Department of Biomedical Engineering, University of Utah, Salt Lake City, Utah 84112, United States.
J Am Chem Soc. 2021 Aug 4;143(30):11482-11489. doi: 10.1021/jacs.1c03338. Epub 2021 Jul 20.
Polyproline (PP) based polypeptides have broad applications as protein mimics, ordered materials, hydrogels, and surface coatings. However, a lack of rapid and efficient preparatory methods has challenged synthesis of well-defined high molecular weight materials. Here, we report facile and high-yielding methods for preparation and polymerization of Pro and -4-acetoxy-Pro -carboxyanhdrides (NCAs). For decades, transition metal initiators of NCA polymerization were assumed to be nonstarters with Pro due to the lack of an amide NH proton. We carefully considered the known steps in the initiation mechanism and applied a Ni initiator that intercepts an intermediate and does not require an NH group. This initiator efficiently catalyzes controlled, living polymerization of Pro NCAs, revealing that routes alternate to the previously proposed mechanism must be at play. We also found Co species can catalyze Pro NCA polymerization, and we improved the synthetic methods to prepare the NCA monomers. Our methods are high-yielding and rapid and give tunable, end-functional PP-based homo, statistical, and block polypeptides. We characterized the conformation of PP and -4-hydroxy-PP by CD and confirmed the time scale for quantitative conversion from PPI to PPII helices. Overall, our data shed light on the general propagation mechanism of transition metal catalyzed NCA polymerization and have opened the door for efficient preparation of a desirable class of biomaterials.
聚脯氨酸(PP)基多肽作为蛋白质模拟物、有序材料、水凝胶和表面涂层具有广泛的应用。然而,缺乏快速高效的制备方法一直是合成结构明确的高分子量材料的挑战。在这里,我们报告了脯氨酸和 -4- 乙酰氧基脯氨酸 - 羧酸酐(NCAs)的简便高产制备和聚合方法。几十年来,由于缺乏酰胺 NH 质子,人们认为过渡金属引发剂不能引发 NCA 聚合。我们仔细考虑了引发机制中已知的步骤,并应用了一种 Ni 引发剂,该引发剂可以拦截中间体,而不需要 NH 基团。这种引发剂可以有效地催化脯氨酸 NCA 的可控、活性聚合,这表明必须存在除了之前提出的机制以外的途径。我们还发现 Co 物种可以催化脯氨酸 NCA 聚合,并且我们改进了合成方法来制备 NCA 单体。我们的方法产率高、速度快,可得到可调的、端功能化的基于 PP 的同系物、统计和嵌段多肽。我们通过 CD 对 PP 和 -4- 羟基-PP 的构象进行了表征,并证实了从 PPI 定量转化为 PPII 螺旋的时间尺度。总的来说,我们的数据揭示了过渡金属催化 NCA 聚合的一般增长机制,并为高效制备一类理想的生物材料开辟了道路。