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single-molecule fluorescence detection system, mf20  (Evident Corporation)

 
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    Structured Review

    Evident Corporation single-molecule fluorescence detection system, mf20
    Single Molecule Fluorescence Detection System, Mf20, supplied by Evident Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/single+molecule+fluorescence+detection+system+mf20/mf20/pmc03790820-57-10-11
    Average 90 stars, based on 1 article reviews
    single-molecule fluorescence detection system, mf20 - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Fluorescence:

    Article Title: Structural basis of the 3?-end recognition of a leading strand in stalled replication forks by PriA
    Article Snippet: Figures were prepared using PyMOL ( http://pymol.sourceforge.net/ ). .. Fluorescence correlation spectroscopy PriA binding of TAMRA-labeled oligonucleotides was analyzed using the single molecule fluorescence detection system MF20 (Olympus, Japan). ..

    Spectroscopy:

    Article Title: Structural basis of the 3?-end recognition of a leading strand in stalled replication forks by PriA
    Article Snippet: Figures were prepared using PyMOL ( http://pymol.sourceforge.net/ ). .. Fluorescence correlation spectroscopy PriA binding of TAMRA-labeled oligonucleotides was analyzed using the single molecule fluorescence detection system MF20 (Olympus, Japan). ..

    Binding Assay:

    Article Title: Structural basis of the 3?-end recognition of a leading strand in stalled replication forks by PriA
    Article Snippet: Figures were prepared using PyMOL ( http://pymol.sourceforge.net/ ). .. Fluorescence correlation spectroscopy PriA binding of TAMRA-labeled oligonucleotides was analyzed using the single molecule fluorescence detection system MF20 (Olympus, Japan). ..



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    Evident Corporation a fluorescence correlation spectrometer unit in the mf20 single-molecule fluorescence detection system
    Schematic of the FCS method to assess dynamic protein-protein interactions in the Kai oscillatory system. a, cyclic Kai complex formation in the cyanobacterial circadian system composed of KaiA, KaiB, and KaiC. During the phosphorylation phase, the KaiC complex includes only KaiA, whereas, during the dephosphorylation phase, the KaiC complex includes both KaiA and KaiB. b, a fluorescence correlation spectrometer unit in the <t>MF20</t> single-molecule fluorescence detection system (Olympus). A 543 nm He-Ne laser is directed through an objective lens and used to excite a fluorescently labeled protein. Fluorescence from a small focal volume (∼1 fl) is detected through a pinhole, and the signal is processed using a digital correlator. c, a schematic diagram of the fluorescence correlation change associated with binding of a labeled protein. Fluctuations in the fluorescent signal are analyzed via an autocorrelation function, and the diffusion time is calculated. The correlation curve shows a rightward shift as the labeled molecule becomes larger, and the diffusion time of the bound form of a fluorescently labeled protein (XY) is longer than that of the free form (X).
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    Evident Corporation mf20 single molecule fluorescence detection system
    Schematic of the FCS method to assess dynamic protein-protein interactions in the Kai oscillatory system. a, cyclic Kai complex formation in the cyanobacterial circadian system composed of KaiA, KaiB, and KaiC. During the phosphorylation phase, the KaiC complex includes only KaiA, whereas, during the dephosphorylation phase, the KaiC complex includes both KaiA and KaiB. b, a fluorescence correlation spectrometer unit in the <t>MF20</t> single-molecule fluorescence detection system (Olympus). A 543 nm He-Ne laser is directed through an objective lens and used to excite a fluorescently labeled protein. Fluorescence from a small focal volume (∼1 fl) is detected through a pinhole, and the signal is processed using a digital correlator. c, a schematic diagram of the fluorescence correlation change associated with binding of a labeled protein. Fluctuations in the fluorescent signal are analyzed via an autocorrelation function, and the diffusion time is calculated. The correlation curve shows a rightward shift as the labeled molecule becomes larger, and the diffusion time of the bound form of a fluorescently labeled protein (XY) is longer than that of the free form (X).
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    Schematic of the FCS method to assess dynamic protein-protein interactions in the Kai oscillatory system. a, cyclic Kai complex formation in the cyanobacterial circadian system composed of KaiA, KaiB, and KaiC. During the phosphorylation phase, the KaiC complex includes only KaiA, whereas, during the dephosphorylation phase, the KaiC complex includes both KaiA and KaiB. b, a fluorescence correlation spectrometer unit in the MF20 single-molecule fluorescence detection system (Olympus). A 543 nm He-Ne laser is directed through an objective lens and used to excite a fluorescently labeled protein. Fluorescence from a small focal volume (∼1 fl) is detected through a pinhole, and the signal is processed using a digital correlator. c, a schematic diagram of the fluorescence correlation change associated with binding of a labeled protein. Fluctuations in the fluorescent signal are analyzed via an autocorrelation function, and the diffusion time is calculated. The correlation curve shows a rightward shift as the labeled molecule becomes larger, and the diffusion time of the bound form of a fluorescently labeled protein (XY) is longer than that of the free form (X).

    Journal: The Journal of Biological Chemistry

    Article Title: Fluorescence Correlation Spectroscopy to Monitor Kai Protein-based Circadian Oscillations in Real Time *

    doi: 10.1074/jbc.M111.265777

    Figure Lengend Snippet: Schematic of the FCS method to assess dynamic protein-protein interactions in the Kai oscillatory system. a, cyclic Kai complex formation in the cyanobacterial circadian system composed of KaiA, KaiB, and KaiC. During the phosphorylation phase, the KaiC complex includes only KaiA, whereas, during the dephosphorylation phase, the KaiC complex includes both KaiA and KaiB. b, a fluorescence correlation spectrometer unit in the MF20 single-molecule fluorescence detection system (Olympus). A 543 nm He-Ne laser is directed through an objective lens and used to excite a fluorescently labeled protein. Fluorescence from a small focal volume (∼1 fl) is detected through a pinhole, and the signal is processed using a digital correlator. c, a schematic diagram of the fluorescence correlation change associated with binding of a labeled protein. Fluctuations in the fluorescent signal are analyzed via an autocorrelation function, and the diffusion time is calculated. The correlation curve shows a rightward shift as the labeled molecule becomes larger, and the diffusion time of the bound form of a fluorescently labeled protein (XY) is longer than that of the free form (X).

    Article Snippet: During the phosphorylation phase, the KaiC complex includes only KaiA, whereas, during the dephosphorylation phase, the KaiC complex includes both KaiA and KaiB. b , a fluorescence correlation spectrometer unit in the MF20 single-molecule fluorescence detection system (Olympus).

    Techniques: De-Phosphorylation Assay, Fluorescence, Labeling, Binding Assay, Diffusion-based Assay