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Published on: February 22, 2020
Conformational properties of two exopolysaccharides produced by Inquilinus limosus, a cystic fibrosis lung pathogen
Michelle Kuttel1, Neil Ravenscroft, Michela Foschiatti
1Department of Computer Science, University of Cape Town, Rondebosch, South Africa. mkuttel@cs.uct.ac.za
Abstract:
Inquilinus limosus is a multi-resistant bacterium found in the respiratory tract of patients with cystic fibrosis. This bacterium produces two unique fully pyruvylated exopolysaccharides in similar quantities: an α-(1→2)-linked mannan and a β-(1→3)-linked glucan. We employed molecular modelling methods to probe the characteristic conformations and dynamics of these polysaccharides, with corroboration from potentiometric titrations and circular dichroism experiments. Our calculations reveal different structural motifs for the mannan and glucan polysaccharides: the glucan forms primarily right-handed helices with a wide range of extensions, while the mannan forms only left-handed helices. This finding is supported by our circular dichroism experiments. Our calculations also show that the (1→3)-β-d-Glcp linkage is more dynamically flexible than the (1→2)-α-d-Manp: the glucan characteristically forms a range of wide helices with large central cavities. In contrast, the mannan forms rigid regular 'bottlebrush' helices with a minimal central cavity. The widely different character of these two polymers suggests a possible differentiation of biological roles.
Insights
Inquilinus limosus produces two unique exopolysaccharides. Molecular modeling reveals distinct helical structures and dynamics for the glucan and mannan, suggesting different biological functions in cystic fibrosis patients.
Area of Science:
- Microbiology
- Biochemistry
- Structural Biology
Background:
- Inquilinus limosus is a multi-resistant bacterium.
- It colonizes the respiratory tract of cystic fibrosis patients.
- The bacterium produces two distinct pyruvylated exopolysaccharides: mannan and glucan.
Purpose of the Study:
- To investigate the structural conformations and dynamics of the two exopolysaccharides.
- To understand the relationship between structure and potential biological roles.
Main Methods:
- Molecular modeling simulations.
- Potentiometric titrations.
- Circular dichroism spectroscopy.
Main Results:
- Mannan forms rigid, left-handed helices with a narrow central cavity.
- Glucan forms flexible, right-handed helices with a wide central cavity.
- The β-(1→3)-linked glucan linkage is more dynamically flexible than the α-(1→2)-linked mannan linkage.
Conclusions:
- The distinct structural characteristics of the mannan and glucan suggest divergent biological functions.
- Understanding these structures may offer insights into Inquilinus limosus pathogenesis in cystic fibrosis.
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