| Literature DB >> 30988272 |
Jens Möller1, Max Edmund Kraner2, Andreas Burkovski3.
Abstract
Clostridium tetani is the etiological agent of tetanus, a life-threatening bacterial infection. The most efficient protection strategy against tetanus is a vaccination with the C. tetani neurotoxin, which is inactivated by formaldehyde-crosslinking. Since we assumed that besides the tetanus toxin, other proteins of C. tetani may also be present in toxoid preparations, we analyzed commercially available vaccines from different countries in respect to their protein content using mass spectrometry. In total 991 proteins could be identified in all five analyzed vaccines, 206 proteins were common in all analyzed vaccines and 54 proteins from the 206 proteins were potential antigens. The additionally present proteins may contribute at least partially to protection against C. tetani infection by supporting the function of the vaccine against the devastating effects of the tetanus toxin indirectly. Two different label-free protein quantification methods were applied for an estimation of protein contents. Similar results were obtained with a Total Protein Approach (TPA)-based method and Protein Discoverer 2.2 software package based on the minora algorithm. Depending on the tetanus toxoid vaccine and the quantification method used, tetanus neurotoxin contributes between 14 and 76 % to the total C. tetani protein content and varying numbers of other C. tetani proteins were detected.Entities:
Keywords: Clostridium tetani; label-free quantification; neurotoxin; proteomics; tetanospasmin; vaccination
Year: 2019 PMID: 30988272 PMCID: PMC6631180 DOI: 10.3390/proteomes7020015
Source DB: PubMed Journal: Proteomes ISSN: 2227-7382
Vaccine samples analyzed in this study. The concentrations of the active components are shown in flocculation units (Lf) *1, international units (I.U.) *2 and binding units (BU) *3.
| Origin | Company | Active components |
|---|---|---|
| Brazil | Butanan Institute | Tetanus toxoid ≥ 25 Lf/mL |
| Bulgaria | InterVax for BB-NCIPD | Tetanus toxoid ≥ 20 Lf/mL |
| Germany | GlaxoSmithKline (GSK) | Tetanus toxoid ≥ 20 I.U. |
| India | Biological E (BE) | Tetanus toxoid ≥ 20 I.U. |
| Russia | Microgen | Tetanus toxoid ≥ 5 BU/mL |
*1: Flocculation units (Lf) are defined as the equivalent of toxin to one unit of standard antitoxin or the amount of toxin that flocculates one unit of an international reference antitoxin [13,14]. *2: International units (I.U.) are defined as a certain weight of the international standard for antitoxin [15] and are equal to the corresponding amount of toxin. *3: Binding units (BU) correspond to the amount of tetanus toxoid to bind directly or compete with tetanus antibody [16] and, therefore, are equal to Lf or I.U.
Figure 1Venn diagram of identified proteins. 991 different proteins were found in the five vaccines analyzed with 206 distinct proteins observed in all vaccines.
Figure 2Localization of proteins identified in the analyzed vaccines. The proportion of proteins in respect to their predicted localization is shown for the vaccines from different countries and for the proteins common in all vaccines (grey: without predicted localization, green: cytoplasmic proteins, blue: membrane proteins and black: secreted proteins). For proteins with more than one annotated localization, each localization was added to the corresponding group.
Figure 3Properties of proteins common to all vaccines. Venn diagram of the 206 common proteins analyzed in respect to the presence of signal peptides (SP), transmembrane helices (TM) and predicted antigenic properties (Antigen).
Proteins with predicted antigenic potential identified in all five analyzed vaccines. The localization was extracted from the UniProt database or predicted with Psortb v.3.0.2 (S: secreted, M: membrane-localized, C: cytoplasm and U: unknown, without predicted localization).
| UniProt ID | Identifier | Annotation | Localization |
|---|---|---|---|
| P04958 | CTC_p60 | Tetanus toxin | S, M, C |
| Q890P1 | CTC_02598 | 50S ribosomal protein L2 | U |
| Q890T2 | CTC_02553 | Thioredoxin | M, C |
| Q890 × 6 | CTC_02507 | Tail-specific protease | M, C |
| Q890Z2 | CTC_02490 | ATP-dependent 6-phosphofructokinase | M, C |
| Q891M9 | CTC_02340 | Glycine betaine-binding protein | M |
| Q891P2 | CTC_02327 | V-type ATP synthase beta chain 2 | M, C |
| Q891Q6 | CTC_02312 | Conserved protein | U |
| Q891U8 | CTC_02265 | UDP-glucose 6-dehydrogenase | M, C |
| Q892B0 | CTC_02196 | Hydroxyacylglutathione hydrolase | U |
| Q892H0 | CTC_02129 | Phage protein | U |
| Q892K3 | CTC_02093 | N-acetylmuramoyl-L-alanine amidase/putative S-layer protein | M |
| Q892P7 | CTC_02047 | Dihydrolipoyl dehydrogenase | M, C |
| Q892V6 | CTC_01980 | Uncharacterized protein | M |
| Q893B5 | CTC_01913 | Uncharacterized protein | M |
| Q893R9 | CTC_01741 | Pyruvate-flavodoxin oxidoreductase | U |
| Q893T5 | CTC_01724 | Flagellar hook-associated protein 1 | S |
| Q894F4 | CTC_01593 | 3-dehydroquinate dehydratase | M |
| Q894P1 | CTC_01495 | Conserved protein | U |
| Q894P7 | CTC_01488 | Fumarate reductase flavoprotein subunit | M |
| Q894Q6 | CTC_01479 | Uncharacterized protein | M, C |
| Q894Q7 | CTC_01478 | Putative histidine decarboxylase | U |
| Q895A1 | CTC_01379 | Periplasmic transport protein, nickel or dipeptide transport | M |
| Q895E4 | CTC_01332 | Transketolase | U |
| Q895G9 | CTC_01305 | Uncharacterized protein | U |
| Q895P6 | CTC_01225 | Serine/threonine protein kinase | M |
| Q895R2 | CTC_01209 | Uncharacterized protein | U |
| Q895T9 | CTC_01178 | NADH oxidase | M, C |
| Q896G9 | CTC_01036 | Uncharacterized protein | U |
| Q896I3 | CTC_01021 | Electron transport complex subunit G | M |
| Q896J5 | CTC_01009 | Conserved protein, putative N-acetylmuramoyl-L-alanine amidase | M |
| Q896U1 | CTC_00907 | D-ribose-binding periplasmic protein | U |
| Q896W4 | CTC_00882 | Carboxyl-terminal protease | M, C |
| Q896W8 | CTC_00878 | 50S ribosomal protein L25 | U |
| Q896Y3 | CTC_00860 | D-galactose-binding periplasmic protein | U |
| Q896Y6 | CTC_00856 | Uncharacterized protein | M, C |
| Q897C9 | CTC_00811 | Fumarate reductase flavoprotein subunit | M |
| Q897E8 | CTC_00792 | Conserved protein | M |
| Q897G1 | CTC_00777 | Putative surface/cell-adhesion protein | U |
| Q897G4 | CTC_00774 | Putative surface/cell-adhesion protein | M |
| Q897G6 | CTC_00771 | Putative surface/cell-adhesion protein | M |
| Q897G7 | CTC_00770 | Putative surface/cell-adhesion protein, big2 domain | U |
| Q897G8 | CTC_00769 | Putative surface/cell-adhesion protein | M, C |
| Q897I6 | CTC_00749 | Putative surface/cell-adhesion protein, multiple big2 domain | M |
| Q897I8 | CTC_00747 | Putative surface/cell-adhesion protein, multiple big2 domain | M |
| Q897P1 | CTC_00691 | Putative S-layer protein/internalin A-like/N-acetylmuramoyl-L-alanine amidase | M |
| Q897Q0 | CTC_00681 | Conserved protein | M |
| Q897W0 | CTC_00612 | Serine protease | S |
| Q898E1 | CTC_00519 | Zink-carboxypeptidase | U |
| Q898I5 | CTC_00465 | Putative S-layer protein | M |
| Q898I7 | CTC_00462 | Putative S-layer protein/N-acetylmuramoyl-L-alanine amidase | M |
| Q898R0 | CTC_00382 | Enolase | S |
| Q898S3 | CTC_00369 | Membrane lipoprotein tmpC | M |
| Q899E7 | CTC_00234 | Putative cell wall hydrolase | S |
Figure 4Relative protein amounts in DT vaccines. Comparison of relative protein amounts from C. tetani (blue) and C. diphtheriae (grey) in the vaccines from Germany, India and Russia. (a) Analysis by the TPA-based method using the area under the peak. Only proteins with peptides in in a range from 2 × 107 to 1011 were considered for calculation. (b) Analysis with the Proteome discoverer 2.2 program package.
Figure 5Composition of C. tetani proteins in the vaccines from Germany, India and Russia with tetanus neurotoxin (TeNT) in red and the remaining proteins in blue. (a) Analysis by the TPA-based method using the area under the peak. Only proteins with peptides in in a range from 2 × 107 to 1011 were considered for calculation. (b) Analysis with the Proteome discoverer 2.2 program package.
Figure 6Comparison of the relative protein amount of TeNT (red), the two most prominent proteins beside TeNT (grey) and of the remaining proteins (blue) from C. tetani in the Russian vaccine. (a) Analysis by the TPA-based method using the area under the peak. Only proteins with peptides in in a range from 2 × 107 to 1011 were considered for calculation. (b) Analysis with the Proteome Discoverer 2.2 program package.