iga1 protease
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2021 ◽  
Vol 47 (4) ◽  
pp. 805-814
Author(s):  
L. S. Zhigis ◽  
O. V. Kotelnikova ◽  
A. A. Zinchenko ◽  
D. M. Karlinsky ◽  
Yu. A. Prokopenko ◽  
...  

Abstract The review covers the study of the protective properties of IgA1 protease and the possibility of creating a vaccine preparation for the prevention of bacterial meningitis of various origins on its basis. Bacterial meningitis belongs to the group of socially dangerous diseases and is characterized by a severe course, numerous complications and high mortality. The approaches used at present in world practice to create antimicrobial vaccines are based on a narrow targeting against a specific pathogen. The development of a monocomponent vaccine against a wide range of bacterial pathogens with a common virulence factor is still relevant. IgA1 protease, a protein that is one of the main virulence factors of a number of gram-negative and gram-positive bacteria, can serve as such an antigen. Bacterial IgA1 protease is uniquely specific for immunoglobulins A1 (IgA1), cleaving peptide bonds in the hinge regions of the IgA1 in humans and other higher primates. Bacteria, getting on the mucous membrane, destroy IgA1, which acts as the first barrier to protect the body from infections. Neutralization of IgA1 protease at this stage can become an obstacle to the development of infection, hindering the adhesion of a number of pathogens that produce this protein. The data available in the literature on the mechanism of antibacterial protection are scattered and ambiguous. The review considers the literature data and the results of our own experiments on the protective activity of IgA1 protease. We have shown that the recombinant meningococcal IgA1 protease and some of its fragments protect mice from infection with a live virulent culture not only of meningococci of the main epidemic serogroups (A, B, C, and W135), but also of some of the most common virulent pneumococcal serotypes. The data obtained indicate the possibility of creating a monocomponent vaccine against these and, possibly, other bacterial infections. Currently, significant progress has been made in studying the structure and functions of secreted proteins in the bacteria Neisseria meningitidis and Haemophilus influenzae. In this review we describe protein translocation systems of N. meningitidis, which are related to the secretion of proteins in these bacteria, and also present modern data on the functions of these proteins. Analysis of experimental data on the structure of IgA1 protease of N. meningitidis and the formation of immunity during vaccination is of key importance in the development of prophylactic preparations.


2020 ◽  
Author(s):  
Alexandra Tikhomirova ◽  
Claudia Trappetti ◽  
James C Paton ◽  
Nathan Watson-Haigh ◽  
David Wabnitz ◽  
...  

Abstract Factors facilitating the chronicity of otitis media (OM) in children are, to date, not fully understood. An understanding of molecular factors aiding bacterial persistence within the middle ear during OM could reveal pathways required for disease. This study performed a detailed analysis of Streptococcus pneumoniae populations isolated from the nasopharynx and middle ear of one OM case. Isolates were assessed for growth in vitro and infection in a mouse intranasal challenge model. Whole genome sequencing was performed to compare the nasopharyngeal and middle ear isolates. The middle ear isolate displayed a reduced rate of growth and enhanced potential to transit to the middle ear in a murine model. The middle ear population possessed a single nucleotide polymorphism (SNP) in the IgA1 protease gene igA, predicted to render its product non-functional. Allelic exchange mutagenesis of the igA alleles from the genetic variant middle ear and nasopharyngeal isolates was able to reverse the niche-adaptation phenotype in the murine model. These results indicate the potential role of a SNP in the gene encoding the IgA1 protease, in determining S. pneumoniae adaptation to the middle ear during chronic OM. In contrast, a functional IgA1 protease was associated with increased colonisation of the nasopharynx.


2020 ◽  
Vol 11 (1) ◽  
Author(s):  
Zhiming Wang ◽  
Jeremy Rahkola ◽  
Jasmina S. Redzic ◽  
Ying-Chih Chi ◽  
Norman Tran ◽  
...  

AbstractOpportunistic pathogens such as Streptococcus pneumoniae secrete a giant metalloprotease virulence factor responsible for cleaving host IgA1, yet the molecular mechanism has remained unknown since their discovery nearly 30 years ago despite the potential for developing vaccines that target these enzymes to block infection. Here we show through a series of cryo-electron microscopy single particle reconstructions how the Streptococcus pneumoniae IgA1 protease facilitates IgA1 substrate recognition and how this can be inhibited. Specifically, the Streptococcus pneumoniae IgA1 protease subscribes to an active-site-gated mechanism where a domain undergoes a 10.0 Å movement to facilitate cleavage. Monoclonal antibody binding inhibits this conformational change, providing a direct means to block infection at the host interface. These structural studies explain decades of biological and biochemical studies and provides a general strategy to block Streptococcus pneumoniae IgA1 protease activity to potentially prevent infection.


2020 ◽  
Vol 14 (1) ◽  
pp. 229-233
Author(s):  
Mina Gholami ◽  
Davoud Afshar ◽  
Mozhgan Kheirandish ◽  
Farzaneh Rafiee ◽  
Reza Ranjbar ◽  
...  

Background and Objectives: Considering rising antibiotic resistance in various strains of Streptococcus pneumoniae, there is a need to find new immunogenic candidates for developing pneumococcal vaccines. Immunoglobulin A1 (IgA1) protease is one of the virulence factors playing an important role in the pathogenesis of S. pneumoniae infections. In the present study, we aimed to evaluate the titer of antibody against pneumococcal recombinant IgA1 protease in the serum of healthy humans. Materials and Methods: A part of the IgA1 protease gene (705 bp) from S. pneumonia ATCC 49619 was amplified by PCR and then digested using restriction enzymes and ligated by the pET28a expression vector. The recombinant protein was expressed in E. coli BL21 strain. Affinity chromatography was used to purify the protein. The titer of antibody against the recombinant protease was determined in healthy individuals in three age groups of <2, 2-40, and > 40 years using indirect Enzyme-Linked Immunosorbent Assay (ELISA). Results: The expression and purification of the IgA1 recombinant protease were successful. The concentration of the purified protein was determined as 1.013 mg/ml using the NanoDrop method. The titer of anti-recombinant IgA1 protease antibody (20, 40, 80 and 160) showed a significant correlation with age (p-value<0.05). According to our results, the antibody titer was desirable, especially in individuals over two years old. Conclusion: In the present study, desirable antibody titers against the pneumococcal recombinant IgA1 protease were seen in the three groups’ serum of healthy individuals. However, a significant correlation was not totally observed among groups.


2020 ◽  
Vol 70 (7) ◽  
pp. 4098-4104 ◽  
Author(s):  
Lucía Martínez-Lamas ◽  
Jacobo Limeres-Posse ◽  
Pedro Diz-Dios ◽  
Maximiliano Álvarez-Fernández

A new α-haemolytic streptococcal strain has been isolated from the dental plaque of a teenager with Down syndrome. Genetic and taxonomic analyses place this Streptococcus within the oralis group. It is a Gram-stain-positive, non-motile, non-spore-forming spherical alpha-haemolytic coccus arranged in chains, and it ferments a large number of monosaccharides and disaccharides, as well as polymeric carbohydrates. It differs biochemically from closely related species of Streptococcus due to its production of α-galactosidase, β-galactosidase and N-acetyl-β-d-glucosaminidase and by the absence of arginine dihydrolase deiminase and IgA1-protease. It grows in a temperature range of 25 to 40 °C (optimal growth temperature at 37 °C) and in a pH range of 4.5 to 8 (optimal pH at 7.0). A phylogenetic analysis based on its 16S and 23S rRNA gene sequences placed it close to Streptococcus dentisani CECT 7747T. The ANIb and ANIm values were 93.19 and 93.61 %, respectively, both below the accepted threshold to designate it as a new species of bacteria. A phylogenetic tree based on its core genome placed it close to Streptococcus oralis subsp. dentisani strain CECT 7747T with a distance in the expanded core phylogeny of 0.1298. The in silico DNA–DNA hybridization value was 52.2 % with respect to the closest species, S. oralis subsp. dentisani CECT 7747T. Based on these data, a new species of bacteria within the genus Streptococcus , family Streptococcaceae and order Lactobacillales is described, for which the name of Streptococcus downii sp. nov. is proposed (type strain CECT 9732T=CCUG 73139T).


2019 ◽  
Vol 21 (7) ◽  
pp. 336-340 ◽  
Author(s):  
Olga Kotelnikova ◽  
Alexander Alliluev ◽  
Alexei Zinchenko ◽  
Larisa Zhigis ◽  
Yuri Prokopenko ◽  
...  

2019 ◽  
Vol 100 (4) ◽  
pp. 680-688
Author(s):  
Yu A Tyuri ◽  
A Z Zaripova ◽  
G Sh Isaeva ◽  
I G Mustafin ◽  
L T Bayazitova

The review presents a modern strategy to improve the means of vaccine prevention of streptococcal infections aimed at finding and developing new vaccines for immunization of people belonging to risk groups. It should be noted that pneumococci (S. pneumoniae) are members of gram-positive bacteria (diplococci) and become the main cause of various nosological forms of human infectious diseases (such as pneumonia, otitis media, sinusitis, bacteremia and meningitis). Existing pneumococcal vaccines (conjugate and polysaccharide) have some important limitations, for example, serotype dependence, loss of effectiveness due to a change in the serotype landscape, insufficient protective effect from non-invasive forms of pneumococcal infections and high production costs associated with the development of these products. The main part of the review presents the most important research papers that used modern proteomic technologies in the study of the S. pneumoniae proteomic profile. These works allow us to evaluate at the molecular level the importance of bacterial proteins as candidates for creating new combination vaccines that can effectively protect against the full range of pneumococcal serotypes circulating in the human population. So, in particular, the data are provided on the new methodology for the analysis of the proteome of extracellular S. pneumoniae bacterial microvesicles to identify immunoreactive protein antigens, potential candidates for inclusion into vaccines. As a result of these studies, 15 immunoreactive proteins were discovered, 7 of which are cytosolic and 8 proteins are bound to the cell surface (MalX, ABC transporter or substrate binding transport protein, AmiA, AliA, LytC, IgA1 protease, PspA and the putative precursor of β-galactosidase). These are possible candidates for developing combination vaccines. Additionally, the review presents data on the role of significant virulence factors of the protein nature of S. pneumoniae strains in nasopharyngeal colonization, increased infectivity, as well as on overcoming reactions of the host's immune response.


Author(s):  
L.S. Zhigis ◽  
◽  
O.V. Kotelnikova ◽  
A.A. Zinchenko ◽  
Yu.A. Prokopenko ◽  
...  

2018 ◽  
Vol 165 (6) ◽  
pp. 763-766
Author(s):  
O. V. Kotel’nikova ◽  
A. P. Alliluev ◽  
A. A. Zinchenko ◽  
Yu. A. Prokopenko ◽  
L. S. Zhigis ◽  
...  
Keyword(s):  

2018 ◽  
Vol 44 (1) ◽  
pp. 64-72 ◽  
Author(s):  
A. A. Zinchenko ◽  
O. V. Kotelnikova ◽  
E. A. Gordeeva ◽  
Yu. A. Prokopenko ◽  
O. A. Razgulyaeva ◽  
...  

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