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b subtilis atcc 9466  (ATCC)


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    Structured Review

    ATCC b subtilis atcc 9466
    B Subtilis Atcc 9466, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 23 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/bacillus+subtilis+atcc+9466/Bacillus+subtilis+(Ehrenberg)+Cohn/pmc10995869-232-9-11
    Average 93 stars, based on 23 article reviews
    b subtilis atcc 9466 - by Bioz Stars, 2026-09
    93/100 stars

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    In Vitro:

    Article Title: An appraisal of anti-mycobacterial activity with structure-activity relationship of piperazine and its analogues: A review.
    Article Snippet: This is a PDF file of an article that has undergone enhancements after acceptance, such as the addition of a cover page and metadata, and formatting for readability, but it is not yet the definitive version of record.. This version will undergo additional copyediting, typesetting and review before it is published in its final form, but we are providing this version to give early visibility of the article.. Please note that, during the production process, errors may be discovered which could affect the content, and all legal disclaimers that apply to the journal pertain.

    Microbial Assay:

    Article Title: Efficacy of ceftolozane in a murine model of Pseudomonas aeruginosa acute pneumonia: in vivo antimicrobial activity and impact on host inflammatory response.
    Article Snippet: Concentrations of ceftolozane in plasma were determined by microbiological assay with Klebsiella pneumoniae as the test organism and Antibiotic Medium no. 2 (Difco Laboratories, Detroit, MI, USA) as the diffusion medium (lower detection limit, 0.5 mg/L; intra- and interday variations, ,10%). .. Concentrations of both ceftazidime and piperacillin/tazobactam were determined by microbiological assay with Bacillus subtilis ATCC 9466 as the test organism and Antibiotic Medium no. 2 as the diffusion medium (lower detection limit, 0.5 mg/L; intra- and interday variations, ,10%). .. Pneumonia was induced as previously described.16 Mice were briefly anaesthetized with isoflurane (Abbott, Chicago, IL, USA) and placed in dorsal recumbency.

    Diffusion-based Assay:

    Article Title: Efficacy of ceftolozane in a murine model of Pseudomonas aeruginosa acute pneumonia: in vivo antimicrobial activity and impact on host inflammatory response.
    Article Snippet: Concentrations of ceftolozane in plasma were determined by microbiological assay with Klebsiella pneumoniae as the test organism and Antibiotic Medium no. 2 (Difco Laboratories, Detroit, MI, USA) as the diffusion medium (lower detection limit, 0.5 mg/L; intra- and interday variations, ,10%). .. Concentrations of both ceftazidime and piperacillin/tazobactam were determined by microbiological assay with Bacillus subtilis ATCC 9466 as the test organism and Antibiotic Medium no. 2 as the diffusion medium (lower detection limit, 0.5 mg/L; intra- and interday variations, ,10%). .. Pneumonia was induced as previously described.16 Mice were briefly anaesthetized with isoflurane (Abbott, Chicago, IL, USA) and placed in dorsal recumbency.

    Transformation Assay:

    Article Title: L-alanyl-L-glutamine crystal
    Article Snippet: .. Examples of the microorganisms having the ability to produce the protein according to any of [1] to [4] of the above (1)(a) are microorganisms belonging to the genus Bacillus which have a bacilysin synthetase gene described in WO2004/058960, preferably, Bacillus subtilis, Bacillus amyloliquefaciens, Bacillus coagulans, Bacillus licheniformis, Bacillus megaterium and Bacillus pumilus, more preferably, Bacillus subtilis 168 (ATCC 23857), Bacillus subtilis ATCC 15245, Bacillus subtilis ATCC 6633, Bacillus subtilis IAM 1213, Bacillus subtilis IAM 1107, Bacillus subtilis IAM 1214, Bacillus subtilis ATCC 9466, Bacillus subtilis IAM 1033, Bacillus subtilis ATCC 21555, Bacillus amyloliquefaciens IFO 3022 and microorganisms transformed with DNA encoding the protein according to any of [1] to [4] of the above (1). ..

    Activity Assay:

    Article Title: Process for producing dipeptides or dipeptide derivatives
    Article Snippet: .. Examples of the cells having the ability to produce the protein having the dipeptide-forming activity include bacteria belonging to the genus Bacillus or Streptomyces which carry the DNA of the above 3 on the chromosomal DNA, preferably, bacteria belonging to the genus Bacillus which have bacilysin-synthesizing activity and bacteria belonging to the genus Streptomyces which have the ability to produce albonoursin, more preferably, bacteria belonging to a species selected from the group consisting of Bacillus subtilis, Bacillus amyloliquefaciens, Bacillus coagulans, Bacillus licheniformis, Bacillus megaterium, Bacillus pumilus, Streptomyces albulus and Streptomyces noursei, further preferably, bacteria selected from the group consisting of the strains Bacillus subtilis ATCC 15245, Bacillus subtilis ATCC 6633, Bacillus subtilis IAM 1213, Bacillus subtilis IAM 1107, Bacillus subtilis IAM 1214, Bacillus subtilis ATCC 9466, Bacillus subtilis IAM 1033, Bacillus subtilis ATCC 21555, Bacillus amyloliquefaciens IFO 3022, Bacillus pumilus NRRL B-12025, Streptomyces noursei IFO 15452 and Streptomyces albulus IFO 14147, and transformants that can be prepared by introducing DNA obtained by the method of the above 3 into host cells using the methods described in Molecular Cloning, Third Edition, Current Protocols in Molecular Biology, etc., for example, according to the method described below. .. Examples of the cells having the ability to produce the protein having polyphosphate kinase activity include bacteria belonging to the genus Escherichia, Rhodobacter, Chloroflexus, Mesorhizobium, Streptomyces, Pseudomonas or Sinorhizobium which carry the DNA of the above 4 on the chromosomal DNA, more preferably, bacteria selected from the group consisting of the strains Escherichia coli W3110, Rhodobacter sphaeroides ATCC 17023, Chloroflexus aurantiacus ATCC 29366, Streptomyces coelicolor ATCC BAA-471, Pseudomonas putida KT 2440 and Sinorhizobium meliloti ATCC 51124, and transformants that can be prepared by introducing DNA obtained by the method of the above 4 into host cells using the methods described in Molecular Cloning, Third Edition, Current Protocols in Molecular Biology, etc., for example, according to the method described below.

    Article Title: L-alanyl-L-glutamine crystal
    Article Snippet: .. The homology among amino acid sequences can be determined by using programs such as BLAST and FASTA described above. (3) Process for Producing Microorganisms Used in the Process of the Present Invention (a) Process for Producing Microorganisms which have the Ability to Produce a Protein Having the Activity to Form a Dipeptide from One or More Kinds of Amino Acids Selected from the Group Consisting of L-Amino Acids, Glycine and β-Alanine Bacillus subtilis, Bacillus amyloliquefaciens, Bacillus coagulans, Bacillus licheniformis, Bacillus megaterium and Bacillus pumilus having a bacilysin-synthetase gene described in WO2004/058960, specifically, Bacillus subtilis ATCC 23857, Bacillus subtilis ATCC 15245, Bacillus subtilis ATCC 6633, Bacillus subtilis IAM 1213, Bacillus subtilis IAM 1107, Bacillus subtilis IAM 1214, Bacillus subtilis ATCC 9466, Bacillus subtilis IAM 1033, Bacillus subtilis ATCC 21555 and Bacillus amyloliquefaciens IFO 3022, which have the ability to produce a protein having the activity to form a dipeptide from one or more kinds of amino acids selected from the group consisting of L-amino acids, glycine and β-alanine, can be used in the process of the present invention. ..

    Article Title: Process for producing dipeptides
    Article Snippet: .. The microorganism used in the above process may be any microorganism having the ability to produce a protein of the present invention, but is preferably a microorganism belonging to the genus Bacillus, more preferably a microorganism belonging to the genus Bacillus and having the bacilysin-synthesizing activity, further preferably a microorganism belonging to a species selected from the group consisting of Bacillus subtilis, Bacillus amyloliquefaciens, Bacillus coagulans, Bacillus licheniformis, Bacillus megaterium and Bacillus pumilus, and most preferably a strain selected from the group consisting of Bacillus subtilis ATCC 15245, Bacillus subtilis ATCC 6633, Bacillus subtilis IAM 1213, Bacillus subtilis IAM 1107, Bacillus subtilis IAM 1214, Bacillus subtilis ATCC 9466, Bacillus subtilis IAM 1033, Bacillus subtilis ATCC 21555, Bacillus amyloliquefaciens IFO 3022 and Bacillus pumilus NRRL B-12025. ..

    Bacteria:

    Article Title: Process for producing dipeptides or dipeptide derivatives
    Article Snippet: .. Examples of the cells having the ability to produce the protein having the dipeptide-forming activity include bacteria belonging to the genus Bacillus or Streptomyces which carry the DNA of the above 3 on the chromosomal DNA, preferably, bacteria belonging to the genus Bacillus which have bacilysin-synthesizing activity and bacteria belonging to the genus Streptomyces which have the ability to produce albonoursin, more preferably, bacteria belonging to a species selected from the group consisting of Bacillus subtilis, Bacillus amyloliquefaciens, Bacillus coagulans, Bacillus licheniformis, Bacillus megaterium, Bacillus pumilus, Streptomyces albulus and Streptomyces noursei, further preferably, bacteria selected from the group consisting of the strains Bacillus subtilis ATCC 15245, Bacillus subtilis ATCC 6633, Bacillus subtilis IAM 1213, Bacillus subtilis IAM 1107, Bacillus subtilis IAM 1214, Bacillus subtilis ATCC 9466, Bacillus subtilis IAM 1033, Bacillus subtilis ATCC 21555, Bacillus amyloliquefaciens IFO 3022, Bacillus pumilus NRRL B-12025, Streptomyces noursei IFO 15452 and Streptomyces albulus IFO 14147, and transformants that can be prepared by introducing DNA obtained by the method of the above 3 into host cells using the methods described in Molecular Cloning, Third Edition, Current Protocols in Molecular Biology, etc., for example, according to the method described below. .. Examples of the cells having the ability to produce the protein having polyphosphate kinase activity include bacteria belonging to the genus Escherichia, Rhodobacter, Chloroflexus, Mesorhizobium, Streptomyces, Pseudomonas or Sinorhizobium which carry the DNA of the above 4 on the chromosomal DNA, more preferably, bacteria selected from the group consisting of the strains Escherichia coli W3110, Rhodobacter sphaeroides ATCC 17023, Chloroflexus aurantiacus ATCC 29366, Streptomyces coelicolor ATCC BAA-471, Pseudomonas putida KT 2440 and Sinorhizobium meliloti ATCC 51124, and transformants that can be prepared by introducing DNA obtained by the method of the above 4 into host cells using the methods described in Molecular Cloning, Third Edition, Current Protocols in Molecular Biology, etc., for example, according to the method described below.

    Molecular Cloning:

    Article Title: Process for producing dipeptides or dipeptide derivatives
    Article Snippet: .. Examples of the cells having the ability to produce the protein having the dipeptide-forming activity include bacteria belonging to the genus Bacillus or Streptomyces which carry the DNA of the above 3 on the chromosomal DNA, preferably, bacteria belonging to the genus Bacillus which have bacilysin-synthesizing activity and bacteria belonging to the genus Streptomyces which have the ability to produce albonoursin, more preferably, bacteria belonging to a species selected from the group consisting of Bacillus subtilis, Bacillus amyloliquefaciens, Bacillus coagulans, Bacillus licheniformis, Bacillus megaterium, Bacillus pumilus, Streptomyces albulus and Streptomyces noursei, further preferably, bacteria selected from the group consisting of the strains Bacillus subtilis ATCC 15245, Bacillus subtilis ATCC 6633, Bacillus subtilis IAM 1213, Bacillus subtilis IAM 1107, Bacillus subtilis IAM 1214, Bacillus subtilis ATCC 9466, Bacillus subtilis IAM 1033, Bacillus subtilis ATCC 21555, Bacillus amyloliquefaciens IFO 3022, Bacillus pumilus NRRL B-12025, Streptomyces noursei IFO 15452 and Streptomyces albulus IFO 14147, and transformants that can be prepared by introducing DNA obtained by the method of the above 3 into host cells using the methods described in Molecular Cloning, Third Edition, Current Protocols in Molecular Biology, etc., for example, according to the method described below. .. Examples of the cells having the ability to produce the protein having polyphosphate kinase activity include bacteria belonging to the genus Escherichia, Rhodobacter, Chloroflexus, Mesorhizobium, Streptomyces, Pseudomonas or Sinorhizobium which carry the DNA of the above 4 on the chromosomal DNA, more preferably, bacteria selected from the group consisting of the strains Escherichia coli W3110, Rhodobacter sphaeroides ATCC 17023, Chloroflexus aurantiacus ATCC 29366, Streptomyces coelicolor ATCC BAA-471, Pseudomonas putida KT 2440 and Sinorhizobium meliloti ATCC 51124, and transformants that can be prepared by introducing DNA obtained by the method of the above 4 into host cells using the methods described in Molecular Cloning, Third Edition, Current Protocols in Molecular Biology, etc., for example, according to the method described below.

    Sterility:

    Article Title: Effectiveness of purple led for inactivation of Bacillus subtilis and Escherichia coli bacteria in in vitro sterilizers
    Article Snippet: .. Bacterial Culture The bacterial strain, Bacillus subtilis ATCC 9466 and Escherichia coli ATCC 25922 was inoculated from Tryptone Soy Agar (Oxoid, UK) and taken on Tryptone Soy Broth sterile (Oxoid, UK). ..



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