Franceschini Stefano, Ilari Andrea, Verzili Daniela, Zamparelli Carlotta, Antaramian Anaid, Rueda Angélica, Valdivia Hector H, Chiancone Emilia, Colotti Gianni
CNR Institute of Molecular Biology and Pathology, University Sapienza, P.le A.Moro 5, 00185 Rome, Italy.
FASEB J. 2008 Jan;22(1):295-306. doi: 10.1096/fj.07-8988com. Epub 2007 Aug 15.
The penta-EF hand protein sorcin participates in the modulation of Ca2+-induced calcium-release in the heart through the interaction with several Ca2+ channels such as the ryanodine receptor. The modulating activity is impaired in the recently described natural F112L mutant. The F112 residue is located at the end of the D helix next to Asp113, one of the calcium ligands in the EF3 hand endowed with the highest affinity for the metal. The F112L-sorcin X-ray crystal structure at 2.5 A resolution displays marked alterations in the EF3 hand, where the hydrogen bonding network established by Phe112 is disrupted, and in the EF1 region, which is tilted in both monomers that give rise to the dimer, the stable form of the molecule. In turn, the observed tilt is indicative of an increased flexibility of the N-terminal part of the molecule. The structural alterations result in a 6-fold decrease in calcium affinity with respect to the wild-type protein and to an even larger impairment of the interaction with annexin VII and of the ability of sorcin to interact with and inhibit ryanodine receptors. These results provide a plausible structural and functional framework that helps elucidate the phenotypic alterations of mice overexpressing F112L-sorcin.
五聚EF手蛋白索肌动蛋白通过与多种钙通道(如兰尼碱受体)相互作用,参与心脏中钙诱导的钙释放调节。在最近描述的天然F112L突变体中,这种调节活性受损。F112残基位于D螺旋末端,紧邻Asp113,Asp113是EF3手中对金属具有最高亲和力的钙配体之一。分辨率为2.5埃的F112L-索肌动蛋白X射线晶体结构显示,EF3手有明显变化,其中由Phe112建立的氢键网络被破坏,在EF1区域,形成二聚体(分子的稳定形式)的两个单体中该区域都发生倾斜。反过来,观察到的倾斜表明分子N端部分的灵活性增加。结构改变导致与野生型蛋白相比钙亲和力降低6倍,与膜联蛋白VII的相互作用以及索肌动蛋白与兰尼碱受体相互作用并抑制其活性的能力也受到更大损害。这些结果提供了一个合理的结构和功能框架,有助于阐明过表达F112L-索肌动蛋白的小鼠的表型改变。