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探索用于金属螺旋框架设计的螺旋肽和折叠体:当前趋势与未来展望。

Exploring Helical Peptides and Foldamers for the Design of Metal Helix Frameworks: Current Trends and Future Perspectives.

作者信息

Bajpayee Nikhil, Vijayakanth Thangavel, Rencus-Lazar Sigal, Dasgupta Sneha, Desai Aamod V, Jain Rahul, Gazit Ehud, Misra Rajkumar

机构信息

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER) Mohali, S.A.S. Nagar, Mohali, 160062, India.

Department of Materials Science and Engineering, Tel-Aviv University, 6997801, Tel-Aviv, Israel.

出版信息

Angew Chem Int Ed Engl. 2023 Feb 1;62(6):e202214583. doi: 10.1002/anie.202214583. Epub 2022 Dec 15.

Abstract

Flexible and biocompatible metal peptide frameworks (MPFs) derived from short and ultra-short peptides have been explored for the storage of greenhouse gases, molecular recognition, and chiral transformations. In addition to short flexible peptides, peptides with specifically folded conformations have recently been utilized to fabricate a variety of metal helix frameworks (MHFs). The secondary structures of the peptides govern the structure-assembly relationship and thereby control the formation of three-dimensional (3D)-MHFs. Particularly, the hierarchical structural organization of peptide-based MHFs has not yet been discussed in detail. Here, we describe the recent progress of metal-driven folded peptide assembly to construct 3D porous structures for use in future energy storage, chiral recognition, and biomedical applications, which could be envisioned as an alternative to the conventional metal-organic frameworks (MOFs).

摘要

由短肽和超短肽衍生而来的柔性且生物相容的金属肽框架(MPF)已被用于温室气体储存、分子识别和手性转化研究。除了短柔性肽外,具有特定折叠构象的肽最近也被用于构建各种金属螺旋框架(MHF)。肽的二级结构决定了结构组装关系,从而控制三维(3D)-MHF的形成。特别是,基于肽的MHF的层次结构组织尚未得到详细讨论。在此,我们描述了金属驱动的折叠肽组装以构建用于未来能量存储、手性识别和生物医学应用的3D多孔结构的最新进展,这有望成为传统金属有机框架(MOF)的替代方案。

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