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A proteomics approach for the identification of species-specific immunogenic proteins in the Mycobacterium abscessus complex

Mathis Steindor, Vanesa Nkwouano, Anja Stefanski, Kai Stuehler, Thomas R. Ioerger, David Bogumil, Marc Jacobsen, Colin R. Mackenzie, Rainer Kalscheuer
European Respiratory Journal 2019 54: PA975; DOI: 10.1183/13993003.congress-2019.PA975
Mathis Steindor
1Department of General Pediatrics, Neonatology, and Pediatric Cardiology, University Children’s Hospital, Düsseldorf, Germany
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  • For correspondence: mathis.steindor@uk-essen.de
Vanesa Nkwouano
1Department of General Pediatrics, Neonatology, and Pediatric Cardiology, University Children’s Hospital, Düsseldorf, Germany
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Anja Stefanski
2Molecular Proteomics Laboratory, Heinrich Heine University, Düsseldorf, Germany
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Kai Stuehler
2Molecular Proteomics Laboratory, Heinrich Heine University, Düsseldorf, Germany
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Thomas R. Ioerger
3Department of Computer Science and Engineering, Texas A&M University, Texas, United States of America
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David Bogumil
4The Department of Life Sciences & The National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva, Israel
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Marc Jacobsen
1Department of General Pediatrics, Neonatology, and Pediatric Cardiology, University Children’s Hospital, Düsseldorf, Germany
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Colin R. Mackenzie
5Institute of Medical Microbiology and Hospital Hygiene, Heinrich Heine University, Düsseldorf, Germany
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Rainer Kalscheuer
6Institute of Pharmaceutical Biology and Biotechnology, Heinrich Heine University, Düsseldorf, Germany
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Abstract

The Mycobacterium abscessus complex can cause fatal pulmonary disease, especially in cystic fibrosis patients. Diagnosing M. abscessus complex pulmonary disease is challenging. Immunologic assays specific for M. abscessus are not available. In this study seven clinical M. abscessus complex strains and the M. abscessus reference strain ATCC19977 were used to find species-specific proteins for their use in immune assays. Six strains showed rough and smooth colony morphotypes simultaneously, two strains only showed rough mophotypes, resulting in 14 separate isolates. Clinical isolates were submitted to whole genome sequencing. Proteomic analysis was performed on bacterial lysates and culture supernatant of all 14 isolates. Species-specificity for M. abscessus complex was determined by a BLAST search for proteins present in all supernatants. Species-specific proteins underwent in silico B- and T-cell epitope prediction. All clinical strains were found to be M. abscessus ssp. abscessus. Mutations in MAB_4099c as a likely genetic basis of the rough morphotype were found in six out of seven clinical isolates. 79 proteins were present in every supernatant, of which 12 are exclusively encoded by all members of M. abscessus complex plus Mycobacterium immunogenum. In silico analyses predicted B- and T-cell epitopes in all of these 12 species-specific proteins.

  • Immunology
  • Cystic fibrosis
  • Bacteria

Footnotes

Cite this article as: European Respiratory Journal 2019; 54: Suppl. 63, PA975.

This is an ERS International Congress abstract. No full-text version is available. Further material to accompany this abstract may be available at www.ers-education.org (ERS member access only).

  • Copyright ©the authors 2019
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A proteomics approach for the identification of species-specific immunogenic proteins in the Mycobacterium abscessus complex
Mathis Steindor, Vanesa Nkwouano, Anja Stefanski, Kai Stuehler, Thomas R. Ioerger, David Bogumil, Marc Jacobsen, Colin R. Mackenzie, Rainer Kalscheuer
European Respiratory Journal Sep 2019, 54 (suppl 63) PA975; DOI: 10.1183/13993003.congress-2019.PA975

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A proteomics approach for the identification of species-specific immunogenic proteins in the Mycobacterium abscessus complex
Mathis Steindor, Vanesa Nkwouano, Anja Stefanski, Kai Stuehler, Thomas R. Ioerger, David Bogumil, Marc Jacobsen, Colin R. Mackenzie, Rainer Kalscheuer
European Respiratory Journal Sep 2019, 54 (suppl 63) PA975; DOI: 10.1183/13993003.congress-2019.PA975
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