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半胱氨酸(MTSL)是用于用氮氧化物对可化学合成的肽分子进行电子自旋标记的最佳α-氨基酸残基吗?

Is Cys(MTSL) the Best α-Amino Acid Residue to Electron Spin Labeling of Synthetically Accessible Peptide Molecules with Nitroxides?

作者信息

Biondi Barbara, Syryamina Victoria N, Rocchio Gabriele, Barbon Antonio, Formaggio Fernando, Toniolo Claudio, Raap Jan, Dzuba Sergei A

机构信息

Institute of Biomolecular Chemistry, Padova Unit, CNR, 35131 Padova, Italy.

Institute of Chemical Kinetics and Combustion, 630090 Novosibirsk, Russian Federation.

出版信息

ACS Omega. 2022 Jan 31;7(6):5154-5165. doi: 10.1021/acsomega.1c06227. eCollection 2022 Feb 15.

Abstract

Electron paramagnetic resonance spectroscopy, particularly its pulse technique double electron-electron resonance (DEER) (also termed PELDOR), is rapidly becoming an extremely useful tool for the experimental determination of side chain-to-side chain distances between free radicals in molecules fundamental for life, such as polypeptides. Among appropriate probes, the most popular are undoubtedly nitroxide electron spin labels. In this context, suitable biosynthetically derived, helical regions of proteins, along with synthetic peptides with amphiphilic properties and antibacterial activities, are the most extensively investigated compounds. A strict requirement for a precise distance measurement has been identified in a minimal dynamic flexibility of the two nitroxide-bearing α-amino acid side chains. To this end, in this study, we have experimentally compared in detail the side-chain mobility properties of the two currently most widely utilized residues, namely, Cys(MTSL) and 2,2,6,6-tetramethylpiperidine-1-oxyl-4-amino-4-carboxylic acid (TOAC). In particular, two double-labeled, chemically synthesized 20-mer peptide molecules have been adopted as appropriate templates for our investigation on the determination of the model intramolecular separations. These double-Cys(MTSL) and double-TOAC compounds are both analogues of the almost completely rigid backbone peptide ruler which we have envisaged and 3D structurally analyzed as our original, unlabeled compound. Here, we have clearly found that the TOAC side-chain labels are largely more 3D structurally restricted than the MTSL labels. From this result, we conclude that the TOAC residue offers more precise information than the Cys(MTSL) residue on the side chain-to-side chain distance distribution in synthetically accessible peptide molecules.

摘要

电子顺磁共振光谱学,尤其是其脉冲技术双电子-电子共振(DEER)(也称为脉冲电子双共振),正迅速成为一种极为有用的工具,用于实验测定生命基本分子(如多肽)中自由基之间的侧链到侧链距离。在合适的探针中,最受欢迎的无疑是氮氧化物电子自旋标记物。在此背景下,蛋白质中合适的生物合成衍生螺旋区域,以及具有两亲性和抗菌活性的合成肽,是研究最为广泛的化合物。对于精确距离测量的一个严格要求是,两个带有氮氧化物的α-氨基酸侧链具有最小的动态灵活性。为此,在本研究中,我们详细地通过实验比较了目前使用最广泛的两个残基,即半胱氨酸(MTSL)和2,2,6,6-四甲基哌啶-1-氧基-4-氨基-4-羧酸(TOAC)的侧链迁移特性。特别是,两个化学合成的双标记20聚体肽分子被用作合适的模板,用于我们对模型分子内间距测定的研究。这些双半胱氨酸(MTSL)和双TOAC化合物都是我们设想的几乎完全刚性主链肽尺的类似物,并且我们已将其作为原始的未标记化合物进行了三维结构分析。在此,我们清楚地发现,TOAC侧链标记在三维结构上比MTSL标记受到的限制更大。从这个结果,我们得出结论,在可合成获得的肽分子中,TOAC残基在侧链到侧链距离分布方面比半胱氨酸(MTSL)残基提供更精确的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d963/8851612/33b01501560f/ao1c06227_0002.jpg

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