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Homogeneous Assay for Target Engagement UtilizingBioluminescent Thermal Shift

机译:目标参与的均相分析生物发光热位移

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摘要

Protein thermal shift assays (TSAs) provide a means for characterizing target engagement through ligand-induced thermal stabilization. Although these assays are widely utilized for screening libraries and validating hits in drug discovery programs, they can impose encumbering operational requirements, such as the availability of purified proteins or selective antibodies. Appending the target protein with a small luciferase (NanoLuc) allows coupling of thermal denaturation with luminescent output, providing a rapid and sensitive means for assessing target engagement in compositionally complex environments such as permeabilized cells. The intrinsic thermal stability of NanoLuc is greater than mammalian proteins, and our results indicate that the appended luciferase does not alter thermal denaturation of the target protein. We have successfully applied the NanoLuc luciferase thermal shift assay (NaLTSA) to several clinically relevant protein families, including kinases, bromodomains, and histone deacetylases. We have also demonstrated the suitability of this assay method for library screening and compound profiling.
机译:蛋白质热位移测定(TSA)提供了一种通过配体诱导的热稳定性表征靶标结合的方法。尽管这些测定法已广泛用于筛选库和验证药物发现程序中的命中数据,但它们可能会带来繁琐的操作要求,例如纯化蛋白或选择性抗体的可用性。用小的萤光素酶(NanoLuc)附加靶蛋白可以使热变性与发光输出耦合,从而提供了一种快速而灵敏的方法来评估靶标在组成复杂的环境(例如通透细胞)中的参与。 NanoLuc的固有热稳定性大于哺乳动物蛋白,我们的结果表明,附加的萤光素酶不会改变目标蛋白的热变性。我们已经成功地将NanoLuc荧光素酶热移测定(NaLTSA)应用于几种临床相关的蛋白家族,包括激酶,溴结构域和组蛋白脱乙酰基酶。我们还证明了该测定方法适用于文库筛选和化合物谱分析。

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