Baig Irfan, Bertini Ivano, Del Bianco Cristina, Gupta Yogesh Kumar, Lee Yong-Min, Luchinat Claudio, Quattrone Alessandro
Magnetic Resonance Centre and Department of Chemistry, University of Florence, Via Luigi Sacconi 6, 50019 Sesto Fiorentino, Italy.
Biochemistry. 2004 May 11;43(18):5562-73. doi: 10.1021/bi035879k.
In the frame of a research aimed at the detailed structural characterization of human calcium-binding proteins of the EF-hand family, the solution structure of human alpha-parvalbumin has been solved by NMR and refined with the help of substitution of the Ca(2+) ion in the EF site with the paramagnetic Dy(3+) ion. A simple (1)H-(15)N HSQC spectrum allowed the NH assignments based on the properties of Dy(3+). This allowed us to exploit pseudocontact shifts and residual dipolar couplings for solution structure refinement. The backbone and heavy atom RMSD are 0.55 +/- 0.08 and 1.02 +/- 0.08 A, respectively, and decrease to 0.39 +/- 0.05 and 0.90 +/- 0.06 A upon refinement with paramagnetism-based restraints. The RMSD for the metal itself in the EF site in the refined structure is 0.26 +/- 0.12 A. Backbone NH R(1), R(2), and NOE measured at two temperatures show the protein to be relatively rigid. The NH orientations are well determined by the paramagnetism-based restraints. This allows us to detect small but significant local structural differences with the orthologue protein from rat, whose X-ray structure is available at 2.0 A resolution. All differences are related to local changes in the amino acidic composition.
在一项旨在对EF手型家族的人类钙结合蛋白进行详细结构表征的研究框架内,通过核磁共振(NMR)解析了人类α-原肌球蛋白的溶液结构,并借助用顺磁性Dy(3+)离子取代EF位点中的Ca(2+)离子进行了结构优化。一张简单的(1)H-(15)N HSQC谱图基于Dy(3+)的性质实现了NH化学位移归属。这使我们能够利用赝接触位移和剩余偶极耦合来优化溶液结构。主链和重原子的均方根偏差(RMSD)分别为0.55±0.08 Å和1.02±0.08 Å,在用基于顺磁性的约束进行优化后,分别降至0.39±0.05 Å和0.90±0.06 Å。在优化后的结构中,EF位点中金属本身的RMSD为0.26±0.12 Å。在两个温度下测量的主链NH弛豫速率R(1)、R(2)和核Overhauser效应(NOE)表明该蛋白质相对刚性。基于顺磁性的约束很好地确定了NH的取向。这使我们能够检测到与大鼠同源蛋白的微小但显著的局部结构差异,大鼠同源蛋白的X射线结构分辨率为2.0 Å。所有差异都与氨基酸组成的局部变化有关。