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Exploring the Genetic and Functional Diversity of Survival Factor RagAB. | LitMetric

Exploring the Genetic and Functional Diversity of Survival Factor RagAB.

Int J Mol Sci

Division of Oral Microbiology and Immunology, Department of Operative Dentistry, Periodontology and Preventive Dentistry, Rheinisch-Westfälische Technische Hochschule (RWTH) University Hospital, 52074 Aachen, Germany.

Published: January 2025


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Article Abstract

is a key pathogen in periodontitis. Its outer membrane contains the RagAB transport complex, which has been implicated in protein uptake, essential for a proteolytic species. RagA is a 22-stranded β-barrel, and RagB is the corresponding 4-TPR lid, together forming a TonB-dependent system acting as a "pedal bin". Four different alleles were observed, of which is more virulent than the others. Our aim was to map in 129 strains of and related species available in our collection, supported by a newly introduced universal PCR for amplification/sequencing of all four variants and to find reasons for the differences in virulence and/or fitness. Regarding the PCR method, by pairing established Long-PCR primers with our newly designed sequencing primers (ragA-F0, -F1, -R2, -R2a, -R4), it was possible to amplify and sequence all four variants. The same was not possible for due to high heterogeneity. The mapping allowed us to type all strains into . For each type, some strains (of mainly animal origin such as ) with slightly different amino acid sequences were identified (designated to ). In terms of function, the transfer of recently discovered SusCD information to the similar RagAB complex provided new insights. Substrate specificity as well as length of pedal could be the route to differential virulence (survival rate, fitness) as Rag-1 (closer related to Rag-3/4) and Rag-2 were found to be massively different here. In general, substrate-ligand-binding sites seem to be quite variable with the exception of Rag-1, probably indicating nutritional preferences. In addition, an insertion (8 aa long) found in loop L7 throughout RagA-2 could not only affect the dynamics of lid opening/closing but might also alter the associated substrate throughput rate.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11817032PMC
http://dx.doi.org/10.3390/ijms26031073DOI Listing

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