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k pneumoniae atcc baa  (ATCC)


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    Structured Review

    ATCC k pneumoniae atcc baa
    K Pneumoniae Atcc Baa, supplied by ATCC, used in various techniques. Bioz Stars score: 98/100, based on 424 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/k+pneumoniae+atcc+baa/Klebsiella+pneumoniae+(Schroeter)+Trevisan/pmc13271050-93-14-16
    Average 98 stars, based on 424 article reviews
    k pneumoniae atcc baa - by Bioz Stars, 2026-09
    98/100 stars

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    other:

    Article Title: Prevalence of extended-spectrum β-lactamase and carbapenemase-producing Escherichia coli from patients, cattle, and environmental sources in northwest Amhara, Ethiopia: a one health approach.
    Article Snippet: Additionally, E. coli ATCC 25922 and K. pneumoniae ATCC BAA-1705 were used as negative and positive controls for carbapenemase production, respectively [44].

    Control:

    Article Title: Multicenter Analytical Performance Evaluation of the BD Phoenix NMIC-461 Panel for Carbapenemase Classification and Antimicrobial Susceptibility Testing of Enterobacterales , Pseudomonas aeruginosa , and Acinetobacter spp.
    Article Snippet: .. E. coli ATCC 25922, P. aeruginosa ATCC 27853, K. pneumoniae ATCC 700603, and K. pneumoniae ATCC BAA-1705 were used as quality control strains as recommended by Clinical and Laboratory Standards Institute (CLSI) M100, 2023 [ ]. ..

    Article Title: Multiplex real-time PCR with high-resolution melting analysis for rapid identification of carbapenem and colistin resistance genes in clinical Enterobacterales isolates.
    Article Snippet: E. coli ATCC 25922 and P. aeruginosa ATCC 27853 were used as quality control strains for antimicrobial susceptibility testing. .. K. pneumoniae ATCC BAA-1705 and K. pneumoniae ATCC BAA-1706 were used as quality control strains for the detection of AMR determinants. ..

    Article Title: Multicenter Analytical Performance Evaluation of the BD Phoenix NMIC-461 Panel for Carbapenemase Classification and Antimicrobial Susceptibility Testing of Enterobacterales , Pseudomonas aeruginosa , and Acinetobacter spp.
    Article Snippet: .. E. coli ATCC 25922, P. aeruginosa ATCC 27853, K. pneumoniae ATCC 700603, and K. pneumoniae ATCC BAA-1705 were used as quality control strains as recommended by Clinical and Laboratory Standards Institute (CLSI) M100, 2023 [24]. ..

    Article Title: Genetic and biochemical characterization of OXA-1054, a carbapenem-hydrolyzing class D β-lactamase conferring broad-spectrum β-lactam resistance in Pseudomonas aeruginosa .
    Article Snippet: .. Reference strains P. aeruginosa ATCC 27853, Klebsiella pneumoniae ATCC 700603, E. coli NCTC 13353, and K. pneumoniae ATCC BAA-2814 were used as control strains according to the CLSI M100 guidelines. .. The blaOXA-1054, blaOXA-48, and blaOXA-198 genes were cloned into the pGEX-6P-1 plasmid (Cytiva, Massachusetts, USA) using pre-designed primers lacking the signal peptide sequence of the β-lactamases following previously described procedures (48).

    Article Title: Multiplex real-time PCR with high-resolution melting analysis for rapid identification of carbapenem and colistin resistance genes in clinical Enterobacterales isolates
    Article Snippet: E. coli ATCC 25,922 and P. aeruginosa ATCC 27,853 were used as quality control strains for antimicrobial susceptibility testing. .. K. pneumoniae ATCC BAA-1705 and K. pneumoniae ATCC BAA-1706 were used as quality control strains for the detection of AMR determinants. ..




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    ATCC k pneumoniae atcc baa2146
    Sequence and structure comparison of VirK (from K. pneumoniae ATCC <t>BAA2146)</t> and YbjX (from E. coli K-12 ) proteins. ( A ) Alignment of the amino acid sequence of VirK ( Q ) with that of YbjX ( T ); ( B ) Comparison of the protein structures of VirK and YbjX. Amino acid sequences and structures were compared using the foldseek server . The protein structure of YbjX was obtained from the AFDB database (AFDB accession: AF- P75829 -F1).
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    ATCC k pneumoniae atcc baa2146 serial strains
    Sequence and structure comparison of VirK (from K. pneumoniae ATCC <t>BAA2146)</t> and YbjX (from E. coli K-12 ) proteins. ( A ) Alignment of the amino acid sequence of VirK ( Q ) with that of YbjX ( T ); ( B ) Comparison of the protein structures of VirK and YbjX. Amino acid sequences and structures were compared using the foldseek server . The protein structure of YbjX was obtained from the AFDB database (AFDB accession: AF- P75829 -F1).
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    ATCC k pneumoniae atcc baa 2146 genome
    PhoP directly regulates the expression of virK in K. pneumoniae . ( A ) The ability of PhoP to bind to the virK promoter was determined by EMSA. His-tagged PhoP was incubated with virK and 16S rDNA (negative control) in a concentration gradient. The experiments were repeated three times. An upward arrow marks bound DNA fragments, a middle arrow indicates free DNA fragments, and the bottom arrow represents the 16S rDNA fragment.( B ) Mapping of PhoP binding sites in K. pneumoniae ATCC <t>BAA</t> <t>2146</t> by ChIP-seq. IGV genome browser view showing PhoP binding regions around the virK gene across the K. pneumoniae genome. IP: Experimental group, namely the IP samples; IN: Control group, namely the IN sample; numbers represent three independent replicate trials. ( C ) ChIP and real-time PCR assays were used to investigate the binding of PhoP to the putative binding site in the promoter region of the virK gene. The experiments were independently repeated three times. The PhoQ gene was used as a positive control. The ChIP DNA was enriched using an IgG antibody and a Flag antibody and quantified by qPCR. ( D ) DNase I footprinting analysis of PhoP binding to the virK promoter. The intergenic fragment was labeled with 6-carboxyfluorescein (FAM) dye and incubated with 10 μg of PhoP (upper curve) or without PhoP (lower curve). The region protected by PhoP from DNase I cleavage is indicated with a black dotted box (ACACCTCAATCAATTTTAA).
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    Sequence and structure comparison of VirK (from K. pneumoniae ATCC BAA2146) and YbjX (from E. coli K-12 ) proteins. ( A ) Alignment of the amino acid sequence of VirK ( Q ) with that of YbjX ( T ); ( B ) Comparison of the protein structures of VirK and YbjX. Amino acid sequences and structures were compared using the foldseek server . The protein structure of YbjX was obtained from the AFDB database (AFDB accession: AF- P75829 -F1).

    Journal: Nucleic Acids Research

    Article Title: PhoP-regulated VirK acts as an accessory factor to maintain virulence in polymyxin-resistant Klebsiella pneumoniae

    doi: 10.1093/nar/gkag290

    Figure Lengend Snippet: Sequence and structure comparison of VirK (from K. pneumoniae ATCC BAA2146) and YbjX (from E. coli K-12 ) proteins. ( A ) Alignment of the amino acid sequence of VirK ( Q ) with that of YbjX ( T ); ( B ) Comparison of the protein structures of VirK and YbjX. Amino acid sequences and structures were compared using the foldseek server . The protein structure of YbjX was obtained from the AFDB database (AFDB accession: AF- P75829 -F1).

    Article Snippet: The effects of virK on bacterial pathogenicity were further evaluated in a mouse systemic infection model using virK mutants and complemented strains under K. pneumoniae ATCC BAA2146 (wild type) or Mut-S ( mgrB truncated strain) backgrounds.

    Techniques: Sequencing, Comparison

    Sequence and structure comparison of VirK (from K. pneumoniae ATCC BAA2146) and YbjX (from E. coli K-12 ) proteins. ( A ) Alignment of the amino acid sequence of VirK ( Q ) with that of YbjX ( T ); ( B ) Comparison of the protein structures of VirK and YbjX. Amino acid sequences and structures were compared using the foldseek server . The protein structure of YbjX was obtained from the AFDB database (AFDB accession: AF- P75829 -F1).

    Journal: Nucleic Acids Research

    Article Title: PhoP-regulated VirK acts as an accessory factor to maintain virulence in polymyxin-resistant Klebsiella pneumoniae

    doi: 10.1093/nar/gkag290

    Figure Lengend Snippet: Sequence and structure comparison of VirK (from K. pneumoniae ATCC BAA2146) and YbjX (from E. coli K-12 ) proteins. ( A ) Alignment of the amino acid sequence of VirK ( Q ) with that of YbjX ( T ); ( B ) Comparison of the protein structures of VirK and YbjX. Amino acid sequences and structures were compared using the foldseek server . The protein structure of YbjX was obtained from the AFDB database (AFDB accession: AF- P75829 -F1).

    Article Snippet: Results from K. pneumoniae ATCC BAA2146 serial strains suggested that virK deficiency resulted in a modest reduction in bacterial virulence, while complementation partially restored this phenotype.

    Techniques: Sequencing, Comparison

    PhoP directly regulates the expression of virK in K. pneumoniae . ( A ) The ability of PhoP to bind to the virK promoter was determined by EMSA. His-tagged PhoP was incubated with virK and 16S rDNA (negative control) in a concentration gradient. The experiments were repeated three times. An upward arrow marks bound DNA fragments, a middle arrow indicates free DNA fragments, and the bottom arrow represents the 16S rDNA fragment.( B ) Mapping of PhoP binding sites in K. pneumoniae ATCC BAA 2146 by ChIP-seq. IGV genome browser view showing PhoP binding regions around the virK gene across the K. pneumoniae genome. IP: Experimental group, namely the IP samples; IN: Control group, namely the IN sample; numbers represent three independent replicate trials. ( C ) ChIP and real-time PCR assays were used to investigate the binding of PhoP to the putative binding site in the promoter region of the virK gene. The experiments were independently repeated three times. The PhoQ gene was used as a positive control. The ChIP DNA was enriched using an IgG antibody and a Flag antibody and quantified by qPCR. ( D ) DNase I footprinting analysis of PhoP binding to the virK promoter. The intergenic fragment was labeled with 6-carboxyfluorescein (FAM) dye and incubated with 10 μg of PhoP (upper curve) or without PhoP (lower curve). The region protected by PhoP from DNase I cleavage is indicated with a black dotted box (ACACCTCAATCAATTTTAA).

    Journal: Nucleic Acids Research

    Article Title: PhoP-regulated VirK acts as an accessory factor to maintain virulence in polymyxin-resistant Klebsiella pneumoniae

    doi: 10.1093/nar/gkag290

    Figure Lengend Snippet: PhoP directly regulates the expression of virK in K. pneumoniae . ( A ) The ability of PhoP to bind to the virK promoter was determined by EMSA. His-tagged PhoP was incubated with virK and 16S rDNA (negative control) in a concentration gradient. The experiments were repeated three times. An upward arrow marks bound DNA fragments, a middle arrow indicates free DNA fragments, and the bottom arrow represents the 16S rDNA fragment.( B ) Mapping of PhoP binding sites in K. pneumoniae ATCC BAA 2146 by ChIP-seq. IGV genome browser view showing PhoP binding regions around the virK gene across the K. pneumoniae genome. IP: Experimental group, namely the IP samples; IN: Control group, namely the IN sample; numbers represent three independent replicate trials. ( C ) ChIP and real-time PCR assays were used to investigate the binding of PhoP to the putative binding site in the promoter region of the virK gene. The experiments were independently repeated three times. The PhoQ gene was used as a positive control. The ChIP DNA was enriched using an IgG antibody and a Flag antibody and quantified by qPCR. ( D ) DNase I footprinting analysis of PhoP binding to the virK promoter. The intergenic fragment was labeled with 6-carboxyfluorescein (FAM) dye and incubated with 10 μg of PhoP (upper curve) or without PhoP (lower curve). The region protected by PhoP from DNase I cleavage is indicated with a black dotted box (ACACCTCAATCAATTTTAA).

    Article Snippet: Sequence reads were obtained from ChIP-seq analysis using an anti-Flag antibody and mapped to the K. pneumoniae ATCC BAA-2146 genome (ASM36438v3).

    Techniques: Expressing, Incubation, Negative Control, Concentration Assay, Binding Assay, ChIP-sequencing, Control, Real-time Polymerase Chain Reaction, Positive Control, Footprinting, Labeling