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设计的血红素笼β-折叠微蛋白。

Designed Heme-Cage β-Sheet Miniproteins.

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore, 637551, Singapore.

School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.

出版信息

Angew Chem Int Ed Engl. 2017 May 15;56(21):5904-5908. doi: 10.1002/anie.201702472. Epub 2017 Apr 25.

Abstract

The structure and function of naturally occurring proteins are governed by a large number of amino acids (≥100). The design of miniature proteins with desired structures and functions not only substantiates our knowledge about proteins but can also contribute to the development of novel applications. Excellent progress has been made towards the design of helical proteins with diverse functions. However, the development of functional β-sheet proteins remains challenging. Herein, we describe the construction and characterization of four-stranded β-sheet miniproteins made up of about 19 amino acids that bind heme inside a hydrophobic binding pocket or "heme cage" by bis-histidine coordination in an aqueous environment. The designed miniproteins bound to heme with high affinity comparable to that of native heme proteins. Atomic-resolution structures confirmed the presence of a four-stranded β-sheet fold. The heme-protein complexes also exhibited high stability against thermal and chaotrope-induced unfolding.

摘要

天然存在的蛋白质的结构和功能由大量的氨基酸(≥100)控制。设计具有所需结构和功能的微型蛋白质不仅证实了我们对蛋白质的认识,而且还可以为新型应用的开发做出贡献。在设计具有多种功能的螺旋蛋白质方面已经取得了很好的进展。然而,功能性β-折叠蛋白质的开发仍然具有挑战性。本文描述了由约 19 个氨基酸组成的四链β-折叠微蛋白的构建和特性,这些微蛋白在水相环境中通过双组氨酸配位在疏水环境中形成“血红素笼”,从而结合血红素。设计的微蛋白与血红素的结合亲和力高,与天然血红素蛋白相当。原子分辨率的结构证实了四链β-折叠的存在。血红素-蛋白质复合物对热和变溶剂诱导的解折叠也表现出很高的稳定性。

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