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大环化试剂作为配体合成的工具:含金属结合氨基酸的环肽的酶促合成

Macrocylases as synthetic tools for ligand synthesis: enzymatic synthesis of cyclic peptides containing metal-binding amino acids.

作者信息

Brewster Richard C, Labeaga Irati Colmenero, Soden Catriona E, Jarvis Amanda G

机构信息

EaStCHEM School of Chemistry, University of Edinburgh, Joseph Black Building, David Brewster Rd, Edinburgh EH9 3FJ, Scotland.

出版信息

R Soc Open Sci. 2021 Nov 3;8(11):211098. doi: 10.1098/rsos.211098. eCollection 2021 Nov.

Abstract

Improving the sustainability of synthesis is a major goal in green chemistry, which has been greatly aided by the development of asymmetric transition metal catalysis. Recent advances in asymmetric catalysis show that the ability to control the coordination sphere of substrates can lead to improvements in enantioselectivity and activity, in a manner resembling the operation of enzymes. Peptides can be used to mimic enzyme structures and their secondary interactions and they are easily accessible through solid-phase peptide synthesis. Despite this, cyclic peptides remain underexplored as chiral ligands for catalysis due to synthetic complications upon macrocyclization. Here, we show that the solid-phase synthesis of peptides containing metal-binding amino acids, bipyridylalanine (), phenyl pyridylalanine () and dimethylhistidine () can be combined with peptide macrocylization using peptide cyclase 1 (PCY1) to yield cyclic peptides under mild conditions. High conversions of the linear peptides were observed (approx. 90%) and the Cu-bound cyclo(FSAS()SSKP) was shown to be a competent catalyst in the Friedel-Crafts/conjugate addition of indole. This study shows that PCY1 can tolerate peptides containing amino acids with classic inorganic and organometallic ligands as side chains, opening the door to the streamlined and efficient development of cyclic peptides as metal ligands.

摘要

提高合成的可持续性是绿色化学的一个主要目标,不对称过渡金属催化的发展对此起到了极大的推动作用。不对称催化的最新进展表明,控制底物配位环境的能力能够提高对映选择性和活性,其方式类似于酶的作用机制。肽可用于模拟酶的结构及其二级相互作用,并且通过固相肽合成很容易获得。尽管如此,由于大环化过程中的合成复杂性,环肽作为催化手性配体的研究仍未充分开展。在此,我们表明,含有金属结合氨基酸(联吡啶丙氨酸()、苯基吡啶丙氨酸()和二甲基组氨酸())的肽的固相合成可与使用肽环化酶1(PCY1)的肽大环化相结合,在温和条件下生成环肽。观察到线性肽有较高的转化率(约90%),并且铜结合的环(FSAS()SSKP)在吲哚的傅克/共轭加成反应中显示为一种有效的催化剂。这项研究表明,PCY1能够耐受含有经典无机和有机金属配体作为侧链的氨基酸的肽,为环肽作为金属配体的简化和高效开发打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d5f/8564625/cb1b2673f211/rsos211098f01.jpg

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