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抗肿瘤抗生素鲁佐肽的1H和13C核磁共振研究。溶液中的共振归属、构象和柔性

1H- and 13C-n.m.r. studies of the antitumour antibiotic luzopeptin. Resonance assignments, conformation and flexibility in solution.

作者信息

Searle M S, Hall J G, Wakelin P G

机构信息

Molecular Pharmacology Group and NMR Facility, Peter MacCallum Cancer Institute, Melbourne, Vic., Australia.

出版信息

Biochem J. 1988 Nov 15;256(1):271-8. doi: 10.1042/bj2560271.

Abstract

The depsipeptide DNA-intercalating antibiotic luzopeptin was studied in solution by n.m.r. methods. Two-dimensional 1H double-quantum-filtered correlation spectroscopy (DQF-COSY) and nuclear-Overhauser-effect spectroscopy (NOESY) confirm the primary structure and twofold symmetry of luzopeptin and provide details of its three-dimensional conformation in solution. Trans-annular hydrogen bonds between the glycine NH groups and carbonyl oxygen atoms have been identified in the crystalline state [Arnold & Clardy (1981) J. Am. Chem. Soc. 103, 1243-1244], and are important in maintaining an antiparallel beta-sheet conformation. The n.m.r. data indicate that the glycine NH protons are appreciably shielded from the solvent molecules, which suggests that these hydrogen bonds are maintained in solution. The orientation of the quinoline chromophores is defined by two-dimensional NOE cross-peaks that position the N-methyl group of the L-beta-hydroxyvaline residue close in space to both the quinoline H-8 and serine NH proton. This pattern of NOEs is in accord both with the chromophore configuration found in the crystal and one where the quinoline rings are aligned in a parallel manner at right-angles to the depsipeptide ring. The n.m.r. data are consistent with a hydrogen bond between the quinoline hydroxy groups and the quinoline carbonyl oxygen atoms. The pyridazine acetylmethyl groups give NOEs to the C(alpha)H groups of the beta-hydroxy-N-methylvaline residues, showing that the acetyl groups, for at least some of the time, stretch over the depsipeptide ring, occluding one face of the molecule. Both of the latter features are also found in the crystal structure. Resonances in the 13C-n.m.r. spectrum of luzopeptin have been assigned by transferring 1H assignments to their covalently bonded carbon atoms via a heteronuclear shift-correlation experiment (HETCOR). The measurement of spin-lattice relaxation times and 1H-13C NOEs at specific sites in the molecule has led us to conclude that segmental motions within the depsipeptide ring are restricted and that the 13C relaxation data for luzopeptin's protonated carbon atoms are adequately described by isotropic tumbling in solution. Furthermore, relaxation data for the carbon atoms of the quinoline chromophores show that these rings exhibit similar motion to the depsipeptide ring and are not rotating rapidly with respect to it. Taken together all the data imply that luzopeptin is fairly rigid in solution, on the time scale of molecular tumbling, and has, or can readily attain, a staple-like structure suitable for bisintercalation.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过核磁共振方法对缩肽类DNA嵌入抗生素鲁佐肽进行了溶液研究。二维氢双量子滤波相关光谱法(DQF-COSY)和核Overhauser效应光谱法(NOESY)证实了鲁佐肽的一级结构和双重对称性,并提供了其在溶液中的三维构象细节。在晶体状态下已鉴定出甘氨酸NH基团与羰基氧原子之间的跨环氢键[阿诺德和克拉迪(1981年)《美国化学会志》103,1243 - 1244],这些氢键对于维持反平行β-折叠构象很重要。核磁共振数据表明,甘氨酸NH质子明显受到溶剂分子的屏蔽,这表明这些氢键在溶液中得以维持。喹啉发色团的取向由二维NOE交叉峰确定,这些交叉峰将L-β-羟基缬氨酸残基的N-甲基基团在空间上定位为与喹啉H-8和丝氨酸NH质子都接近。这种NOE模式既与晶体中发现的发色团构型一致,也与喹啉环以与缩肽环成直角的平行方式排列的构型一致。核磁共振数据与喹啉羟基与喹啉羰基氧原子之间的氢键一致。哒嗪乙酰甲基基团与β-羟基-N-甲基缬氨酸残基的C(α)H基团产生NOE,表明乙酰基团至少在某些时候伸展在缩肽环上方,遮盖了分子的一个面。后两个特征在晶体结构中也能找到。通过异核位移相关实验(HETCOR)将氢的归属转移到其共价键合的碳原子上,从而对鲁佐肽的碳-13核磁共振谱中的共振进行了归属。对分子中特定位置的自旋晶格弛豫时间和氢-碳-13 NOE的测量使我们得出结论,缩肽环内的片段运动受到限制,并且鲁佐肽质子化碳原子的碳-13弛豫数据可以通过溶液中的各向同性翻滚得到充分描述。此外,喹啉发色团碳原子的弛豫数据表明,这些环与缩肽环表现出相似的运动,并且相对于缩肽环不会快速旋转。综合所有数据表明,在分子翻滚的时间尺度上,鲁佐肽在溶液中相当刚性,并且具有或能够很容易地获得适合双嵌入的订书钉状结构。(摘要截短至400字)

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