a signal molecule is Tlp3 LBD bound to isoleucine. Here, we used in vitro and in silico screening to identify eight additional small molecules that signal through Tlp3 as attractants by directly binding to its LBD, and determined the crystal structures of their complexes. All new ligands (leucine, valine, α-amino-N-valeric acid, 4-methylisoleucine, β-methylnorleucine, 3-methylisoleucine, alanine, and phenylalanine) are nonpolar amino acids chemically and structurally similar to isoleucine. X-ray crystallographic analysis revealed the hydrophobic side-chain binding pocket and conserved protein residues that interact with the ammonium and carboxylate groups of the ligands determine the specificity of this chemoreceptor. The uptake of hydrophobic amino acids plays an important role in intestinal colonisation by C. jejuni, and our study suggests that C. jejuni seeks out hydrophobic amino acids using chemotaxis.<p></p>

Funding

This work was supported by the Australian Research Council (ARC DP180101807 grant to A.R., R.S.N. and B.J.S.), Monash University (Biomedicine Discovery PhD Scholarship to M.F.K.) and Departamento Administrativo de Ciencia, Tecnologia e Innovacion COLCIENCIAS (PhD Scholarship to M.A.M.).

History

Publication Date

2020-05-11

Journal

Biomolecules

Volume

10

Issue

5

Article Number

744

Pagination

26p.

Publisher

Multidisciplinary Digital Publishing Institute

ISSN

2218-273X

Rights Statement

© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).