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首页> 外文期刊>Biochemistry >Structure of the cytoplasmic domain of erythrocyte band 3 hereditary spherocytosis variant P327R: Band 3 Tuscaloosa
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Structure of the cytoplasmic domain of erythrocyte band 3 hereditary spherocytosis variant P327R: Band 3 Tuscaloosa

机译:红细胞带3遗传性球形细胞增多症变体P327R的胞质域结构:带3 Tuscaloosa

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摘要

Previous studies have shown that a single P327R point mutation in the cytoplasmic domain of band 3 (cdb3) protein, known as band 3 Tuscaloosa, leads to a reduction in protein 4.2 content of the erythrocyte membrane and hemolytic anemia. Recent studies have shown that this point mutation does not dissociate the cdb3 dimer, nor does it lead to large-scale rearrangement of the protein structure (Bustos, S. P., and Reithmeier, R. A. F. (2006) Biochemistry 45, 1026-1034). To better define the structural changes in cdb3 that lead to the hemolytic anemia phenotype, site-directed spin labeling (SDSL), in combination with continuous wave electron paramagnetic resonance (EPR) and pulsed double electron-electron resonance (DEER) spectroscopies, has been employed in this study to compare the structure of the R327 variant with wild type P327 cdb3. It is confirmed that the P327R mutation does not dissociate the cdb3 dimer, nor does it change the spatial orientation of the two peripheral domains relative to the dimer interface. However, it does affect the packing of the C-terminal end of helix 10 of the dimerization arms in a subpopulation of cdb3 dimers, it leads to spectral changes at some residues in beta-strand 11 and in the N-terminal end of helix10, and it produces measurable spectral changes at other residues that are near the mutation site. The data indicate that the structural changes are subtle and are localized to one surface of the cdb3 dimer. The spectroscopic description of structural features of the P327R variant provides important clues about the location of one potential protein 4.2 binding surface on cdb3 as well as new insight into the structural basis of the membrane destabilization.
机译:先前的研究表明,乐队3(cdb3)蛋白的胞质结构域中的单个P327R点突变,即乐队3 Tuscaloosa,导致红细胞膜的蛋白4.2含量降低和溶血性贫血。最近的研究表明,该点突变不会使cdb3二聚体解离,也不会导致蛋白质结构的大规模重排(Bustos,S.P。和Reithmeier,R.AF。(2006)Biochemistry 45,1026-1034)。为了更好地定义cdb3中导致溶血性贫血表型的结构变化,结合了连续波电子顺磁共振(EPR)和脉冲双电子电子共振(DEER)光谱技术,进行了定点自旋标记(SDSL)。在这项研究中用于比较R327变体与野生型P327 cdb3的结构。可以确认,P327R突变不会使cdb3二聚体解离,也不会改变两个外围结构域相对于二聚体界面的空间方向。但是,它确实会影响cdb3二聚体亚群中二聚化臂螺旋10的C末端的堆积,并导致β链11中某些残基和螺旋10的N末端的光谱变化,并在突变位点附近的其他残基上产生可测量的光谱变化。数据表明结构变化是微妙的,并且局限于cdb3二聚体的一个表面。 P327R变体的结构特征的光谱描述提供了有关cdb3上一个潜在的蛋白质4.2结合表面的位置的重要线索,以及对膜失稳的结构基础的新见解。

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