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Published on: March 10, 2021
Characterization of two heparan sulphate-binding sites in the mycobacterial adhesin Hlp
Michelle I Portugal1, Adriane R Todeschini, Cristiana S de Lima
1Laboratório de Microbiologia Celular, Instituto Oswaldo Cruz, FIOCRUZ, Av, Brasil 4365, Manguinhos, Rio de Janeiro, RJ 21045-900, Brazil. michelleip@ig.com.br
Background:
The histone-like Hlp protein is emerging as a key component in mycobacterial pathogenesis, being involved in the initial events of host colonization by interacting with laminin and glycosaminoglycans (GAGs). In the present study, nuclear magnetic resonance (NMR) was used to map the binding site(s) of Hlp to heparan sulfate and identify the nature of the amino acid residues directly involved in this interaction.
Results:
The capacity of a panel of 30 mer synthetic peptides covering the full length of Hlp to bind to heparin/heparan sulfate was analyzed by solid phase assays, NMR, and affinity chromatography. An additional active region between the residues Gly46 and Ala60 was defined at the N-terminal domain of Hlp, expanding the previously defined heparin-binding site between Thr31 and Phe50. Additionally, the C-terminus, rich in Lys residues, was confirmed as another heparan sulfate binding region. The amino acids in Hlp identified as mediators in the interaction with heparan sulfate were Arg, Val, Ile, Lys, Phe, and Thr.
Conclusion:
Our data indicate that Hlp interacts with heparan sulfate through two distinct regions of the protein. Both heparan sulfate-binding regions here defined are preserved in all mycobacterial Hlp homologues that have been sequenced, suggesting important but possibly divergent roles for this surface-exposed protein in both pathogenic and saprophic species.
Insights
Mycobacterium
Area of Science:
- Microbiology
- Biochemistry
Background:
- Histone-like protein (Hlp) is crucial for mycobacterial pathogenesis.
- Hlp mediates host colonization by interacting with laminin and glycosaminoglycans (GAGs).
Purpose of the Study:
- To map Hlp's binding sites on heparan sulfate using NMR.
- To identify amino acid residues involved in Hlp-heparan sulfate interactions.
Main Methods:
- Solid-phase assays
- Nuclear magnetic resonance (NMR)
- Affinity chromatography
Main Results:
- Two distinct heparan sulfate-binding regions identified in Hlp: residues Gly46-Ala60 and the C-terminus.
- Previously identified binding site (Thr31-Phe50) expanded.
- Key amino acids mediating interaction: Arg, Val, Ile, Lys, Phe, and Thr.
Conclusions:
- Hlp interacts with heparan sulfate via two distinct regions.
- These binding regions are conserved in mycobacterial Hlp homologues.
- Suggests significant roles for Hlp in both pathogenic and saprophytic mycobacteria.
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