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红细胞血影蛋白四聚化区域的研究。

Studies of the erythrocyte spectrin tetramerization region.

作者信息

Park S, Mehboob S, Luo B H, Hurtuk M, Johnson M E, Fung L W

机构信息

Center for Pharmaceutical Biotechnology, University of Illinois at Chicago, Chicago, IL 60607, USA.

出版信息

Cell Mol Biol Lett. 2001;6(3):571-85.

Abstract

Human erythrocyte spectrin dimers associate at the N-terminal region of alpha spectrin (alpha N) and the C-terminal region of beta-spectrin (beta C) to form tetramers. We have prepared model peptides to study the tetramerization region. Based on phasing information obtained from enzyme digests, we prepared spectrin fragments consisting of the first 156 amino-acid residues and the first 368 amino-acid residues of alpha-spectrin (Sp alpha 1-156 and Sp alpha 1-368, respectively), and found that both peptides associate with a beta-spectrin model peptide, with an affinity similar to that found in alpha beta dimer tetramerization. Spin label EPR studies show that the region consisting of residues 21-46 in alpha-spectrin is helical even in the absence of its beta-partner. Multi-dimensional nuclear magnetic resonance studies of samples with and without a spin label attached to residue 154 show that Sp alpha 1-156 consists of four helices, with the first helix unassociated with the remaining three helices, which bundle to form a triple helical coiled coil bundle. A comparison of the structures of erythrocyte spectrin with other published structures of Drosophila and chicken brain spectrin is discussed. Circular dichroism studies show that the lone helix in Sp alpha-156 associates with helices in the beta peptide to form a coiled coil bundle. Based on NMR and CD results, we suggest that the helices in Sp alpha 1-156 exhibit a looser (frayed) conformation, and that the helices convert to a tighter conformation upon association with its beta-partner. This suggestion does not rule out possible conversion of a non-structured conformation to a structured conformation in various parts of the molecule upon association. Spectrin mutations at residues 28 and 45 of alpha-spectrin have been found in patients with hereditary elliptocytosis. NMR studies were also carried out on Sp alpha 1-156R28S, Sp alpha 1-156R45S and Sp alpha 1-156R45T. A comparison of the structures of Sp alpha 1-156 and Sp alpha 1-156R28S, Sp alpha 1-156R45S and Sp alpha 1-156R45T is discussed.

摘要

人类红细胞血影蛋白二聚体在α-血影蛋白的N端区域(αN)和β-血影蛋白的C端区域(βC)结合形成四聚体。我们制备了模型肽来研究四聚化区域。基于从酶切获得的相位信息,我们制备了分别由α-血影蛋白的前156个氨基酸残基和前368个氨基酸残基组成的血影蛋白片段(分别为Spα1-156和Spα1-368),并发现这两种肽都与β-血影蛋白模型肽结合,其亲和力与αβ二聚体四聚化中的亲和力相似。自旋标记电子顺磁共振研究表明,即使在没有其β伴侣的情况下,α-血影蛋白中由21-46位残基组成的区域也是螺旋状的。对在154位残基上连接或未连接自旋标记的样品进行的多维核磁共振研究表明,Spα1-156由四个螺旋组成,第一个螺旋与其余三个螺旋不相关,其余三个螺旋束形成一个三螺旋卷曲螺旋束。讨论了红细胞血影蛋白的结构与果蝇和鸡脑血影蛋白的其他已发表结构的比较。圆二色性研究表明,Spα-156中的单个螺旋与β肽中的螺旋结合形成卷曲螺旋束。基于核磁共振和圆二色性结果,我们认为Spα1-156中的螺旋呈现出较松散(磨损)的构象,并且这些螺旋在与其β伴侣结合时会转变为更紧密的构象。该建议并不排除在结合时分子各部分可能从非结构化构象转变为结构化构象。在遗传性椭圆形红细胞增多症患者中发现了α-血影蛋白28位和45位残基处的血影蛋白突变。还对Spα1-156R28S、Spα1-156R45S和Spα1-156R45T进行了核磁共振研究。讨论了Spα1-156与Spα1-156R28S、Spα1-156R45S和Spα1-156R45T的结构比较。

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