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基于铁的1H NMR检测偶极场对E7组氨酸突变为缬氨酸的氰化高铁肌红蛋白点突变体中血红素腔的溶液结构测定:血红素口袋收缩的证据

Solution structure determination of the heme cavity in the E7 His-->Val cyano-met myoglobin point mutant based on the 1H NMR detected dipolar field of the iron: evidence for contraction of the heme pocket.

作者信息

Rajarathnam K, Qin J, La Mar G N, Chiu M L, Sligar S G

机构信息

Department of Chemistry, University of California, Davis 95616.

出版信息

Biochemistry. 1993 Jun 1;32(21):5670-80. doi: 10.1021/bi00072a024.

Abstract

The 1H NMR spectrum of the cyanomet complex of the sperm whale His[E7]Val myoglobin (Mb) point mutant has been analyzed by 2D methods to yield the assignments for the active site residues, including the substituted Val E7. The dipolar shifted proximal residues are used to quantitatively locate the magnetic axes for the paramagnetic susceptibility tensor in the molecular framework. The orientation of the major axis, which correlates with the ligand tilt, is approximately 15 degrees from the heme normal, as found in wild-type (WT) Mb, but is tilted in a direction rotated approximately 40 degrees toward the heme gamma-meso position with respect to WT and similar to that in the His[E7]Gly mutant [Rajarathnam, K., La Mar, G. N., Chiu, M., & Sligar, S. G. (1992) J. Am. Chem. Soc. 114, 9048-9058]. The altered direction of an unchanged tilt angle for the Fe+3-CN unit is shown to be qualitatively consistent with earlier computations of the potential energy surface for MbCO [Kuriyan, J., Wilz, S., Karplus, M., & Petsko, G. A. (1986) J. Mol. Biol. 192, 133-154]. It is concluded that His E7 does not significantly contribute to the ligand tilt but strongly influences the direction of tilt. Deviations between observed and predicted dipolar shifts for the E-helix backbone protons and perturbed patterns of their respective nuclear Overhauser effect between the E-helix and the heme 1,8-methyls are separately analyzed for movement of the E-helix and agree on a translation of the E-helix of the order of 0.8 A in a direction toward the iron. The discrepancy between observed and predicted dipolar shifts for Phe CD1 indicates a approximately 0.5-A movement by the ring parallel to the heme and towards the E-helix. The E-helix and Phe CD1 movements are consistent with a contraction of the pocket to fill the space created by the His-->Val substitution. The correlation between the observed dipolar shifts of the substituted Val E7 side chain and those calculated as a function of rotation of the residue with and without movement of the E-helix confirm the movement of the E-helix and allow a quantitative description of the Val orientation. It is concluded that the dipolar field of the paramagnetic susceptibility tensor provides an important quantitative constraint for defining the heme cavity structure in cyanomet complexes of distal point mutants of myoglobin and hemoglobin.

摘要

已通过二维方法分析了抹香鲸His[E7]Val肌红蛋白(Mb)点突变体的氰化物配合物的1H NMR谱,以确定活性位点残基的归属,包括取代的Val E7。利用偶极位移的近端残基在分子框架中定量定位顺磁磁化率张量的磁轴。主轴的方向与配体倾斜相关,与野生型(WT)Mb一样,与血红素法线大约成15度角,但相对于WT向血红素γ-中位位置旋转约40度的方向倾斜,与His[E7]Gly突变体中的情况类似[Rajarathnam, K., La Mar, G. N., Chiu, M., & Sligar, S. G. (1992) J. Am. Chem. Soc. 114, 9048 - 9058]。Fe+3 - CN单元倾斜角度不变但方向改变,这在定性上与早期对MbCO势能面的计算结果一致[Kuriyan, J., Wilz, S., Karplus, M., & Petsko, G. A. (1986) J. Mol. Biol. 192, 133 - 154]。得出的结论是,His E7对配体倾斜没有显著贡献,但强烈影响倾斜方向。分别分析了E - 螺旋主链质子的观测偶极位移与预测偶极位移之间的偏差,以及E - 螺旋与血红素1,8 - 甲基之间各自核Overhauser效应的扰动模式,以研究E - 螺旋的移动情况,结果表明E - 螺旋朝着铁的方向平移了约0.8 Å。Phe CD1的观测偶极位移与预测偶极位移之间的差异表明,苯环平行于血红素并朝着E - 螺旋移动了约0.5 Å。E - 螺旋和Phe CD1的移动与口袋收缩以填充His→Val取代产生的空间一致。取代的Val E7侧链的观测偶极位移与在E - 螺旋移动和不移动的情况下根据残基旋转计算得到的偶极位移之间的相关性,证实了E - 螺旋的移动,并允许对Val的取向进行定量描述。得出结论是顺磁磁化率张量的偶极场为定义肌红蛋白和血红蛋白远端点突变体的氰化物配合物中的血红素腔结构提供了重要的定量约束。

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