Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, 100190 Beijing, China.
Centre for Systems Chemistry, Stratingh Institute, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
J Am Chem Soc. 2023 Feb 8;145(5):2822-2829. doi: 10.1021/jacs.2c09325. Epub 2023 Jan 27.
Dynamic foldamers are synthetic folded molecules which can change their conformation in response to an external stimulus and are currently at the forefront of foldamer chemistry. However, constitutionally dynamic foldamers, which can change not only their conformation but also their molecular constitution in response to their environment, are without precedent. We now report a size- and shape-switching small dynamic covalent foldamer network which responds to changes in pH. Specifically, acidic conditions direct the oligomerization of a dipeptide-based building block into a 16-subunit macrocycle with well-defined conformation and with high selectivity. At higher pH the same building block yields another cyclic foldamer with a smaller ring size (9mer). The two foldamers readily and repeatedly interconvert upon adjustment of the pH of the solution. We have previously shown that addition of a template can direct oligomerization of the same building block to yet other rings sizes (including a 12mer and a 13mer, accompanied by a minor amount of 14mer). This brings the total number of discrete foldamers that can be accessed from a single building block to five. For a single building block system to exhibit such highly diverse structure space is unique and sets this system of foldamers apart from proteins. Furthermore, the emergence of constitutional dynamicity opens up new avenues to foldamers with adaptive behavior.
动态折叠物是一种人工合成的折叠分子,能够对外界刺激做出构象变化,目前处于折叠物化学的前沿。然而,能够响应环境改变分子结构的结构动态折叠物是前所未有的。我们现在报道了一种大小和形状可切换的小分子动态共价折叠物网络,它可以响应 pH 值的变化。具体来说,酸性条件促使基于二肽的构建块聚合为具有明确构象和高选择性的 16 个单元大环。在较高的 pH 值下,相同的构建块生成另一种具有较小环大小(9 个单元)的环状折叠物。两种折叠物在溶液 pH 值调整时可以快速且反复地相互转换。我们之前已经表明,添加模板可以指导相同构建块的聚合,形成其他环大小(包括 12 个单元和 13 个单元,还有少量 14 个单元)。这使得可以从单个构建块获得的离散折叠物的总数达到五个。对于一个单一的构建块系统,具有如此多样的结构空间是独特的,这使该折叠物系统与蛋白质区分开来。此外,结构动态性的出现为具有自适应行为的折叠物开辟了新途径。