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Essential Components of Borreliella Borrelia burgdorferi In Vitro Transcription Assays
Published on: July 22, 2022
Characterization of the inner membrane protein BB0173 from Borrelia burgdorferi
Christina M Brock1,2, Manuel Bañó-Polo3, Maria J Garcia-Murria3
1Department of Veterinary Pathobiology, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, TAMU-4467, College Station, TX, 77843, USA.
Background:
The bacterial spirochete Borrelia burgdorferi is the causative agent of the most commonly reported arthropod-borne illness in the United States, Lyme disease. A family of proteins containing von Willebrand Factor A (VWFA) domains adjacent to a MoxR AAA+ ATPase have been found to be highly conserved in the genus Borrelia. Previously, a VWFA domain containing protein of B. burgdorferi, BB0172, was determined to be an outer membrane protein capable of binding integrin α3β1. In this study, the characterization of a new VWFA domain containing membrane protein, BB0173, is evaluated in order to define the location and topology of this multi-spanning membrane protein. In addition, functional predictions are made.
Results:
Our results show that BB0173, in contrast to BB0172, is an inner membrane protein, in which the VWFA domain is exposed to the periplasmic space. Further, BB0173 was predicted to have an aerotolerance regulator domain, and expression of BB0173 and the surrounding genes was evaluated under aerobic and microaerophilic conditions, revealing that these genes are downregulated under aerobic conditions. Since the VWFA domain containing proteins of B. burgdorferi are highly conserved, they are likely required for survival of the pathogen through sensing diverse environmental oxygen conditions.
Conclusions:
Presently, the complex mechanisms that B. burgdorferi uses to detect and respond to environmental changes are not completely understood. However, studying the mechanisms that allow B. burgdorferi to survive in the highly disparate environments of the tick vector and mammalian host could allow for the development of novel methods of preventing acquisition, survival, or transmission of the spirochete. In this regard, a putative membrane protein, BB0173, was characterized. BB0173 was found to be highly conserved across pathogenic Borrelia, and additionally contains several truly transmembrane domains, and a Bacteroides aerotolerance-like domain. The presence of these functional domains and the highly conserved nature of this protein, strongly suggests a required function of BB0173 in the survival of B. burgdorferi.
Insights
Borrelia burgdorferi, the cause of Lyme disease, has a conserved inner membrane protein, BB0173, that helps it survive by sensing oxygen levels. This finding aids in understanding pathogen survival strategies.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Borrelia burgdorferi causes Lyme disease, a significant arthropod-borne illness in the US.
- Conserved proteins with von Willebrand Factor A (VWFA) domains are characteristic of the Borrelia genus.
- BB0172, a previously studied VWFA protein, is an outer membrane protein that binds integrin α3β1.
Purpose of the Study:
- Characterize the novel VWFA domain-containing membrane protein BB0173.
- Determine the location and topology of BB0173 within the bacterial cell.
- Predict the functional roles of BB0173.
Main Methods:
- Subcellular localization studies to determine BB0173's membrane association.
- Bioinformatic analysis to predict functional domains within BB0173.
- Gene expression analysis under varying oxygen conditions.
Main Results:
- BB0173 is an inner membrane protein, unlike the outer membrane protein BB0172.
- The VWFA domain of BB0173 is exposed to the periplasmic space.
- BB0173 possesses an aerotolerance regulator domain, and its expression is downregulated under aerobic conditions.
Conclusions:
- BB0173 is highly conserved across pathogenic Borrelia species.
- The protein contains transmembrane domains and a Bacteroides aerotolerance-like domain.
- BB0173 likely plays a crucial role in Borrelia burgdorferi survival by sensing oxygen levels.
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