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天然蛋白质的从头设计:旨在折叠成反平行、rop样四螺旋束的蛋白质的表征。

De novo design of native proteins: characterization of proteins intended to fold into antiparallel, rop-like, four-helix bundles.

作者信息

Betz S F, Liebman P A, DeGrado W F

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia 19104-6059, USA.

出版信息

Biochemistry. 1997 Mar 4;36(9):2450-8. doi: 10.1021/bi961704h.

Abstract

The de novo design and characterization of a series of 51-residue helix-turn-helix peptides intended to dimerize into antiparallel four-stranded coiled coils is described. The sequence is based on a coiled coil heptad repeat Ncap-(Aa Zb Zc Ld Ze Zf Zg)3-turn- (Xa Zb Zc Ld Ze Zf Zg)3-Ccap-CONH2, where X is either Val or Ala. The overall topology was intended to be similar to that found in the Escherichia coli protein ROP. The design strategy included consideration of geometric complementarity of the packing of side chains within the hydrophobic core as well as the use of specific interfacial interactions, both of which were intended to favor the desired ROP-like topology. Additionally, the sequence was designed to destabilize potential alternative structures that might compete with the desired topology. The peptides (RLP-1, RLP-2, and RLP-3) assemble into stable alpha-helical dimers and exhibit the hallmarks of a native protein as judged by its spectroscopic properties, and the lack of binding to hydrophobic dyes. Also, the enthalpy and heat capacity changes upon denaturation were determined by measuring the temperature dependence of the CD spectra and confirmed by differential scanning calorimetry (DSC). The values determined by the two methods are in excellent agreement and are in the range of those of naturally occurring proteins of this size. These results suggest that it is now possible to design native-like helical proteins that should serve as templates for the further design of functional proteins.

摘要

本文描述了一系列旨在二聚形成反平行四链卷曲螺旋的51个残基的螺旋-转角-螺旋肽的从头设计和表征。该序列基于卷曲螺旋七肽重复序列Ncap-(Aa Zb Zc Ld Ze Zf Zg)3-转角-(Xa Zb Zc Ld Ze Zf Zg)3-Ccap-CONH2,其中X为缬氨酸或丙氨酸。整体拓扑结构旨在与大肠杆菌蛋白ROP中的拓扑结构相似。设计策略包括考虑疏水核心内侧链堆积的几何互补性以及使用特定的界面相互作用,这两者都旨在有利于所需的ROP样拓扑结构。此外,该序列被设计为使可能与所需拓扑结构竞争的潜在替代结构不稳定。这些肽(RLP-1、RLP-2和RLP-3)组装成稳定的α-螺旋二聚体,并通过其光谱性质以及与疏水染料不结合来判断,表现出天然蛋白质的特征。此外,通过测量圆二色光谱的温度依赖性来确定变性时的焓和热容变化,并通过差示扫描量热法(DSC)进行确认。两种方法测定的值非常一致,且在这种大小的天然蛋白质的范围内。这些结果表明,现在有可能设计出类似天然的螺旋蛋白,它们可作为进一步设计功能蛋白的模板。

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