The Jackson Laboratory, Bar Harbor, ME, USA.
Blood. 2010 Mar 4;115(9):1804-14. doi: 10.1182/blood-2009-07-232199. Epub 2010 Jan 7.
Five spontaneous, allelic mutations in the alpha-spectrin gene, Spna1, have been identified in mice (spherocytosis [sph], sph(1J), sph(2J), sph(2BC), sph(Dem)). All cause severe hemolytic anemia. Here, analysis of 3 new alleles reveals previously unknown consequences of red blood cell (RBC) spectrin deficiency. In sph(3J), a missense mutation (H2012Y) in repeat 19 introduces a cryptic splice site resulting in premature termination of translation. In sph(Ihj), a premature stop codon occurs (Q1853Stop) in repeat 18. Both mutations result in markedly reduced RBC membrane spectrin content, decreased band 3, and absent beta-adducin. Reevaluation of available, previously described sph alleles reveals band 3 and adducin deficiency as well. In sph(4J), a missense mutation occurs in the C-terminal EF hand domain (C2384Y). Notably, an equally severe hemolytic anemia occurs despite minimally decreased membrane spectrin with normal band 3 levels and present, although reduced, beta-adducin. The severity of anemia in sph(4J) indicates that the highly conserved cysteine residue at the C-terminus of alpha-spectrin participates in interactions critical to membrane stability. The data reinforce the notion that a membrane bridge in addition to the classic protein 4.1-p55-glycophorin C linkage exists at the RBC junctional complex that involves interactions between spectrin, adducin, and band 3.
已在小鼠中鉴定出 alpha- spectrin 基因 Spna1 的 5 个自发、等位基因突变(球形细胞增多症 [sph]、sph(1J)、sph(2J)、sph(2BC)、sph(Dem))。所有这些突变均导致严重的溶血性贫血。在此,对 3 个新等位基因的分析揭示了红细胞(RBC) spectrin 缺乏的先前未知后果。在 sph(3J)中,重复 19 中的错义突变(H2012Y)引入了一个隐蔽的剪接位点,导致翻译过早终止。在 sph(Ihj)中,重复 18 中发生了过早终止密码子(Q1853Stop)。这两种突变均导致 RBC 膜 spectrin 含量明显减少、带 3 减少和 beta- 肌动蛋白缺失。对现有、先前描述的 sph 等位基因的重新评估显示,带 3 和肌动蛋白缺失也是如此。在 sph(4J)中,C 末端 EF 手结构域(C2384Y)发生错义突变。值得注意的是,尽管膜 spectrin 减少程度轻微,带 3 水平正常且存在,但 beta- 肌动蛋白减少,仍会发生严重的溶血性贫血。sph(4J)中贫血的严重程度表明,alpha-spectrin C 末端高度保守的半胱氨酸残基参与了对膜稳定性至关重要的相互作用。这些数据强化了这样一种观点,即在 RBC 连接复合体中除了经典的 4.1-p55-糖蛋白 C 连接之外,还存在一个膜桥,该桥涉及 spectrin、肌动蛋白和带 3 之间的相互作用。