首页> 外国专利> Reagentless fluorescent biosensors comprising a designed ankyrin repeat protein module, rational design methods to create reagentless fluorescent biosensors and methods of their use

Reagentless fluorescent biosensors comprising a designed ankyrin repeat protein module, rational design methods to create reagentless fluorescent biosensors and methods of their use

机译:包含设计的锚蛋白重复蛋白模块的无试剂荧光生物传感器,创建无试剂荧光生物传感器的合理设计方法及其使用方法

摘要

The present invention relates to reagentless fluorescent biosensors which comprise at least one ankyrin repeat and a fluorophore and are specific for at least one target; the method for preparing such reagentless fluorescent biosensors comprises the following steps: (a) identifying the residues (R1) of the paratope of the biosensor by mutagenesis of all, or of a subset, of the residues of the biosensor, and determining variations in at least one measurable chemical or physical parameter of interaction with said at least one target; wherein said variations are due to each mutation or to groups of mutations; (b) selecting the cysteine residues, or the residues to be mutated to cysteine, from the residues (R2) of the biosensor which are located adjacent to the residues of the paratope; (c) mutating by site-directed mutagenesis at least one of the residues (R2) selected in (b) to a cysteine residue when said residue is not naturally a cysteine residue; and (d) coupling the Sγ atom of at least one cystein residue (R2) obtained in (b) or in (c) to a fluorophore.
机译:无试剂的荧光生物传感器技术领域本发明涉及无试剂的荧光生物传感器,其包含至少一个锚蛋白重复序列​​和荧光团,并且对至少一个靶标具有特异性。制备这种无试剂荧光生物传感器的方法包括以下步骤:(a)通过诱变所有或部分亚生物残基来鉴定生物传感器对位的残基(R 1 )。生物传感器,并确定与所述至少一个靶相互作用的至少一种可测量的化学或物理参数的变化;其中所述变化是由于每个突变或突变组引起的; (b)从生物传感器的与互补位残基相邻的残基(R 2 )中选择半胱氨酸残基或突变为半胱氨酸的残基; (c)通过定点诱变将(b)中选择的至少一个残基(R 2 )中的至少一个突变为半胱氨酸残基,当所述残基不是天然的半胱氨酸残基时; (d)将(b)或(c)中获得的至少一个半胱氨酸残基(R 2 )的Sγ原子与荧光团偶联。

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