The Center for Systems and Computational Biology and Molecular and Cellular Oncogenesis Program, The Wistar Institute, Philadelphia, PA;
Blood. 2013 Oct 24;122(17):3045-53. doi: 10.1182/blood-2013-02-487702. Epub 2013 Aug 23.
Hereditary elliptocytosis (HE) and hereditary pyropoikilocytosis (HPP) are common disorders of erythrocyte shape primarily because of mutations in spectrin. The most common HE/HPP mutations are located distant from the critical αβ-spectrin tetramerization site, yet still interfere with formation of spectrin tetramers and destabilize the membrane by unknown mechanisms. To address this question, we studied the common HE-associated mutation, αL260P, in the context of a fully functional mini-spectrin. The mutation exhibited wild-type tetramer binding in univalent binding assays, but reduced binding affinity in bivalent-binding assays. Biophysical analyses demonstrated the mutation-containing domain was only modestly structurally destabilized and helical content was not significantly changed. Gel filtration analysis of the αL260P mini-spectrin indicated more compact structures for dimers and tetramers compared with wild-type. Chemical crosslinking showed structural changes in the mutant mini-spectrin dimer were primarily restricted to the vicinity of the αL260P mutation and indicated large conformational rearrangements of this region. These data indicate the mutation increased the stability of the closed dimer state, thereby reducing tetramer assembly and resulting in membrane destabilization. These results reveal a novel mechanism of erythrocyte membrane destabilization that could contribute to development of therapeutic interventions for mutations in membrane proteins containing spectrin-type domains associated with inherited disease.
遗传性椭圆形红细胞增多症 (HE) 和遗传性热异形红细胞增多症 (HPP) 是常见的红细胞形态异常疾病,主要是由于血影蛋白突变引起的。最常见的 HE/HPP 突变位于远离关键的αβ-血影蛋白四聚体化位点,但仍通过未知机制干扰血影蛋白四聚体的形成并使膜不稳定。为了解决这个问题,我们在一个功能完整的小血影蛋白背景下研究了常见的与 HE 相关的突变,即αL260P。该突变在单价结合测定中表现出野生型四聚体结合,但在双价结合测定中结合亲和力降低。生物物理分析表明,含有突变的结构域仅适度地不稳定,且螺旋含量没有显著变化。与野生型相比,αL260P 小血影蛋白的凝胶过滤分析表明二聚体和四聚体的结构更为紧凑。化学交联显示突变型小血影蛋白二聚体的结构变化主要局限于αL260P 突变附近,表明该区域发生了大的构象重排。这些数据表明该突变增加了封闭二聚体状态的稳定性,从而减少了四聚体组装,导致膜不稳定。这些结果揭示了一种新的红细胞膜不稳定机制,可能有助于开发针对与遗传性疾病相关的包含血影蛋白样结构域的膜蛋白突变的治疗干预措施。