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nucleobond bac 100 kit  (MACHEREY NAGEL)


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    Structured Review

    MACHEREY NAGEL nucleobond bac 100 kit
    Nucleobond Bac 100 Kit, supplied by MACHEREY NAGEL, used in various techniques. Bioz Stars score: 94/100, based on 185 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/plasmid+constructs/NucleoBond+BAC+100+kit+for+large+construct+plasmid+DNA/pmc03433578-90-8-12
    Average 94 stars, based on 185 article reviews
    nucleobond bac 100 kit - by Bioz Stars, 2026-09
    94/100 stars

    Images

    Related Articles

    BAC Assay:

    Article Title: A murine cytomegalovirus cell cycle regulator (m54.5p) evolved within the conserved viral DNA polymerase gene.
    Article Snippet: .. MCMV BAC DNA was purified using the NucleoBond BAC 100 kit (Macherey-Nagel #740579), followed by transfection into NIH-3T3 or m54.5p-V5-3T3 cells using the TransIT-X2 system (Mirus). .. A 6XHis-tagged m54.5 ORF was cloned into the IPTG-inducible pET22b (+) vector (Novagen) via In-fusion cloning (Takara Bio In-fusion HD Cloning Plus kit).

    Article Title: Inhibition of type I interferon signaling is a conserved function of gamma-herpesvirus-encoded microRNAs
    Article Snippet: .. To confirm intact BACs, rLCV BAC DNAs were isolated from Escherichia coli using the NucleoBond BAC 100 kit (Macherey-Nagel), digested with restriction enzymes, and the correct banding patterns were confirmed by gel electrophoresis. ..

    Article Title: Intrachromosomal insertion as a diagnostic challenge: a hidden structural rearrangement causing recurrent duplication and deletion.
    Article Snippet: .. BAC DNA was extracted using the NucleoBond BAC 100 Kit (Macherey-Nagel, Düren, Germany) and labeled by nick translation using either SpectrumGreen-dUTP or SpectrumRed-dUTP (Abbott Molecular, Des Plaines, IL). ..

    Article Title: Systematic evaluation of HSV-1 Δ34.5Δ47 as a dual-function platform for attenuated HSV-1 vaccine and heterologous antigen delivery
    Article Snippet: .. The BAC plasmid was extracted using the NucleoBond BAC 100 kit (Macherey-Nagel, Düren, Germany). ..

    Article Title: Intrachromosomal insertion as a diagnostic challenge: a hidden structural rearrangement causing recurrent duplication and deletion
    Article Snippet: .. BAC DNA was extracted using the NucleoBond BAC 100 Kit (Macherey-Nagel, Düren, Germany) and labeled by nick translation using either SpectrumGreen-dUTP or SpectrumRed-dUTP (Abbott Molecular, Des Plaines, IL). ..

    Article Title: Inhibition of type I interferon signaling is a conserved function of gamma-herpesvirus-encoded microRNAs.
    Article Snippet: .. To confirm intact BACs, rLCV BAC DNAs were isolated from Escherichia coli using the NucleoBond BAC 100 kit (Macherey-Nagel), digested with restriction enzymes, and the correct banding patterns were confirmed by gel electrophoresis. ..

    Article Title: Workflow for Crystallographic Fragment Screening by Crystal Soaking for Protein Targets: A Case Study on Thioredoxin Glutathione Reductase From Schistosoma mansoni
    Article Snippet: NEBufferTM 3 (New England Biolabs, catalog number: B7003S) 38. .. Nucleobond BAC 100 Kit (Macherey-Nagel, catalog number: 740579) 39. .. PEG 2000 (Sigma-Aldrich, catalog number: 8.14172) 40.

    Purification:

    Article Title: A murine cytomegalovirus cell cycle regulator (m54.5p) evolved within the conserved viral DNA polymerase gene.
    Article Snippet: .. MCMV BAC DNA was purified using the NucleoBond BAC 100 kit (Macherey-Nagel #740579), followed by transfection into NIH-3T3 or m54.5p-V5-3T3 cells using the TransIT-X2 system (Mirus). .. A 6XHis-tagged m54.5 ORF was cloned into the IPTG-inducible pET22b (+) vector (Novagen) via In-fusion cloning (Takara Bio In-fusion HD Cloning Plus kit).

    Transfection:

    Article Title: A murine cytomegalovirus cell cycle regulator (m54.5p) evolved within the conserved viral DNA polymerase gene.
    Article Snippet: .. MCMV BAC DNA was purified using the NucleoBond BAC 100 kit (Macherey-Nagel #740579), followed by transfection into NIH-3T3 or m54.5p-V5-3T3 cells using the TransIT-X2 system (Mirus). .. A 6XHis-tagged m54.5 ORF was cloned into the IPTG-inducible pET22b (+) vector (Novagen) via In-fusion cloning (Takara Bio In-fusion HD Cloning Plus kit).

    Isolation:

    Article Title: Inhibition of type I interferon signaling is a conserved function of gamma-herpesvirus-encoded microRNAs
    Article Snippet: .. To confirm intact BACs, rLCV BAC DNAs were isolated from Escherichia coli using the NucleoBond BAC 100 kit (Macherey-Nagel), digested with restriction enzymes, and the correct banding patterns were confirmed by gel electrophoresis. ..

    Article Title: Inhibition of type I interferon signaling is a conserved function of gamma-herpesvirus-encoded microRNAs.
    Article Snippet: .. To confirm intact BACs, rLCV BAC DNAs were isolated from Escherichia coli using the NucleoBond BAC 100 kit (Macherey-Nagel), digested with restriction enzymes, and the correct banding patterns were confirmed by gel electrophoresis. ..

    Nucleic Acid Electrophoresis:

    Article Title: Inhibition of type I interferon signaling is a conserved function of gamma-herpesvirus-encoded microRNAs
    Article Snippet: .. To confirm intact BACs, rLCV BAC DNAs were isolated from Escherichia coli using the NucleoBond BAC 100 kit (Macherey-Nagel), digested with restriction enzymes, and the correct banding patterns were confirmed by gel electrophoresis. ..

    Article Title: Inhibition of type I interferon signaling is a conserved function of gamma-herpesvirus-encoded microRNAs.
    Article Snippet: .. To confirm intact BACs, rLCV BAC DNAs were isolated from Escherichia coli using the NucleoBond BAC 100 kit (Macherey-Nagel), digested with restriction enzymes, and the correct banding patterns were confirmed by gel electrophoresis. ..

    Labeling:

    Article Title: Intrachromosomal insertion as a diagnostic challenge: a hidden structural rearrangement causing recurrent duplication and deletion.
    Article Snippet: .. BAC DNA was extracted using the NucleoBond BAC 100 Kit (Macherey-Nagel, Düren, Germany) and labeled by nick translation using either SpectrumGreen-dUTP or SpectrumRed-dUTP (Abbott Molecular, Des Plaines, IL). ..

    Article Title: Intrachromosomal insertion as a diagnostic challenge: a hidden structural rearrangement causing recurrent duplication and deletion
    Article Snippet: .. BAC DNA was extracted using the NucleoBond BAC 100 Kit (Macherey-Nagel, Düren, Germany) and labeled by nick translation using either SpectrumGreen-dUTP or SpectrumRed-dUTP (Abbott Molecular, Des Plaines, IL). ..

    Nick Translation:

    Article Title: Intrachromosomal insertion as a diagnostic challenge: a hidden structural rearrangement causing recurrent duplication and deletion.
    Article Snippet: .. BAC DNA was extracted using the NucleoBond BAC 100 Kit (Macherey-Nagel, Düren, Germany) and labeled by nick translation using either SpectrumGreen-dUTP or SpectrumRed-dUTP (Abbott Molecular, Des Plaines, IL). ..

    Article Title: Intrachromosomal insertion as a diagnostic challenge: a hidden structural rearrangement causing recurrent duplication and deletion
    Article Snippet: .. BAC DNA was extracted using the NucleoBond BAC 100 Kit (Macherey-Nagel, Düren, Germany) and labeled by nick translation using either SpectrumGreen-dUTP or SpectrumRed-dUTP (Abbott Molecular, Des Plaines, IL). ..

    Plasmid Preparation:

    Article Title: Systematic evaluation of HSV-1 Δ34.5Δ47 as a dual-function platform for attenuated HSV-1 vaccine and heterologous antigen delivery
    Article Snippet: .. The BAC plasmid was extracted using the NucleoBond BAC 100 kit (Macherey-Nagel, Düren, Germany). ..

    other:

    Article Title: A structure-selective endonuclease drives uniparental mitochondrial DNA inheritance
    Article Snippet: Hotaru ΔMTS::His10::TwinStrepII and Hotaru Y88F::His10::TwinStrepII were generated from Hotaru::His10::TwinStrepII by amplifying the region excluding the coding sequence for amino acids 2-41 or introducing a point mutation, respectively, and performing a single-piece Gibson reaction (NEB, E2621L).



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    KIF23 and myosin heavy chain 9 (MYH9) interact with ubiquitin‐specific protease 7 <t>(USP7).</t> (A) Molecular docking results for KIF23 and MYH9. (B) Co‐immunoprecipitation (Co‐IP) analysis to detect the interaction between KIF23 and MYH9 in CC cells. (C) Immunofluorescence (IF) analysis showing the co‐localisation of KIF23 and MYH9 in CC cells (scale bar: 10 µm). (D) Reverse transcription‐quantitative polymerase chain reaction (RT‐qPCR) analysis of MYH9 mRNA levels in CC cells with or without KIF23 KO. (E) Western blotting (WB) analysis of MYH9 protein levels in CC cells with or without KIF23 KO. (F) Nuclear and cytoplasmic fractionation assay to detect MYH9 protein levels in overexpression KIF23 (oe‐ KIF23 ) CC cells. (G) Schematic diagram of the functional domains of KIF23. (H) Co‐IP assay demonstrating the interaction between different KIF23 domains and MYH9 in HEK‐293T cells transfected with the corresponding constructs. (I) Schematic diagram of the functional domains of MYH9. (J) Co‐IP assay demonstrating the interaction between different MYH9 domains and KIF23 in HEK‐293T cells. (K and L) Molecular docking diagrams of MYH9 with USP7 and KIF23 with USP7. (M) Co‐IP analysis in CC cells demonstrating the interactions of MYH9 and KIF23 with USP7. (N and O) Representative confocal images showing the co‐localisation of MYH9 with USP7 and KIF23 with USP7 (scale bar: 10 µm).
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    Image Search Results


    KIF23 and myosin heavy chain 9 (MYH9) interact with ubiquitin‐specific protease 7 (USP7). (A) Molecular docking results for KIF23 and MYH9. (B) Co‐immunoprecipitation (Co‐IP) analysis to detect the interaction between KIF23 and MYH9 in CC cells. (C) Immunofluorescence (IF) analysis showing the co‐localisation of KIF23 and MYH9 in CC cells (scale bar: 10 µm). (D) Reverse transcription‐quantitative polymerase chain reaction (RT‐qPCR) analysis of MYH9 mRNA levels in CC cells with or without KIF23 KO. (E) Western blotting (WB) analysis of MYH9 protein levels in CC cells with or without KIF23 KO. (F) Nuclear and cytoplasmic fractionation assay to detect MYH9 protein levels in overexpression KIF23 (oe‐ KIF23 ) CC cells. (G) Schematic diagram of the functional domains of KIF23. (H) Co‐IP assay demonstrating the interaction between different KIF23 domains and MYH9 in HEK‐293T cells transfected with the corresponding constructs. (I) Schematic diagram of the functional domains of MYH9. (J) Co‐IP assay demonstrating the interaction between different MYH9 domains and KIF23 in HEK‐293T cells. (K and L) Molecular docking diagrams of MYH9 with USP7 and KIF23 with USP7. (M) Co‐IP analysis in CC cells demonstrating the interactions of MYH9 and KIF23 with USP7. (N and O) Representative confocal images showing the co‐localisation of MYH9 with USP7 and KIF23 with USP7 (scale bar: 10 µm).

    Journal: Clinical and Translational Medicine

    Article Title: Targeting KIF23 inhibits cell proliferation and primary chemoresistance in cervical cancer by inactivating the MYH9/MCM2/PCNA pathway

    doi: 10.1002/ctm2.70652

    Figure Lengend Snippet: KIF23 and myosin heavy chain 9 (MYH9) interact with ubiquitin‐specific protease 7 (USP7). (A) Molecular docking results for KIF23 and MYH9. (B) Co‐immunoprecipitation (Co‐IP) analysis to detect the interaction between KIF23 and MYH9 in CC cells. (C) Immunofluorescence (IF) analysis showing the co‐localisation of KIF23 and MYH9 in CC cells (scale bar: 10 µm). (D) Reverse transcription‐quantitative polymerase chain reaction (RT‐qPCR) analysis of MYH9 mRNA levels in CC cells with or without KIF23 KO. (E) Western blotting (WB) analysis of MYH9 protein levels in CC cells with or without KIF23 KO. (F) Nuclear and cytoplasmic fractionation assay to detect MYH9 protein levels in overexpression KIF23 (oe‐ KIF23 ) CC cells. (G) Schematic diagram of the functional domains of KIF23. (H) Co‐IP assay demonstrating the interaction between different KIF23 domains and MYH9 in HEK‐293T cells transfected with the corresponding constructs. (I) Schematic diagram of the functional domains of MYH9. (J) Co‐IP assay demonstrating the interaction between different MYH9 domains and KIF23 in HEK‐293T cells. (K and L) Molecular docking diagrams of MYH9 with USP7 and KIF23 with USP7. (M) Co‐IP analysis in CC cells demonstrating the interactions of MYH9 and KIF23 with USP7. (N and O) Representative confocal images showing the co‐localisation of MYH9 with USP7 and KIF23 with USP7 (scale bar: 10 µm).

    Article Snippet: CC cells were transfected with plasmid constructs encoding USP7 (Miaoling Biology), MYH9 (Vigene Biosciences), MCM2 (Miaoling Biology) and USP15 (Miaoling Biology) using Lipofectamine 3000 (model L2000‐015; Invitrogen) as per the manufacturer's protocols.

    Techniques: Ubiquitin Proteomics, Immunoprecipitation, Co-Immunoprecipitation Assay, Immunofluorescence, Reverse Transcription, Real-time Polymerase Chain Reaction, Quantitative RT-PCR, Western Blot, Fractionation, Over Expression, Functional Assay, Transfection, Construct

    KIF23 induces K48‐linked deubiquitination of MYH9 through recruitment of USP7. (A) Western blotting (WB) analysis of MYH9 protein stability at different time points following cycloheximide (CHX) treatment in control and KIF23 KO groups. (B) CHX chase assay examining the regulation of MYH9 protein stability by USP7 overexpression (oe‐ USP7 ). (C) Effect of MG132 treatment (12 h) on MYH9 protein stability in KIF23 KO CC cells and their controls. (D) Co‐IP and WB analyses of the effect of KIF23 KO on MYH9 ubiquitination levels after 12 h of MG132 treatment. (E) Co‐IP and WB assays assessing the effects of control, KIF23 KO and KIF23 KO combined with USP7 overexpression (KO‐ KIF23 + oe‐ USP7 ) on MYH9 ubiquitination after 12 h of MG132 treatment in SIHA (left) and C33A (right) cells.

    Journal: Clinical and Translational Medicine

    Article Title: Targeting KIF23 inhibits cell proliferation and primary chemoresistance in cervical cancer by inactivating the MYH9/MCM2/PCNA pathway

    doi: 10.1002/ctm2.70652

    Figure Lengend Snippet: KIF23 induces K48‐linked deubiquitination of MYH9 through recruitment of USP7. (A) Western blotting (WB) analysis of MYH9 protein stability at different time points following cycloheximide (CHX) treatment in control and KIF23 KO groups. (B) CHX chase assay examining the regulation of MYH9 protein stability by USP7 overexpression (oe‐ USP7 ). (C) Effect of MG132 treatment (12 h) on MYH9 protein stability in KIF23 KO CC cells and their controls. (D) Co‐IP and WB analyses of the effect of KIF23 KO on MYH9 ubiquitination levels after 12 h of MG132 treatment. (E) Co‐IP and WB assays assessing the effects of control, KIF23 KO and KIF23 KO combined with USP7 overexpression (KO‐ KIF23 + oe‐ USP7 ) on MYH9 ubiquitination after 12 h of MG132 treatment in SIHA (left) and C33A (right) cells.

    Article Snippet: CC cells were transfected with plasmid constructs encoding USP7 (Miaoling Biology), MYH9 (Vigene Biosciences), MCM2 (Miaoling Biology) and USP15 (Miaoling Biology) using Lipofectamine 3000 (model L2000‐015; Invitrogen) as per the manufacturer's protocols.

    Techniques: Western Blot, Control, Over Expression, Co-Immunoprecipitation Assay, Ubiquitin Proteomics