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f nucleatum atcc 10953  (ATCC)


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    Structured Review

    ATCC f nucleatum atcc 10953
    F Nucleatum Atcc 10953, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 176 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/f+nucleatum+atcc+10953/Fusobacterium+nucleatum%3B+subsp%2E+polymorphum/pmc12632247-0-0-2
    Average 96 stars, based on 176 article reviews
    f nucleatum atcc 10953 - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Membrane:

    Article Title: Mediated electron transfer in five prevalent human oral microbial species.
    Article Snippet: An increasing number of microbial species within the human body, many of which are pathogenic, are being reported as ‘‘electroactive’’.. However, the mechanisms and kinetics of extracellular electron transfer (EET) and its putative ecological relevance remain understudied.. We utilized rotating disk electrodes (RDEs) to assess mediated electron transfer (MET) in five oral species via their ability to reduce riboflavin and ferricyanide.

    other:

    Article Title: Microbial Coaggregation in the Oral Cavity: Molecular Interactions and Current Insights.
    Article Snippet: Additionally, deletion of the porin protein FomA in P. gingivalis ATCC 33277 reduced its coaggregation with F. nucleatum ATCC 10953 [113].

    Article Title: Microbial Coaggregation in the Oral Cavity: Molecular Interactions and Current Insights
    Article Snippet: Additionally, deletion of the porin protein FomA in P. gingivalis ATCC 33277 reduced its coaggregation with F. nucleatum ATCC 10953 [ ].

    Article Title: Characterisation of novel Fusobacterium nucleatum bacteriophages and their efficacy in disrupting pathogenic dual-species biofilms
    Article Snippet: F. nucleatum ATCC 10953 , F. nucleatum subsp. polymorphum , ATCC , 2,485,425 , 26.88 , 41× , FNU2 & FNU3.

    CRISPR:

    Article Title: Characterisation of novel Fusobacterium nucleatum bacteriophages and their efficacy in disrupting pathogenic dual-species biofilms
    Article Snippet: .. Furthermore, CRISPR analysis revealed that F. nucleatum strain 2256 contained 189 CRISPR spacers, while F. nucleatum ATCC 10953 had only four. ..



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    ATCC f nucleatum subsp polymorphum atcc 10953 genebank accession
    Genetic organization of two sets of EtfAB genes in <t>Fusobacterium</t> <t>nucleatum</t> and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).
    F Nucleatum Subsp Polymorphum Atcc 10953 Genebank Accession, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC f nucleatum subsp polymorphum atcc 10953
    Genetic organization of two sets of EtfAB genes in <t>Fusobacterium</t> <t>nucleatum</t> and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).
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    Average 97 stars, based on 1 article reviews
    f nucleatum subsp polymorphum atcc 10953 - by Bioz Stars, 2026-09
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    ATCC f nucleatum subspecies polymorphum atcc 10953
    Genetic organization of two sets of EtfAB genes in <t>Fusobacterium</t> <t>nucleatum</t> and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).
    F Nucleatum Subspecies Polymorphum Atcc 10953, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Average 96 stars, based on 1 article reviews
    f nucleatum subspecies polymorphum atcc 10953 - by Bioz Stars, 2026-09
    96/100 stars
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    Genetic organization of two sets of EtfAB genes in Fusobacterium nucleatum and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).

    Journal: The Journal of Biological Chemistry

    Article Title: Direct coupling of lactate oxidation with butyryl-CoA formation via a canonical electron transfer flavoprotein in Fusobacterium nucleatum

    doi: 10.1016/j.jbc.2025.110796

    Figure Lengend Snippet: Genetic organization of two sets of EtfAB genes in Fusobacterium nucleatum and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).

    Article Snippet: Ldh ((S)-2-hydroxy-acid oxidase) from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: AAL93662.1 ; Bcd from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: ZP_02272040 ; EtfB from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: ZP_02272039 ; and EtfA from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: ZP_02272038 .

    Techniques: Bacteria

    Canonical versus bifurcating ETF. A , based on sequence alignment, the ETF encoded in the lct gene cluster of Anaerobutyricum hallii may function as a confurcating ETF in complex with Ldh and a bifurcating ETF with Bcd. The overall reaction (lactate + crotonyl-CoA → pyruvate + butyryl-CoA) would lead to stoichiometric recycling of NAD/NADH and ferredoxin (Fd). B , in Fusobacterium nucleatum , ETF functions as a canonical ETF transferring two electrons from Ldh to Bcd. In A. hadrus , A. caccea and C. catus, A. hallii, the conversion of lactate and acetate to butyrate may occur through the combined action of Ldh/ETF/Bcd and butyrate-acetate CoA-transferase (denoted by 1) and in F. nucleatum , the release of butyrate is dependent on butyrate-acetoacetate CoA-transferase (denoted by 2). In F. nucleatum , butyryl-CoA oxygen oxidoreductase (denoted by 3) can oxidize butyryl-CoA to crotonyl-CoA transferring reducing equivalents to a diiron center for reduction of O 2 to H 2 O. Bcd, butyryl-CoA dehydrogenase; ETF, electron transfer flavoprotein; Ldh, lactate dehydro genase.

    Journal: The Journal of Biological Chemistry

    Article Title: Direct coupling of lactate oxidation with butyryl-CoA formation via a canonical electron transfer flavoprotein in Fusobacterium nucleatum

    doi: 10.1016/j.jbc.2025.110796

    Figure Lengend Snippet: Canonical versus bifurcating ETF. A , based on sequence alignment, the ETF encoded in the lct gene cluster of Anaerobutyricum hallii may function as a confurcating ETF in complex with Ldh and a bifurcating ETF with Bcd. The overall reaction (lactate + crotonyl-CoA → pyruvate + butyryl-CoA) would lead to stoichiometric recycling of NAD/NADH and ferredoxin (Fd). B , in Fusobacterium nucleatum , ETF functions as a canonical ETF transferring two electrons from Ldh to Bcd. In A. hadrus , A. caccea and C. catus, A. hallii, the conversion of lactate and acetate to butyrate may occur through the combined action of Ldh/ETF/Bcd and butyrate-acetate CoA-transferase (denoted by 1) and in F. nucleatum , the release of butyrate is dependent on butyrate-acetoacetate CoA-transferase (denoted by 2). In F. nucleatum , butyryl-CoA oxygen oxidoreductase (denoted by 3) can oxidize butyryl-CoA to crotonyl-CoA transferring reducing equivalents to a diiron center for reduction of O 2 to H 2 O. Bcd, butyryl-CoA dehydrogenase; ETF, electron transfer flavoprotein; Ldh, lactate dehydro genase.

    Article Snippet: Ldh ((S)-2-hydroxy-acid oxidase) from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: AAL93662.1 ; Bcd from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: ZP_02272040 ; EtfB from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: ZP_02272039 ; and EtfA from F. nucleatum subsp. polymorphum ATCC 10953 Genebank accession: ZP_02272038 .

    Techniques: Sequencing, Transferring

    Genetic organization of two sets of EtfAB genes in Fusobacterium nucleatum and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).

    Journal: The Journal of Biological Chemistry

    Article Title: Direct coupling of lactate oxidation with butyryl-CoA formation via a canonical electron transfer flavoprotein in Fusobacterium nucleatum

    doi: 10.1016/j.jbc.2025.110796

    Figure Lengend Snippet: Genetic organization of two sets of EtfAB genes in Fusobacterium nucleatum and the organization of lactate utilization loci observed in F. nucleatum and other lactate-utilizing bacteria. Butyryl-CoA dehydrogenase (Bcd), β- and α-subunits of electron transfer flavoprotein (EtfB and EftA), NAD + -independent D-lactate dehydrogenase (Ldh), lactate operon transcriptional regulator (regulator), lactate permease (L-perm), and lactate racemase (L-race).

    Article Snippet: The cDNA corresponding to the ETF FN (FN1533/34), Bcd FN (FN1535), and Ldh FN (FN1536) were amplified from the genomic DNA of F. nucleatum subsp. polymorphum ATCC 10953 using Q5 DNA polymerase.

    Techniques: Bacteria

    Canonical versus bifurcating ETF. A , based on sequence alignment, the ETF encoded in the lct gene cluster of Anaerobutyricum hallii may function as a confurcating ETF in complex with Ldh and a bifurcating ETF with Bcd. The overall reaction (lactate + crotonyl-CoA → pyruvate + butyryl-CoA) would lead to stoichiometric recycling of NAD/NADH and ferredoxin (Fd). B , in Fusobacterium nucleatum , ETF functions as a canonical ETF transferring two electrons from Ldh to Bcd. In A. hadrus , A. caccea and C. catus, A. hallii, the conversion of lactate and acetate to butyrate may occur through the combined action of Ldh/ETF/Bcd and butyrate-acetate CoA-transferase (denoted by 1) and in F. nucleatum , the release of butyrate is dependent on butyrate-acetoacetate CoA-transferase (denoted by 2). In F. nucleatum , butyryl-CoA oxygen oxidoreductase (denoted by 3) can oxidize butyryl-CoA to crotonyl-CoA transferring reducing equivalents to a diiron center for reduction of O 2 to H 2 O. Bcd, butyryl-CoA dehydrogenase; ETF, electron transfer flavoprotein; Ldh, lactate dehydro genase.

    Journal: The Journal of Biological Chemistry

    Article Title: Direct coupling of lactate oxidation with butyryl-CoA formation via a canonical electron transfer flavoprotein in Fusobacterium nucleatum

    doi: 10.1016/j.jbc.2025.110796

    Figure Lengend Snippet: Canonical versus bifurcating ETF. A , based on sequence alignment, the ETF encoded in the lct gene cluster of Anaerobutyricum hallii may function as a confurcating ETF in complex with Ldh and a bifurcating ETF with Bcd. The overall reaction (lactate + crotonyl-CoA → pyruvate + butyryl-CoA) would lead to stoichiometric recycling of NAD/NADH and ferredoxin (Fd). B , in Fusobacterium nucleatum , ETF functions as a canonical ETF transferring two electrons from Ldh to Bcd. In A. hadrus , A. caccea and C. catus, A. hallii, the conversion of lactate and acetate to butyrate may occur through the combined action of Ldh/ETF/Bcd and butyrate-acetate CoA-transferase (denoted by 1) and in F. nucleatum , the release of butyrate is dependent on butyrate-acetoacetate CoA-transferase (denoted by 2). In F. nucleatum , butyryl-CoA oxygen oxidoreductase (denoted by 3) can oxidize butyryl-CoA to crotonyl-CoA transferring reducing equivalents to a diiron center for reduction of O 2 to H 2 O. Bcd, butyryl-CoA dehydrogenase; ETF, electron transfer flavoprotein; Ldh, lactate dehydro genase.

    Article Snippet: The cDNA corresponding to the ETF FN (FN1533/34), Bcd FN (FN1535), and Ldh FN (FN1536) were amplified from the genomic DNA of F. nucleatum subsp. polymorphum ATCC 10953 using Q5 DNA polymerase.

    Techniques: Sequencing, Transferring