scholarly journals Diversity and Function of Capsular Polysaccharide in Acinetobacter baumannii

2019 ◽  
Vol 9 ◽  
Author(s):  
Jennifer K. Singh ◽  
Felise G. Adams ◽  
Melissa H. Brown
2014 ◽  
Vol 391 ◽  
pp. 89-92 ◽  
Author(s):  
Sof’ya N. Senchenkova ◽  
Alexander S. Shashkov ◽  
Mikhail M. Shneider ◽  
Nikolay P. Arbatsky ◽  
Anastasiya V. Popova ◽  
...  

Author(s):  
Johanna J Kenyon ◽  
Ruth M. Hall

To enhance the utility of the genetically diverse panel of Acinetobacter baumannii isolates reported recently by Galac and co-workers (AAC 64: e00840-20) and to identify the novel KL and OCL, all of the gene clusters that direct the biosynthesis of capsular polysaccharide and of the outer core of lipooligosaccharide, respectively, were re-examined. The nine KL and one OCL previously recorded as novel were identified and nine further novel KL and two OCL were found.


2017 ◽  
Vol 85 (12) ◽  
Author(s):  
Shun Xin Wang-Lin ◽  
Ruth Olson ◽  
Janet M. Beanan ◽  
Ulrike MacDonald ◽  
Joseph P. Balthasar ◽  
...  

ABSTRACT Acinetobacter baumannii has become an important concern for human health due to rapid development and wide spread of antimicrobial-resistant strains and high mortality associated with the infection. Passive immunizations with antisera targeting outer membrane proteins (OMPs) have shown encouraging results in protecting mice from A. baumannii infection, but monoclonal anti-OMP antibodies have not been developed, and their potential therapeutic properties have not been explored. The goal of this report is to evaluate the antibacterial activity of monoclonal antibodies (MAbs) targeting outer membrane protein A (OmpA) of A. baumannii. Five anti-OmpA MAbs were developed using hybridoma technology and showed strong binding to strain ATCC 19606. However, low antibody binding was observed when they were tested against six clinical isolates, which included extensively drug-resistant strains. In contrast, high binding to an isogenic K1 capsule-negative mutant (AB307.30) was shown, suggesting that capsular polysaccharide mediated the inhibition of MAb binding to OmpA. Anti-OmpA MAbs increased the macrophage-mediated bactericidal activity of AB307.30 but failed to increase phagocytic killing of capsule-positive strains. Capsular polysaccharide was also protective against complement-mediated bactericidal activity in human ascites in the presence and absence of opsonization. Lastly, passive immunization with anti-OmpA MAbs did not confer protection against challenge with AB307-0294, the encapsulated parent strain of AB307.30, in a mouse sepsis infection model. These results reveal the important role of capsule polysaccharide in shielding OmpA and thereby inhibiting anti-OmpA MAb binding to clinical isolates. This property of capsule hindered the therapeutic utility of anti-OmpA MAbs, and it may apply to other conserved epitopes in A. baumannii.


2018 ◽  
Vol 117 ◽  
pp. 1195-1199 ◽  
Author(s):  
Nikolay P. Arbatsky ◽  
Mikhail M. Shneider ◽  
Andrei S. Dmitrenok ◽  
Anastasia V. Popova ◽  
Dmitry A. Shagin ◽  
...  

2018 ◽  
Vol 114 (3) ◽  
pp. 491a
Author(s):  
Jigneshkumar D. Prajapati ◽  
Satya Prathyusha Bhamidimarri ◽  
Michael Zahn ◽  
Dirk Bumann ◽  
Mathias Winterhalter ◽  
...  

2020 ◽  
Vol 85 (2) ◽  
pp. 241-247 ◽  
Author(s):  
S. M. Cahill ◽  
N. P. Arbatsky ◽  
A. S. Shashkov ◽  
M. M. Shneider ◽  
A. V. Popova ◽  
...  

2019 ◽  
Vol 485 ◽  
pp. 107814 ◽  
Author(s):  
Nikolay P. Arbatsky ◽  
Anastasiya A. Kasimova ◽  
Alexander S. Shashkov ◽  
Mikhail M. Shneider ◽  
Anastasiya V. Popova ◽  
...  

2009 ◽  
Vol 22 (11) ◽  
pp. 1422-1430 ◽  
Author(s):  
Adrienn Pálvölgyi ◽  
Veronika Deák ◽  
Véréna Poinsot ◽  
Tibor Nagy ◽  
Enik Nagy ◽  
...  

Rhizobial surface polysaccharides, including capsular polysaccharides (KPS), are involved in symbiotic infection. The rkp-3 locus of Sinorhizobium meliloti 41 is responsible for the production of pseudaminic acid, one of the components of the KR5 antigen, a strain-specific KPS. We have extended the sequence determination and genetic dissection of the rkp-3 region to clarify the structure and function of the rkpY gene and to identify additional rkp genes. Except for rkpY, no other genes were found where mutation affected the KPS structure and symbiosis. These mutants show a unique phenotype producing a low molecular weight polysaccharide (LMW PS). Creating double mutants, we have shown that biosynthesis genes of the KR5 antigen except rkpZ are not necessary for the production of this LMW PS. Polysaccharide analysis of genetically modified strains suggests that rkpY has pleiotropic effects on polysaccharide production. It directs KPS synthesis to the KR5 antigen and influences lipo-oligo 3-deoxy-d-manno-2 octulosonic acid (Kdo) production in S. meliloti 41. In addition, rkpY suppresses the lipo-oligoKdo production when it is introduced into S. meliloti 1021.


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