Shu Qin, Frieden Carl
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Biochemistry. 2004 Feb 17;43(6):1432-9. doi: 10.1021/bi035651x.
Murine adenosine deaminase (mADA) is a 40 kDa (beta/alpha)(8)-barrel protein consisting of eight central beta-strands and eight peripheral alpha-helices containing four tryptophan residues. In this study, we investigated the urea-dependent behavior of the protein labeled with 6-fluorotryptophan (6-(19)F-Trp). The (19)F NMR spectrum of 6-(19)F-Trp-labeled mADA reveals four distinct resonances in the native state and three partly overlapped resonances in the unfolded state. The resonances were assigned unambiguously by site-directed mutagenesis. Equilibrium unfolding of 6-(19)F-Trp-labeled mADA was monitored using (19)F NMR based on these assignments. The changes in intensity of folded and unfolded resonances as a function of urea concentration show transition midpoints consistent with data observed by far-UV CD and fluorescence spectroscopy, indicating that conformational changes in mADA during urea unfolding can be followed by (19)F NMR. Chemical shifts of the (19)F resonances exhibited different changes between 1.0 and 6.0 M urea, indicating that local structures around 6-(19)F-Trp residues change differently. The urea-induced changes in local structure around four 6-(19)F-Trp residues of mADA were analyzed on the basis of the tertiary structure and chemical shifts of folded resonances. The results reveal that different local regions in mADA have different urea-dependent behavior, and that local regions of mADA change sequentially from native to intermediate topologies on the unfolding pathway.
小鼠腺苷脱氨酶(mADA)是一种40 kDa的(β/α)(8)桶状蛋白,由八个中央β链和八个外围α螺旋组成,含有四个色氨酸残基。在本研究中,我们研究了用6-氟色氨酸(6-(19)F-Trp)标记的该蛋白的尿素依赖性行为。6-(19)F-Trp标记的mADA的(19)F NMR谱在天然状态下显示出四个不同的共振峰,在未折叠状态下显示出三个部分重叠的共振峰。通过定点诱变明确地指定了这些共振峰。基于这些指定,使用(19)F NMR监测6-(19)F-Trp标记的mADA的平衡去折叠。折叠和未折叠共振峰强度随尿素浓度的变化显示出与远紫外圆二色光谱和荧光光谱观察到的数据一致的转变中点,表明尿素去折叠过程中mADA的构象变化可以通过(19)F NMR跟踪。(19)F共振峰的化学位移在1.0至6.0 M尿素之间表现出不同的变化,表明6-(19)F-Trp残基周围的局部结构变化不同。基于mADA折叠共振峰的三级结构和化学位移,分析了尿素诱导的mADA四个6-(19)F-Trp残基周围局部结构的变化。结果表明,mADA中不同的局部区域具有不同的尿素依赖性行为,并且mADA的局部区域在去折叠途径上从天然拓扑依次变为中间拓扑。