Antoniou Chloe, Lam Vinh Q, Fung L W-M
Department of Chemistry, University of Illinois at Chicago, 845 West Taylor Street, MC 111, Chicago, Illinois 60607, USA.
Biochemistry. 2008 Oct 7;47(40):10765-72. doi: 10.1021/bi800840p. Epub 2008 Sep 11.
We used cysteine scanning, isothermal titration calorimetry (ITC) and spin label EPR methods to study the two regions that flank the partial domain Helix C' of the N-terminal end of alpha-spectrin (residues 14-20 and residues 44-54) in the absence and presence of a model protein of the beta-spectrin C-terminal end. In the absence of beta-spectrin, residues 14-20 and 46-52 were known to be unstructured. The EPR spectral values of the inverse line width (Delta H (-1)) and of the width between the low field peak and the central peak ( aZ) of residues in part of the first unstructured region (residues 17-20) and of most residues in the second unstructured junction region (residues 46-52) changed dramatically upon association with beta-spectrin, suggesting that the two regions undergo a conformational change, becoming more rigid and likely becoming helical. ITC results showed that three of the seven residues in the junction region (residues 46-52) were very important in its association with beta-spectrin, in the following order: L49 > G46 > K48. In general, our results suggest that any mutations that affect the propensity of helical formation in the region spanning residues 17-52 in alpha-spectrin, or that affect hydrophobic clustering and/or salt-bridge stabilization of the bundled helices, would affect spectrin tetramer formation, and may lead to blood disorders.
我们使用半胱氨酸扫描、等温滴定量热法(ITC)和自旋标记电子顺磁共振方法,研究在有无β-血影蛋白C末端模型蛋白的情况下,α-血影蛋白N末端部分结构域螺旋C'侧翼的两个区域(残基14 - 20和残基44 - 54)。在没有β-血影蛋白的情况下,已知残基14 - 20和46 - 52是无结构的。在与β-血影蛋白结合后,第一个无结构区域部分残基(残基17 - 20)和第二个无结构连接区域大多数残基(残基46 - 52)的电子顺磁共振谱的反向线宽(ΔH(-1))以及低场峰与中心峰之间的宽度(aZ)的值发生了显著变化,这表明这两个区域发生了构象变化,变得更加刚性并且可能形成螺旋。等温滴定量热法结果表明,连接区域(残基46 - 52)的七个残基中有三个在其与β-血影蛋白的结合中非常重要,重要性顺序如下:L49 > G46 > K48。总体而言,我们的结果表明,任何影响α-血影蛋白中残基17 - 52区域螺旋形成倾向的突变,或者影响成束螺旋的疏水簇集和/或盐桥稳定性的突变,都会影响血影蛋白四聚体的形成,并可能导致血液疾病。