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Sialylated Receptor Setting Influences Mycoplasma pneumoniae Attachment and Gliding Motility
Caitlin R Williams1, Li Chen2, Ashley D Driver1
1Department of Microbiology, University of Georgia, Athens, Georgia, USA.
Abstract:
Mycoplasma pneumoniae is a common cause of human respiratory tract infections, including bronchitis and atypical pneumonia. M. pneumoniae binds glycoprotein receptors having terminal sialic acid residues via the P1 adhesin protein. Here, we explored the impact of sialic acid presentation on M. pneumoniae adherence and gliding on surfaces coated with sialylated glycoproteins, or chemically functionalized with α-2,3- and α-2,6-sialyllactose ligated individually or in combination to a polymer scaffold in precisely controlled densities. In both models, gliding required a higher receptor density threshold than adherence, and receptor density influenced gliding frequency but not gliding speed. However, very high densities of α-2,3-sialyllactose actually reduced gliding frequency over peak levels observed at lower densities. Both α-2,3- and α-2,6-sialyllactose supported M. pneumoniae adherence, but gliding was only observed on the former. Finally, gliding on α-2,3-sialyllactose was inhibited on surfaces also conjugated with α-2,6-sialyllactose, suggesting that both moieties bind P1 despite the inability of the latter to support gliding. Our results indicate that the nature and density of host receptor moieties profoundly influences M. pneumoniae gliding, which could affect pathogenesis and infection outcome. Furthermore, precise functionalization of polymer scaffolds shows great promise for further analysis of sialic acid presentation and M. pneumoniae adherence and gliding.
Insights
Mycoplasma pneumoniae adherence and gliding depend on sialic acid presentation. Receptor density and type influence gliding frequency, with specific sialic acid forms impacting bacterial movement and infection potential.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- Mycoplasma pneumoniae causes respiratory infections like atypical pneumonia.
- P1 adhesin mediates M. pneumoniae binding to sialic acid residues on host glycoproteins.
Purpose of the Study:
- To investigate how sialic acid presentation affects M. pneumoniae adherence and gliding.
- To determine the influence of receptor density and type on bacterial motility.
Main Methods:
- Utilized polymer scaffolds functionalized with α-2,3- and α-2,6-sialyllactose at controlled densities.
- Assessed M. pneumoniae adherence and gliding on these surfaces.
- Compared the effects of individual and combined sialyllactose presentations.
Main Results:
- Gliding required a higher receptor density threshold than adherence.
- Receptor density modulated gliding frequency but not speed.
- α-2,3-sialyllactose supported gliding, while α-2,6-sialyllactose did not, though both supported adherence.
- High densities of α-2,3-sialyllactose reduced gliding frequency; α-2,6-sialyllactose inhibited gliding on α-2,3-sialyllactose surfaces.
Conclusions:
- The presentation and density of sialic acid receptors significantly impact M. pneumoniae gliding motility.
- Understanding these interactions is crucial for comprehending pathogenesis and infection outcomes.
- Functionalized polymer scaffolds offer a valuable tool for studying host-pathogen interactions.
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