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Important residue (G46) in erythroid spectrin tetramer formation.

机译:红血球蛋白四聚体形成中的重要残基(G46)。

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摘要

Spectrin tetramerization is important for the erythrocyte to maintain its unique shape, elasticity and deformability. We used recombinant model proteins to show the importance of one residue (G46) in the erythroid alpha-spectrin junction region that affects spectrin tetramer formation. The G46 residue in the erythroid spectrin N-terminal junction region is the only residue that differs from that in non-erythroid spectrin. The corresponding residue is R37. We believe that this difference may be, at least in part, responsible for the 15-fold difference in the equilibrium constants of erythroid and non-erythroid tetramer formation. In this study, we replaced the Gly residue with Ala, Arg or Glu residues in an erythroid alpha-spectrin model protein to give G46A, G46R or G46E, respectively. We found that their association affinities with a beta-spectrin model protein were quite different from each other. G46R exhibited a 10-fold increase and G46E exhibited a 16-fold decrease, whereas G46A showed little difference, when compared with the wild type. The thermal and urea denaturation experiments showed insignificant structural change in G46R. Thus, the differences in affinity were due to differences in local, specific interactions, rather than conformational differences in these variants. An intra-helical salt bridge in G46R may stabilize the partial domain single helix in alpha-spectrin, Helix C', to allow a more stable helical bundling in the alphabeta complex in spectrin tetramers. These results not only showed the importance of residue G46 in erythroid alpha-spectrin, but also provided insights toward the differences in association affinity between erythroid and non-erythroid spectrin to form spectrin tetramers.
机译:血影蛋白四聚化对于维持红细胞的独特形状,弹性和可变形性很重要。我们使用重组模型蛋白来显示影响血红蛋白四聚体形成的类红体α-血影蛋白连接区中一个残基(G46)的重要性。红系血影蛋白N末端连接区中的G46残基是唯一与非红血球血影蛋白中的G46残基不同的残基。相应的残基是R37。我们认为,这种差异可能至少部分是造成类红血球和非类红血球四聚体形成的平衡常数相差15倍的原因。在这项研究中,我们用类红血球α-血影蛋白模型蛋白中的Ala,Arg或Glu残基替换了Gly残基,分别得到G46A,G46R或G46E。我们发现它们与β-血影蛋白模型蛋白的亲和力彼此之间存在很大差异。与野生型相比,G46R表现出10倍的增加,G46E表现出16倍的下降,而G46A表现出很小的差异。热和尿素变性实验表明,G46R的结构变化不明显。因此,亲和力的差异是由于局部特异性相互作用的差异,而不是这些变异体的构象差异。 G46R中的螺旋内盐桥可稳定α-血影蛋白中的部分结构域单个螺旋,即螺旋C',以使血影蛋白四聚体的字母复合物中的螺旋束更稳定。这些结果不仅表明了类红藻α-血红蛋白中G46残基的重要性,而且还为了解类红藻和非类红血影蛋白形成血红蛋白四聚体之间的缔合亲和力差异提供了见识。

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