Department of Bionano Engineering, Center for Bionano Intelligence Education and Research, Hanyang University, Ansan, 155-88, South Korea.
School of Computational Sciences, Korea Institute for Advanced Study, Seoul, 024-55, South Korea.
Chemistry. 2022 Apr 12;28(21):e202200116. doi: 10.1002/chem.202200116. Epub 2022 Mar 15.
Membrane proteins are of biological and pharmaceutical significance. However, their structural study is extremely challenging mainly due to the fact that only a small number of chemical tools are suitable for stabilizing membrane proteins in solution. Detergents are widely used in membrane protein study, but conventional detergents are generally poor at stabilizing challenging membrane proteins such as G protein-coupled receptors and protein complexes. In the current study, we prepared tandem triazine-based maltosides (TZMs) with two amphiphilic triazine units connected by different diamine linkers, hydrazine (TZM-Hs) and 1,2-ethylenediamine (TZM-Es). These TZMs were consistently superior to a gold standard detergent (DDM) in terms of stabilizing a few membrane proteins. In addition, the TZM-Es containing a long linker showed more general protein stabilization efficacy with multiple membrane proteins than the TZM-Hs containing a short linker. This result indicates that introduction of the flexible1,2-ethylenediamine linker between two rigid triazine rings enables the TZM-Es to fold into favourable conformations in order to promote membrane protein stability. The novel concept of detergent foldability introduced in the current study has potential in rational detergent design and membrane protein applications.
膜蛋白具有生物学和药学意义。然而,由于只有少数化学工具适合于稳定溶液中的膜蛋白,因此对其结构的研究极具挑战性。去污剂广泛用于膜蛋白研究,但传统的去污剂通常难以稳定具有挑战性的膜蛋白,如 G 蛋白偶联受体和蛋白质复合物。在本研究中,我们制备了串联三嗪基麦芽糖醇(TZMs),它们由两个通过不同二胺连接体连接的两亲性三嗪单元组成,分别为肼(TZM-Hs)和 1,2-乙二胺(TZM-Es)。这些 TZMs 在稳定几种膜蛋白方面均优于金标准去污剂(DDM)。此外,与含有短连接体的 TZM-Hs 相比,含有长连接体的 TZM-Es 对多种膜蛋白具有更通用的蛋白稳定效果。该结果表明,在两个刚性三嗪环之间引入柔性 1,2-乙二胺连接体能够使 TZM-Es 折叠成有利的构象,从而促进膜蛋白的稳定性。本研究中引入的去污剂折叠性新概念在合理的去污剂设计和膜蛋白应用方面具有潜力。