METHOD OF IDENTIFYING ENERGY TRANSFER SENSORS FOR ANALYTES

    公开(公告)号:CA2462617A1

    公开(公告)日:2003-05-15

    申请号:CA2462617

    申请日:2002-11-07

    Inventor: DAVID WOLF E

    Abstract: A method of identifying an analyte-ligand binding pair that exhibits non- radiative fluorescence resonance energy transfer (FRET) using a combinatoria l library. The method includes a) obtaining an analyte binding ligand from a combinatorial library that includes ligands, and b) attaching a label at lea st one of the analyte binding ligand and an analyte~analogue with at least one of a first component and a second component of a non-radiative fluorescence resonance energy transfer donor-acceptor pair (FRET pair) such that FRET occurs when the analyte-analogue is bound to the analyte binding ligand, and a change in FRET occurs when the analyte-analogue is not bound to the analyte binding ligand. The method also includes contacting a combinatorial library of ligands, which are optionally labeled with a component of a FRET pair, with analyte-analogue, which is optionally labeled with a component of a FRET pai r, and detecting the presence of FRET.

    METHOD OF IDENTIFYING ENERGY TRANSFER SENSORS FOR ANALYTES
    3.
    发明公开
    METHOD OF IDENTIFYING ENERGY TRANSFER SENSORS FOR ANALYTES 审中-公开
    法能量传递的分析物传感器识别

    公开(公告)号:EP1461617A4

    公开(公告)日:2005-09-14

    申请号:EP02802889

    申请日:2002-11-07

    Inventor: DAVID WOLF E

    CPC classification number: G01N33/542

    Abstract: A method of identifying an analyte-ligand binding pair that exhibits non-radiative fluorescence resonance energy transfer FRET using a combinatorial library. The method includes a obtaining an analyte binding ligand from a combinatorial library that includes ligands, and b attaching a label at least one of the analyte binding ligand and an analyte­analogue with at least one of a first component and a second component of a non-radiative fluorescence resonance energy transfer donor-acceptor pair FRET pair such that FRET occurs when the analyte-analogue is bound to the analyte binding ligand, and a change in FRET occurs when the analyte-analogue is not bound to the analyte binding ligand. The method also includes contacting a combinatorial library of ligands, which are optionally labeled with a component of a FRET pair, with analyte-analogue, which is optionally labeled with a component of a FRET pair, and detecting the presence of FRET.

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