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作为一种特异性荧光蛋白标记策略的靶序列的从头合成螺旋肽。

De novo helical peptides as target sequences for a specific, fluorogenic protein labelling strategy.

作者信息

Guy Julia, Castonguay Roselyne, Campos-Reales Pineda Natalhie B, Jacquier Valérie, Caron Karine, Michnick Stephen W, Keillor Jeffrey W

机构信息

Département de chimie, Université de Montréal, Montréal, QCH3C3J7, Canada.

出版信息

Mol Biosyst. 2010 Jun;6(6):976-87. doi: 10.1039/b918205e. Epub 2010 Feb 23.

Abstract

New methods are needed to selectively label proteins in a manner that minimally perturbs their structures and functions. We have developed a 'small molecule'-based labelling technique that relies on the use of dimaleimide fluorogens that react with a target peptide sequence that presents appropriately spaced, solvent-exposed Cys residues. The thiol addition reaction between target sequence and dimaleimide fluorogen restores the latent fluorescence of the latter and results in the covalent fluorescent labelling of the protein of interest (J. Guy, K. Caron, S. Dufresne, S. W. Michnick, W. G. Skene and J. W. Keillor, J. Am. Chem. Soc., 2007, 129, 11969-11977). We demonstrated the proof-of-principle of this method previously, using a dicysteine mutant of the helical protein Fos (S. Girouard, M.-H. Houle, A. Grandbois, J. W. Keillor and S. W. Michnick, J. Am. Chem. Soc., 2005, 127, 559-566). Herein, we present the design of a novel peptide sequence presenting two Cys residues separated by two turns of an alpha-helix. The secondary structure of this sequence was confirmed by CD spectroscopy, before and after the fluorescent labelling reaction. A new series of di(3-methylmaleimide) fluorogens was prepared and kinetically evaluated, tuning their reactivity toward the target sequence. Attempts were made to increase the reactivity of the parent target sequence by rational design; however, the introduction of basic His residues in the vicinity of one or more Cys residues did not have the desired effect. Finally, epidermal growth factor receptors bearing the de novo target sequence were specifically labelled with a di(3-methylmaleimide) fluorescein fluorogen, validating our method for specific cell-surface labelling of proteins. A wide variety of fluorogen and peptide designs can be envisioned with potential applications to multiplexed labelling for the study of temporal and spatial dynamics of protein expression.

摘要

需要新的方法来以最小程度干扰蛋白质结构和功能的方式选择性标记蛋白质。我们开发了一种基于“小分子”的标记技术,该技术依赖于使用与呈现适当间隔、溶剂暴露的半胱氨酸残基的目标肽序列反应的双马来酰亚胺荧光团。目标序列与双马来酰亚胺荧光团之间的硫醇加成反应恢复了后者的潜在荧光,并导致目标蛋白质的共价荧光标记(J. Guy、K. Caron、S. Dufresne、S. W. Michnick、W. G. Skene 和 J. W. Keillor,《美国化学会志》,2007 年,129 卷,11969 - 11977 页)。我们之前使用螺旋蛋白 Fos 的双半胱氨酸突变体证明了该方法的原理(S. Girouard、M.-H. Houle、A. Grandbois、J. W. Keillor 和 S. W. Michnick,《美国化学会志》,2005 年,127 卷,559 - 566 页)。在此,我们展示了一种新的肽序列的设计,该序列有两个被两圈α-螺旋隔开的半胱氨酸残基。在荧光标记反应前后,通过圆二色光谱法确认了该序列的二级结构。制备了一系列新的二(3-甲基马来酰亚胺)荧光团并进行了动力学评估,调整它们对目标序列反应性。试图通过合理设计提高亲本目标序列的反应性;然而,在一个或多个半胱氨酸残基附近引入碱性组氨酸残基并没有达到预期效果。最后,携带从头设计目标序列的表皮生长因子受体用二(3-甲基马来酰亚胺)荧光素荧光团进行了特异性标记,验证了我们用于蛋白质特异性细胞表面标记的方法。可以设想各种各样的荧光团和肽设计,它们在蛋白质表达的时间和空间动态研究的多重标记中具有潜在应用。

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