Wang Shuhe, Sigl Johannes, Allmendinger Lars, Maurizot Victor, Huc Ivan
Department Pharmazie, Ludwig-Maximilians-Universität München Butenandtstraße 5-13 Munich D-81377 Germany
Université de Bordeaux, CNRS, Bordeaux Institut National Polytechnique, CBMN (UMR 5248), Institut Européen de Chimie Biologie 2 Rue Escarpit Pessac 33600 France.
Chem Sci. 2024 Dec 4;16(3):1136-1146. doi: 10.1039/d4sc07336c. eCollection 2025 Jan 15.
Starting from the solid state structure of -symmetrical homochiral parallel trimolecular bundle of three aromatic helices held together by intermolecular hydrogen bonds, we have used simple rational principles and molecular modelling to design a similar heterochiral structure where one helix had an opposite orientation and handedness. A rigid and a flexible linker to connect these helices and transform the bundle into a unimolecular object were designed and synthesized. Model sequences with two helices and one linker were then prepared. Their conformations were investigated in solution by nuclear magnetic resonance and circular dichroism, in the solid state by X-ray crystallography, and by molecular dynamics simulations, overall supporting the initial design. A final 6.9 kDa unimolecular three-helix bundle was then prepared using a fragment condensation approach. Solution studies support the formation of the targetted tertiary fold in the case of the rigid linker, thereby validating the overall approach.
从由分子间氢键维系在一起的三个芳香族螺旋构成的对称同手性平行三分子束的固态结构出发,我们运用简单合理的原理和分子建模来设计一种类似的异手性结构,其中一个螺旋具有相反的取向和手性。设计并合成了用于连接这些螺旋并将束状结构转变为单分子物体的刚性和柔性连接体。接着制备了含有两个螺旋和一个连接体的模型序列。通过核磁共振和圆二色性在溶液中研究它们的构象,通过X射线晶体学在固态下研究,以及通过分子动力学模拟,总体上支持了初始设计。然后采用片段缩合方法制备了最终的6.9 kDa单分子三螺旋束。溶液研究支持在刚性连接体的情况下形成目标三级折叠,从而验证了整体方法。