Связанные научные тематики:
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 Найдено научных статей и публикаций: 29, для научной тематики: Yersinia pestis


11.

Amino acid and structural variability of Yersinia pestis LcrV protein (публикация автора на scipeople)     

Anisimov AP, Dentovskaya SV, Panfertsev EA, Svetoch TE, Kopylov PKh, Segelke BW, Zemla A, Telepnev MV, Motin VL - Infect Genet Evol. , 2010
The LcrV protein is a multifunctional virulence factor and protective antigen of the plague bacterium and is generally conserved between the epidemic strains of Yersinia pestis. We investigated the diversity in the LcrV sequences among non-epidemic Y. pestis strains which have a limited virulence in...
12.

Genotyping and phylogenetic analysis of Yersinia pestis by MLVA: insights into the worldwide expansion of Central Asia plague foci (публикация автора на scipeople)     

Li Y, Cui Y, Hauck Y, Platonov ME, Dai E, Song Y, Guo Z, Pourcel C, Dentovskaya SV, Anisimov AP, Yang R, Vergnaud G - PLoS One , 2009
BACKGROUND: The species Yersinia pestis is commonly divided into three classical biovars, Antiqua, Medievalis, and Orientalis, belonging to subspecies pestis pathogenic for human and the (atypical) non-human pathogenic biovar Microtus (alias Pestoides) including several non-pestis subspecies. Recent...
13.

The subcutaneous inoculation of pH 6 antigen mutants of Yersinia pestis does not affect virulence and immune response in mice (публикация автора на scipeople)     

Anisimov AP, Bakhteeva IV, Panfertsev EA, Svetoch TE, Kravchenko TB, Platonov ME, Titareva GM, Kombarova TI, Ivanov SA, Rakin AV, Amoako KK, Dentovskaya SV - J Med Microbiol. , 2009
Two isogenic sets of Yersinia pestis strains were generated, composed of wild-type strains 231 and I-1996, their non-polar pH 6(-) mutants with deletions in the psaA gene that codes for its structural subunit or the whole operon, as well as strains with restored ability for temperature- and pH-depen...
14.

Insight into Microevolution of Yersinia pestis by Clustered Regularly Interspaced Short Palindromic Repeats (публикация автора на scipeople)     

Yujun Cui, Yanjun Li, Olivier Gorgé, Mikhail E. Platonov, Yanfeng Yan, Zhaobiao Guo, Christine Pourcel, Svetlana V. Dentovskaya, Sergey V. Balakhonov, Xiaoyi Wang, Yajun Song, Andrey P. Anisimov, Gilles Vergnaud, Ruifu Yang - PLoS ONE , 2008
Background Yersinia pestis, the pathogen of plague, has greatly influenced human history on a global scale. Clustered Regularly Interspaced Short Palindromic Repeat (CRISPR), an element participating in immunity against phages' invasion, is composed of short repeated sequences separated by unique s...
15.

Cold temperature-induced modifications to the composition and structure of the lipopolysaccharide of Yersinia pestis (публикация автора на scipeople)     

Yuriy A. Knirel, Buko Lindner, Evgeny Vinogradov, Rima Z. Shaikhutdinova, Sof’ya N. Senchenkova, Nina A. Kocharova, Otto Holst, Gerald B. Pier, Andrey P. Anisimov - Carbohydrate Research , 2005
Following a report of variations in the lipopolysaccharide (LPS) structure of Yersinia pestis at mammalian (37 °C) and flea (25 °C) temperatures, a number of changes to the LPS structure were observed when the bacterium was cultivated at a temperature of winter-hibernating rodents (6 °C). In additio...
16.

Intraspecies and Temperature-Dependent Variations in Susceptibility of Yersinia pestis to the Bactericidal Action of Serum and to Polymyxin B (публикация автора на scipeople)     

Andrey P. Anisimov, Svetlana V. Dentovskaya, Galina M. Titareva, Irina V. Bakhteeva, Rima Z. Shaikhutdinova, Sergey V. Balakhonov, Buko Lindner, Nina A. Kocharova, Sof'ya N. Senchenkova, Otto Holst, Gerald B. Pier, Yuriy A. Knirel - Infect Immun. , 2005
Lipopolysaccharide (LPS) structure impacts the bactericidal action of cationic peptides, such as polymyxin B (PMB), and sensitivity to killing by normal human serum (NHS). Cultivation of different subspecies strains of Yersinia pestis isolated from unrelated geographic origins at various temperature...
17.

Temperature-Dependent Variations and Intraspecies Diversity of the Structure of the Lipopolysaccharide of Yersinia pestis (публикация автора на scipeople)     

Yuriy A. Knirel, Buko Lindner, Evgeny V. Vinogradov, Nina A. Kocharova, Sof'ya N. Senchenkova, Rima Z. Shaikhutdinova, Svetlana V. Dentovskaya, Nadezhda K. Fursova, Irina V. Bakhteeva, Galina M. Titareva, Sergey V. Balakhonov, Otto Holst, Tat'yana A. Gremyakova, Gerald B. Pier, Andrey P. Anisimov - Biochemistry , 2005
Yersinia pestis spread throughout the Americas in the early 20th century, and it occurs predominantly as a single clone within this part of the world. However, within Eurasia and parts of Africa there is significant diversity among Y. pestis strains, which can be classified into different biovars (b...
18.

Intraspecific Diversity of Yersinia pestis (публикация автора на scipeople)     

Andrey P. Anisimov, Luther E. Lindler, Gerald B. Pier - Clin Microbiol Rev. , 2004
Increased interest in the pathogenic potential of Yersinia pestis has emerged because of the potential threats from bioterrorism. Pathogenic potential is based on genetic factors present in a population of microbes, yet most studies evaluating the role of specific genes in virulence have used a limi...
19.

The core structure of the lipopolysaccharide from the causative agent of plague, Yersinia pestis. (публикация автора на scipeople)     

Vinogradov E.V., Lindner B., Kocharova N.A., Senchenkova S.N., Shashkov A.S., Knirel Yu.A., Holst O., Gremya-kova T.A., Shaikhutdinova R.Z., Anisimov A.P. - Carbohydr Res. , 2002
The rough-type lipopolysaccharide (LPS) of the plague pathogen, Yersinia pestis, was studied after mild-acid and strong-alkaline degradations by chemical analyses, NMR spectroscopy and electrospray-ionization mass spectrometry, and the following structure of the core region was determined:where L-al...
20.

Молекулярно-генетические механизмы образования и функциональная значимость капсулы Yersinia pestis (публикация автора на scipeople)   

Анисимов А.П. - Работа выполнена в Российском научно-исследовательском противочумном институте “Микроб” МЗ РФ (Саратов) и Государственном научном центре прикладной микробиологии МЗ РФ (Оболенск). , 2000
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