TU Dortmund University, Department of Chemistry and Chemical Biology, Otto-Hahn-Str. 6, 44227, Dortmund, Germany.
Kavli Institute for Nanoscience Discovery, South Parks Rd, OX1 3QU, Oxford, UK.
Chemistry. 2023 May 26;29(30):e202300159. doi: 10.1002/chem.202300159. Epub 2023 Apr 19.
Membrane protein purification by means of detergents is key to isolating membrane-bound therapeutic targets. The role of the detergent structure in this process, however, is not well understood. Detergents are optimized empirically, leading to failed preparations, and thereby raising costs. Here we evaluate the utility of the hydrophilic-lipophilic balance (HLB) concept, which was introduced by Griffin in 1949, for guiding the optimization of the hydrophobic tail in first-generation, dendritic oligoglycerol detergents ([G1] OGDs). Our findings deliver qualitative HLB guidelines for rationalizing the optimization of detergents. Moreover, [G1] OGDs exhibit strongly delipidating properties, regardless of the structure of the hydrophobic tail, which delivers a methodological enabling step for investigating binding strengths of endogenous lipids and their role for membrane protein oligomerization. Our findings will facilitate the analysis of challenging drug targets in the future.
通过去污剂进行膜蛋白纯化是分离膜结合治疗靶标的关键。然而,去污剂结构在这个过程中的作用还不是很清楚。去污剂是通过经验优化的,这导致了制备的失败,从而增加了成本。在这里,我们评估了亲水亲油平衡(HLB)概念的实用性,该概念由 Griffin 于 1949 年提出,用于指导第一代树枝状寡甘油去污剂([G1]OGD)中疏水尾的优化。我们的发现为合理优化去污剂提供了定性 HLB 指南。此外,[G1]OGD 表现出很强的去脂性质,而不管疏水尾的结构如何,这为研究内源性脂质的结合强度及其在膜蛋白寡聚化中的作用提供了一种方法学上的使能步骤。我们的发现将有助于未来分析具有挑战性的药物靶标。