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The present status of erythrocyte spectrin structure: the 106-residue repetitive structure is a basic feature of an entire class of proteins.

作者信息

Speicher D W

出版信息

J Cell Biochem. 1986;30(3):245-58. doi: 10.1002/jcb.240300306.

DOI:10.1002/jcb.240300306
PMID:3517024
Abstract

Spectrin, the major component of the erythroid membrane skeleton, is a long, asymmetrical rodlike protein that interacts with several other proteins to form a two-dimensional membrane skeleton. Progress in several laboratories over the past few years including substantial partial peptide and nucleotide sequence determination has greatly enhanced our knowledge of the structural properties of this large molecule (heterodimer = 465,000 daltons). The alpha and beta subunits are homologous with approximately 30% identity. They are aligned in an antiparallel side-to-side orientation with the amino- and carboxy-termini near opposite physical ends of the molecule. The predominant structural feature elucidated from sequencing this large molecule is the nearly universal occurrence in both subunits of a single type of repetitive structure. The periodicity of this homologous structure is exactly 106 amino acid residues. As many as 36 homologous, but nonidentical, repeats exist and comprise more than 90% of the mass of the heterodimer. Each of these repetitive units is folded into a triple-stranded structure that is highly helical. Peptide maps, antibody crossreactivity, peptide sequence analysis, and more recently nucleic acid sequences have defined several major properties of the erythroid molecule and related proteins in other tissues. Tissue-specific spectrins have the same 106-residue repetitive structure and show sequence homology to erythroid spectrin.

摘要

相似文献

1
The present status of erythrocyte spectrin structure: the 106-residue repetitive structure is a basic feature of an entire class of proteins.
J Cell Biochem. 1986;30(3):245-58. doi: 10.1002/jcb.240300306.
2
Structural and functional features of the alpha-1 domain from human erythrocyte spectrin.
Prog Clin Biol Res. 1984;165:441-56.
3
From the spectrin gene to the assembly of the membrane skeleton.从血影蛋白基因到膜骨架的组装
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4
Comprehensive analysis of all triple helical repeats in beta-spectrins reveals patterns of selective evolutionary conservation.对β-血影蛋白中所有三螺旋重复序列的综合分析揭示了选择性进化保守模式。
Cell Mol Biol Lett. 2003;8(1):195-214.
5
Evolution of the spectrin repeat.血影蛋白重复序列的进化。
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Structural analysis of the alpha N-terminal region of erythroid and nonerythroid spectrins by small-angle X-ray scattering.通过小角X射线散射对红细胞和非红细胞血影蛋白α N端区域进行结构分析。
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7
Solution structure of the spectrin repeat: a left-handed antiparallel triple-helical coiled-coil.血影蛋白重复序列的溶液结构:一种左手反平行三螺旋卷曲螺旋结构。
J Mol Biol. 1997 Oct 31;273(3):740-51. doi: 10.1006/jmbi.1997.1344.
8
Phosphatidylserine binding sites in erythroid spectrin: location and implications for membrane stability.红细胞血影蛋白中的磷脂酰丝氨酸结合位点:位置及其对膜稳定性的影响
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9
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10
Erythrocyte spectrin is comprised of many homologous triple helical segments.红细胞血影蛋白由许多同源的三螺旋片段组成。
Nature. 1984;311(5982):177-80. doi: 10.1038/311177a0.

引用本文的文献

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2
A central region of Ku80 mediates interaction with Ku70 in vivo.Ku80的一个中央区域在体内介导与Ku70的相互作用。
Nucleic Acids Res. 1998 Feb 15;26(4):974-9. doi: 10.1093/nar/26.4.974.
3
A tethered adhesive particle model of two-dimensional elasticity and its application to the erythrocyte membrane.二维弹性的束缚黏附粒子模型及其在红细胞膜中的应用。
Biophys J. 1996 Feb;70(2):857-67. doi: 10.1016/S0006-3495(96)79628-5.
4
Interaction of tacrine and velnacrine with neocortical synaptosomal membranes: relevance to Alzheimer's disease.他克林和韦那克林与新皮质突触体膜的相互作用:与阿尔茨海默病的相关性。
Neurochem Res. 1993 Sep;18(9):989-94. doi: 10.1007/BF00966758.
5
Comparison of nonerythroid alpha-spectrin genes reveals strict homology among diverse species.非红细胞α-血影蛋白基因的比较揭示了不同物种之间的严格同源性。
Mol Cell Biol. 1988 Jan;8(1):1-9. doi: 10.1128/mcb.8.1.1-9.1988.
6
Unequal synthesis and differential degradation of alpha and beta spectrin during murine erythroid differentiation.小鼠红细胞分化过程中α和β血影蛋白的合成不均及降解差异。
J Cell Biol. 1988 Aug;107(2):413-26. doi: 10.1083/jcb.107.2.413.
7
Primary structure of the brain alpha-spectrin.大脑α-血影蛋白的一级结构。
J Cell Biol. 1989 Jan;108(1):79-93. doi: 10.1083/jcb.108.1.79.
8
Elasticity of the human red cell membrane skeleton. Effects of temperature and denaturants.人类红细胞膜骨架的弹性。温度和变性剂的影响。
Biophys J. 1989 Feb;55(2):255-62. doi: 10.1016/S0006-3495(89)82800-0.
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Sequence similarity of the amino-terminal domain of Drosophila beta spectrin to alpha actinin and dystrophin.果蝇β-血影蛋白氨基末端结构域与α-辅肌动蛋白和肌营养不良蛋白的序列相似性。
J Cell Biol. 1989 Oct;109(4 Pt 1):1633-41. doi: 10.1083/jcb.109.4.1633.
10
The Dictyostelium gelation factor shares a putative actin binding site with alpha-actinins and dystrophin and also has a rod domain containing six 100-residue motifs that appear to have a cross-beta conformation.盘基网柄菌凝胶因子与α-辅肌动蛋白和肌营养不良蛋白共享一个假定的肌动蛋白结合位点,并且还具有一个杆状结构域,该结构域包含六个100个残基的基序,这些基序似乎具有交叉β构象。
J Cell Biol. 1989 Aug;109(2):607-18. doi: 10.1083/jcb.109.2.607.