Henzl Michael T, Tanner John J
Department of Biochemistry, University of Missouri-Columbia, Columbia, Missouri 65211, USA.
Protein Sci. 2008 Mar;17(3):431-8. doi: 10.1110/ps.073318308. Epub 2008 Jan 24.
Mammals express two parvalbumins-an alpha isoform and a beta isoform. In rat, the alpha-parvalbumin (alpha-PV) exhibits superior divalent ion affinity. For example, the standard free energies for Ca2+ binding differ by 5.5 kcal/mol in 0.15 M KCl (pH 7.4). High-resolution structures of the Ca2+-bound proteins provide little insight into this disparity, prompting a structural analysis of the apo-proteins. A recent analysis of rat beta-PV suggested that Ca2+ removal provokes substantial conformational changes-reorientation of the C, D, and E helices; reorganization of the hydrophobic core; reduced interdomain contact; and remodeling of the AB domain. The energetic penalty attendant to reversing these changes, it was suggested, could contribute to the attenuated divalent ion-binding signature of that protein. That hypothesis is supported by data presented herein, describing the solution structure and peptide backbone dynamics of Ca2+-free rat alpha-PV. In marked contrast to rat beta-PV, the apo- and Ca2+-loaded forms of the rat alpha isoform are quite similar. Significant structural differences appear to be confined to the loop regions of the molecule. This finding implies that the alpha-PV isoform enjoys elevated divalent ion affinity because the metal ion-binding events do not require major structural rearrangement and the concomitant sacrifice of binding energy.
哺乳动物表达两种小白蛋白——α异构体和β异构体。在大鼠中,α-小白蛋白(α-PV)表现出更强的二价离子亲和力。例如,在0.15M KCl(pH 7.4)中,Ca2+结合的标准自由能相差5.5千卡/摩尔。结合Ca2+的蛋白质的高分辨率结构对这种差异的解释有限,这促使人们对脱辅基蛋白进行结构分析。最近对大鼠β-PV的分析表明,去除Ca2+会引发大量构象变化——C、D和E螺旋的重新定向;疏水核心的重组;结构域间接触减少;以及AB结构域的重塑。有人提出,逆转这些变化所带来的能量代价可能导致该蛋白质二价离子结合特征减弱。本文所呈现的数据支持了这一假设,这些数据描述了无Ca2+的大鼠α-PV的溶液结构和肽主链动力学。与大鼠β-PV形成显著对比的是,大鼠α异构体的脱辅基形式和负载Ca2+的形式非常相似。明显的结构差异似乎局限于分子的环区。这一发现意味着α-PV异构体具有更高的二价离子亲和力,因为金属离子结合事件不需要重大的结构重排以及随之而来的结合能损失。