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探索甜味蛋白的表面:用顺磁探针进行的MNEI核磁共振研究。

Probing the surface of a sweet protein: NMR study of MNEI with a paramagnetic probe.

作者信息

Niccolai N, Spadaccini R, Scarselli M, Bernini A, Crescenzi O, Spiga O, Ciutti A, Di Maro D, Bracci L, Dalvit C, Temussi P A

机构信息

Dipartimento di Biologia Molecolare, Università di Siena, Siena, Italy.

出版信息

Protein Sci. 2001 Aug;10(8):1498-507. doi: 10.1110/ps.30101.

Abstract

The design of safe sweeteners is very important for people who are affected by diabetes, hyperlipemia, and caries and other diseases that are linked to the consumption of sugars. Sweet proteins, which are found in several tropical plants, are many times sweeter than sucrose on a molar basis. A good understanding of their structure-function relationship can complement traditional SAR studies on small molecular weight sweeteners and thus help in the design of safe sweeteners. However, there is virtually no sequence homology and very little structural similarity among known sweet proteins. Studies on mutants of monellin, the best characterized of sweet proteins, proved not decisive in the localization of the main interaction points of monellin with its receptor. Accordingly, we resorted to an unbiased approach to restrict the search of likely areas of interaction on the surface of a typical sweet protein. It has been recently shown that an accurate survey of the surface of proteins by appropriate paramagnetic probes may locate interaction points on protein surface. Here we report the survey of the surface of MNEI, a single chain monellin, by means of a paramagnetic probe, and a direct assessment of bound water based on an application of ePHOGSY, an NMR experiment that is ideally suited to detect interactions of small ligands to a protein. Detailed surface mapping reveals the presence, on the surface of MNEI, of interaction points that include residues previously predicted by ELISA tests and by mutagenesis.

摘要

对于受糖尿病、高脂血症和龋齿等与糖类摄入有关的疾病影响的人群而言,安全甜味剂的设计非常重要。在几种热带植物中发现的甜味蛋白,以摩尔为基础计算,其甜度比蔗糖高许多倍。深入了解它们的结构 - 功能关系可以补充对小分子甜味剂的传统构效关系研究,从而有助于设计安全的甜味剂。然而,已知的甜味蛋白之间几乎没有序列同源性,结构相似性也非常低。对甜味蛋白中特征最明显的莫内林突变体的研究,在确定莫内林与其受体的主要相互作用点的定位方面并未起到决定性作用。因此,我们采用了一种无偏差的方法来限制对典型甜味蛋白表面可能的相互作用区域的搜索。最近有研究表明,通过合适的顺磁探针精确探测蛋白质表面,可以确定蛋白质表面的相互作用点。在此,我们报告了通过顺磁探针探测单链莫内林MNEI的表面,并基于一种非常适合检测小分子配体与蛋白质相互作用的核磁共振实验ePHOGSY对结合水进行直接评估的结果。详细的表面图谱揭示了在MNEI表面存在相互作用点,这些相互作用点包括先前通过酶联免疫吸附测定试验和诱变预测的残基。

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