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用于生物化学转化的肽组装体的系统化学

Systems chemistry of peptide-assemblies for biochemical transformations.

作者信息

Chatterjee Ayan, Reja Antara, Pal Sumit, Das Dibyendu

机构信息

Department of Chemical Sciences and Centre for Advanced Functional Materials, Indian Institute of Science Education and Research (IISER) Kolkata, Mohanpur-741246, India.

出版信息

Chem Soc Rev. 2022 Apr 19;51(8):3047-3070. doi: 10.1039/d1cs01178b.

Abstract

During the billions of years of the evolutionary journey, primitive polymers, involved in proto metabolic pathways with low catalytic activity, played critical roles in the emergence of modern enzymes with remarkable substrate specificity. The precise positioning of amino acid residues and the complex orchestrated interplay in the binding pockets of evolved enzymes promote covalent and non-covalent interactions to foster a diverse set of complex catalytic transformations. Recent efforts to emulate the structural and functional information of extant enzymes by minimal peptide based assemblies have attempted to provide a holistic approach that could help in discerning the prebiotic origins of catalytically active binding pockets of advanced proteins. In addition to the impressive sets of advanced biochemical transformations, catalytic promiscuity and cascade catalysis by such small molecule based dynamic systems can foreshadow the ancestral catalytic processes required for the onset of protometabolism. Looking beyond minimal systems that work close to equilibrium, catalytic systems and compartments under non-equilibrium conditions utilizing simple prebiotically relevant precursors have attempted to shed light on how bioenergetics played an essential role in chemical emergence of complex behaviour. Herein, we map out these recent works and progress where diverse sets of complex enzymatic transformations were demonstrated by utilizing minimal peptide based self-assembled systems. Further, we have attempted to cover the examples of peptide assemblies that could feature promiscuous activity and promote complex multistep cascade reaction networks. The review also covers a few recent examples of minimal transient catalytic assemblies under non-equilibrium conditions. This review attempts to provide a broad perspective for potentially programming functionality rational selection of amino acid sequences leading towards minimal catalytic systems that resemble the traits of contemporary enzymes.

摘要

在数十亿年的进化历程中,参与具有低催化活性的原始代谢途径的原始聚合物,在具有显著底物特异性的现代酶的出现过程中发挥了关键作用。进化酶结合口袋中氨基酸残基的精确排列以及复杂的协同相互作用促进了共价和非共价相互作用,从而促成了一系列多样的复杂催化转化。最近,通过基于最小肽的组装体来模拟现存酶的结构和功能信息的努力,试图提供一种整体方法,有助于洞察高级蛋白质催化活性结合口袋的益生元起源。除了令人印象深刻的一系列先进生化转化外,这种基于小分子的动态系统的催化多效性和级联催化可以预示原代谢开始所需的祖先催化过程。超越接近平衡状态的最小系统,利用简单的益生元相关前体在非平衡条件下构建催化系统和区室,试图阐明生物能量学如何在复杂行为的化学出现中发挥重要作用。在此,我们梳理了这些近期的工作和进展,其中利用基于最小肽的自组装系统展示了多样的复杂酶促转化。此外,我们试图涵盖具有多效活性并促进复杂多步级联反应网络的肽组装体实例。本综述还涵盖了一些非平衡条件下最小瞬态催化组装体的近期实例。本综述试图为潜在地对功能进行编程、合理选择氨基酸序列以构建类似于当代酶特征的最小催化系统提供一个广阔的视角。

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