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Aib聚合物中螺旋方向的手性控制:氨基酸功能化聚合物的合成与螺旋性

Chirality Control of Screw-Sense in Aib-Polymers: Synthesis and Helicity of Amino Acid Functionalized Polymers.

作者信息

Freudenberg Jan, Binder Wolfgang H

出版信息

ACS Macro Lett. 2020 May 19;9(5):686-692. doi: 10.1021/acsmacrolett.0c00218. Epub 2020 Apr 24.

Abstract

2-Aminoisobutyric acid (Aib) is an essential amino acid, leading to the formation of peptAibols as microbiologically active peptides and proteins. We here report on the ring-opening polymerization (ROP) of Aib-NCA (N-carboxy-anhydrides), enabling to prepare distinct Aib-polymers up to molecular weights of 1400 g/mol with precise end-group control. ROP of Aib-NCA was accomplished via various amine initiators in frozen and liquid solvent systems, in all cases revealing the desired structures as detected by MALDI-TOF-MS and H NMR. We can prove living polymerization behavior until the limit of solubility via inline-IR spectroscopy in both solution and solid state polymerization, characterizing the final polymers via MALDI-TOF-analysis. The attachment of chiral (d or l)-amino acids onto the polymer' headgroup allows to systematically investigate the helical screw-sense of poly(Aib), resulting in chiral induction to form either left (M)- or right (P)-handed screw-senses, depending on the chirality of the attached amino acid. The approach is extended toward a switchable, chiral azo-headgroup, able to change chirality of the attached poly(Aib) via a light-induced trigger, revealing a thermally stable -isomer when polymer units are attached. In contrast to many other amino acids easily polymerized into poly(amino-acids) via ring-opening polymerization (ROP) of their respective -carboxyanhydrides (NCAs), the ROP of Aib-NCA (N-carboxy-anhydrides) here is novel and opens a general approach toward chiral, end group-modified helices with a defined screw-sense.

摘要

2-氨基异丁酸(Aib)是一种必需氨基酸,可导致形成作为具有微生物活性的肽和蛋白质的肽Aibols。我们在此报告了Aib-NCA(N-羧基酸酐)的开环聚合(ROP),能够制备分子量高达1400 g/mol的不同Aib聚合物,并具有精确的端基控制。Aib-NCA的ROP是通过各种胺引发剂在冷冻和液体溶剂体系中完成的,在所有情况下,通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)和核磁共振氢谱(1H NMR)检测到的结构均符合预期。我们可以通过在线红外光谱证明在溶液聚合和固态聚合中直至溶解度极限的活性聚合行为,并通过MALDI-TOF分析对最终聚合物进行表征。将手性(d或l)-氨基酸连接到聚合物的端基上,可以系统地研究聚(Aib)的螺旋方向,根据连接氨基酸的手性,导致手性诱导形成左旋(M)或右旋(P)螺旋方向。该方法扩展到了一种可切换的手性偶氮端基,能够通过光诱导触发改变连接的聚(Aib)的手性,并在连接聚合物单元时显示出热稳定的异构体。与许多其他氨基酸通过其各自的N-羧基酸酐(NCAs)的开环聚合(ROP)容易聚合成聚氨基酸不同,这里Aib-NCA(N-羧基酸酐)的ROP是新颖的,为制备具有确定螺旋方向的手性、端基修饰螺旋开辟了一条通用途径。

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