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热迁移分析用于小 GTPase 稳定性筛选:评估和适用性。

Thermal Shift Assay for Small GTPase Stability Screening: Evaluation and Suitability.

机构信息

Department of Chemistry, University of Turku, Henrikinkatu 2, 20500 Turku, Finland.

Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.

出版信息

Int J Mol Sci. 2022 Jun 26;23(13):7095. doi: 10.3390/ijms23137095.

Abstract

Thermal unfolding methods are commonly used as a predictive technique by tracking the protein's physical properties. Inherent protein thermal stability and unfolding profiles of biotherapeutics can help to screen or study potential drugs and to find stabilizing or destabilizing conditions. Differential scanning calorimetry (DSC) is a 'Gold Standard' for thermal stability assays (TSA), but there are also a multitude of other methodologies, such as differential scanning fluorimetry (DSF). The use of an external probe increases the assay throughput, making it more suitable for screening studies, but the current methodologies suffer from relatively low sensitivity. While DSF is an effective tool for screening, interpretation and comparison of the results is often complicated. To overcome these challenges, we compared three thermal stability probes in small GTPase stability studies: SYPRO Orange, 8-anilino-1-naphthalenesulfonic acid (ANS), and the Protein-Probe. We studied mainly KRAS, as a proof of principle to obtain biochemical knowledge through TSA profiles. We showed that the Protein-Probe can work at lower concentration than the other dyes, and its sensitivity enables effective studies with non-covalent and covalent drugs at the nanomolar level. Using examples, we describe the parameters, which must be taken into account when characterizing the effect of drug candidates, of both small molecules and Designed Ankyrin Repeat Proteins.

摘要

热变性方法通常被用作一种预测技术,通过跟踪蛋白质的物理性质来实现。生物治疗药物的固有蛋白质热稳定性和变性曲线有助于筛选或研究潜在药物,并找到稳定或不稳定的条件。差示扫描量热法(DSC)是热稳定性分析(TSA)的“金标准”,但也有许多其他方法,如差示扫描荧光法(DSF)。使用外部探针可以提高测定的通量,使其更适合筛选研究,但目前的方法灵敏度相对较低。虽然 DSF 是筛选的有效工具,但结果的解释和比较往往很复杂。为了克服这些挑战,我们在小 GTPase 稳定性研究中比较了三种热稳定性探针:SYPRO Orange、8-苯胺-1-萘磺酸(ANS)和 Protein-Probe。我们主要研究 KRAS,作为通过 TSA 图谱获得生化知识的原理验证。我们表明,Protein-Probe 可以在比其他染料更低的浓度下工作,其灵敏度使其能够在纳摩尔水平上有效研究非共价和共价药物。我们通过实例描述了在表征小分子和设计的锚蛋白重复蛋白候选药物的作用时必须考虑的参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4fb/9266822/70ccc781f3b8/ijms-23-07095-g001.jpg

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