Proteomics

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Rickettsia akari: the proteome revealed a 44kDa-OMP as novel biomarker for Rickettsialpox


ABSTRACT: We identified 296 unique proteins separated by shotgun proteomics technique, 30 surface exposed proteins using biotinylation and 67 proteins by Triton X-114 detergent phase partitioning. Combination of different separation techniques with divers in silico analyses revealed 25 possibly beta-barrel outer membrane proteins and 11 proteins enclosing signal peptide sequence. Among these signal peptide containing surface proteins we detected several proteins affecting virulence, like outer membrane protein B, 60 kDa chaperonin GroEL, putative surface antigen and peptidoglycan-associated lipoprotein. The most interesting finding is a unique antigenic 44kDa uncharacterized protein, reacting with serum specimens from R. akari infected patients. This protein is characterized for the first time in present study.

INSTRUMENT(S): Q-Tof Ultima

ORGANISM(S): Rickettsia Akari

TISSUE(S): Prokaryotic Cell

DISEASE(S): Rickettsialpox

SUBMITTER: Fernando Zuniga  

LAB HEAD: Ludovit Skultety

PROVIDER: PXD018060 | Pride | 2021-09-09

REPOSITORIES: Pride

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Proteomic analysis of Rickettsia akari proposes a 44 kDa-OMP as a potential biomarker for Rickettsialpox diagnosis.

Csicsay František F   Flores-Ramirez Gabriela G   Zuñiga-Navarrete Fernando F   Bartošová Mária M   Fučíková Alena A   Pajer Petr P   Dresler Jiří J   Škultéty Ľudovít Ľ   Quevedo-Diaz Marco M  

BMC microbiology 20200708 1


<h4>Background</h4>Rickettsialpox is a febrile illness caused by the mite-borne pathogen Rickettsia akari. Several cases of this disease are reported worldwide annually. Nevertheless, the relationship between the immunogenicity of R. akari and disease development is still poorly understood. Thus, misdiagnosis is frequent. Our study is aiming to identify immunogenic proteins that may improve disease recognition and enhance subsequent treatment. To achieve this goal, two proteomics methodologies w  ...[more]

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