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氟标记氨基酸的固态¹⁹F核磁共振参数。第二部分:脂肪族取代基。

Solid state 19F NMR parameters of fluorine-labeled amino acids. Part II: aliphatic substituents.

作者信息

Grage Stephan L, Dürr Ulrich H N, Afonin Sergii, Mikhailiuk Pavel K, Komarov Igor V, Ulrich Anne S

机构信息

Forschungszentrum Karlsruhe, Institute of Biological Interfaces, P.O.B. 3640, 76021 Karlsruhe, Germany.

出版信息

J Magn Reson. 2008 Mar;191(1):16-23. doi: 10.1016/j.jmr.2007.11.016. Epub 2007 Dec 3.

Abstract

A representative set of amino acids with aliphatic 19F-labels has been characterized here, following up our previous compilation of NMR parameters for single 19F-substituents on aromatic side chains. Their isotropic chemical shifts, chemical shift tensor parameters, intra-molecular 19F dipole-dipole couplings and temperature-dependent T1 and T2 relaxation times were determined by solid state NMR on twelve polycrystalline amino acid samples, and the corresponding isotropic 19F chemical shifts and scalar couplings were obtained in solution. Of particular interest are amino acids carrying a trifluoromethyl-group, because not only the 19F chemical shift but also the intra-CF3 homonuclear dipolar coupling can be used for structural studies of 19F-labeled peptides and proteins. The CF3-groups are further compared with CH2F-, CD2F-, and CD3-groups, using both 19F and 2H NMR to describe their motional behavior and to examine the respective linebroadening effects of the protonated and deuterated neighbors. We have also characterized two unnatural amino acids in which a CF3-label is rigidly connected to the backbone by a phenyl or bicyclopentyl moiety, and which are particularly well suited for structure analysis of membrane-bound polypeptides. The 19F NMR parameters of the polycrystalline amino acids are compared with data from the correspondingly labeled side chains in synthetic peptides.

摘要

在此,我们对一组具有脂肪族19F标记的代表性氨基酸进行了表征,这是在我们之前对芳香族侧链上单个19F取代基的NMR参数汇编的基础上进行的。通过对12个多晶氨基酸样品进行固态NMR测定了它们的各向同性化学位移、化学位移张量参数、分子内19F偶极 - 偶极耦合以及温度依赖性的T1和T2弛豫时间,并在溶液中获得了相应的各向同性19F化学位移和标量耦合。特别令人感兴趣的是带有三氟甲基的氨基酸,因为不仅19F化学位移,而且CF3同核偶极耦合都可用于19F标记的肽和蛋白质的结构研究。使用19F和2H NMR将CF3基团与CH2F - 、CD2F - 和CD3基团进一步比较,以描述它们的运动行为并研究质子化和氘代邻近基团各自的线宽化效应。我们还表征了两种非天然氨基酸,其中CF3标记通过苯基或双环戊基部分与主链刚性连接,并且它们特别适合用于膜结合多肽的结构分析。将多晶氨基酸的19F NMR参数与合成肽中相应标记侧链的数据进行了比较。

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