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硫氧还蛋白破坏核心突变体的结构、氢交换和主链动力学的核磁共振研究。

NMR studies of structure, hydrogen exchange, and main-chain dynamics in a disrupted-core mutant of thioredoxin.

作者信息

De Lorimier R, Hellinga H W, Spicer L D

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Protein Sci. 1996 Dec;5(12):2552-65. doi: 10.1002/pro.5560051218.

Abstract

Core-packing mutants of proteins often approach molten globule states, and hence may have attributes of folding intermediates. We have studied a core-packing mutant of thioredoxin, L78K, in which a leucine residue is substituted by lysine, using 15N heteronuclear two- and three-dimensional NMR. Chemical shift differences between the mutant and wild-type main-chain resonances reveal that structural changes caused by the mutation are localized within 12 A of the altered side chain. The majority of resonances are unchanged, as are many 1H-1H NOEs indicative of the main-chain fold, suggesting that the structure of L78K is largely similar to wild type. Hydrogen exchange studies reveal that residues comprising the central beta-sheet of both mutant and wild-type proteins constitute a local unfolding unit, but with the unfolding/folding equilibrium approximately 12 times larger in L78K. The dynamics of main-chain NH bonds in L78K were studied by 15N spin relaxation and compared with a previous study of wild type. Order parameters for angular motion of NH bonds in the mutant are on average lower than in wild type, suggesting greater spatial freedom on a rapid time scale, but may also be related to different rotational correlation times in the two proteins. There is also evidence of greater conformational exchange in the mutant. Differences between mutant and wild type in hydrogen exchange and main-chain dynamics are not confined to the vicinity of the mutation. We infer that mispacking of the protein core in one location affects local dynamics and stability throughout.

摘要

蛋白质的核心包装突变体常常接近熔球态,因此可能具有折叠中间体的特性。我们使用15N异核二维和三维核磁共振技术研究了硫氧还蛋白的一个核心包装突变体L78K,其中一个亮氨酸残基被赖氨酸取代。突变体和野生型主链共振之间的化学位移差异表明,由突变引起的结构变化局限于改变侧链的12埃范围内。大多数共振没有变化,许多表明主链折叠的1H-1H NOE也没有变化,这表明L78K的结构与野生型基本相似。氢交换研究表明,突变体和野生型蛋白质的中央β-折叠中的残基构成一个局部解折叠单元,但L78K中的解折叠/折叠平衡大约是野生型的12倍。通过15N自旋弛豫研究了L78K中主链NH键的动力学,并与之前对野生型的研究进行了比较。突变体中NH键角运动的序参数平均低于野生型,这表明在快速时间尺度上具有更大的空间自由度,但也可能与两种蛋白质中不同的旋转相关时间有关。也有证据表明突变体中存在更大的构象交换。突变体和野生型在氢交换和主链动力学方面的差异并不局限于突变附近。我们推断蛋白质核心在一个位置的错误包装会影响整体的局部动力学和稳定性。

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