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蛋白质4.1的血影蛋白-肌动蛋白结合结构域的机械化学:三元复合物相互作用、膜结合、网络整合、结构强化。

Mechanochemistry of protein 4.1's spectrin-actin-binding domain: ternary complex interactions, membrane binding, network integration, structural strengthening.

作者信息

Discher D E, Winardi R, Schischmanoff P O, Parra M, Conboy J G, Mohandas N

机构信息

Joint Graduate Group in Bioengineering, University of California, Berkeley 94143, USA.

出版信息

J Cell Biol. 1995 Aug;130(4):897-907. doi: 10.1083/jcb.130.4.897.

DOI:10.1083/jcb.130.4.897
PMID:7642705
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2199952/
Abstract

Mechanical strength of the red cell membrane is dependent on ternary interactions among the skeletal proteins, spectrin, actin, and protein 4.1. Protein 4.1's spectrin-actin-binding (SAB) domain is specified by an alternatively spliced exon encoding 21 amino acid (aa) and a constitutive exon encoding 59 aa. A series of truncated SAB peptides were engineered to define the sequences involved in spectrin-actin interactions, and also membrane strength. Analysis of in vitro supramolecular assemblies showed that gelation activity of SAB peptides correlates with their ability to recruit a critical amount of spectrin into the complex to cross-link actin filaments. Also, several SAB peptides appeared to exhibit a weak, cooperative actin-binding activity which mapped to the first 26 residues of the constitutive 59 aa. Fluorescence-imaged microdeformation was used to show SAB peptide integration into the elastic skeletal network of spectrin, actin, and protein 4.1. In situ membrane-binding and membrane-strengthening abilities of the SAB peptides correlated with their in vitro gelation activity. The findings imply that sites for strong spectrin binding include both the alternative 21-aa cassette and a conserved region near the middle of the 59 aa. However, it is shown that only weak SAB affinity is necessary for physiologically relevant action. Alternatively spliced exons can thus translate into strong modulation of specific protein interactions, economizing protein function in the cell without, in and of themselves, imparting unique function.

摘要

红细胞膜的机械强度取决于骨架蛋白、血影蛋白、肌动蛋白和蛋白4.1之间的三元相互作用。蛋白4.1的血影蛋白-肌动蛋白结合(SAB)结构域由一个编码21个氨基酸(aa)的可变剪接外显子和一个编码59个aa的组成型外显子确定。设计了一系列截短的SAB肽来确定参与血影蛋白-肌动蛋白相互作用以及膜强度的序列。体外超分子组装分析表明,SAB肽的凝胶化活性与其将关键量的血影蛋白募集到复合物中以交联肌动蛋白丝的能力相关。此外,几种SAB肽似乎表现出弱的、协同的肌动蛋白结合活性,其定位在组成型59个aa的前26个残基处。荧光成像微变形用于显示SAB肽整合到血影蛋白、肌动蛋白和蛋白4.1的弹性骨架网络中。SAB肽的原位膜结合和膜强化能力与其体外凝胶化活性相关。这些发现表明,血影蛋白强结合位点包括21个aa的可变盒式结构和59个aa中部附近的一个保守区域。然而研究表明,生理相关作用仅需要弱的SAB亲和力。因此,可变剪接外显子可以转化为对特定蛋白质相互作用的强调节,在不赋予细胞独特功能的情况下节省细胞中的蛋白质功能。

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本文引用的文献

1
Mechanochemistry of the alternatively spliced spectrin-actin binding domain in membrane skeletal protein 4.1.膜骨架蛋白4.1中可变剪接的血影蛋白-肌动蛋白结合结构域的机械化学
J Biol Chem. 1993 Apr 5;268(10):7186-95.
2
Genomic structure of the locus encoding protein 4.1. Structural basis for complex combinational patterns of tissue-specific alternative RNA splicing.编码蛋白4.1的基因座的基因组结构。组织特异性可变RNA剪接复杂组合模式的结构基础。
J Biol Chem. 1993 Feb 15;268(5):3758-66.
3
Tissue-specific alternative splicing of protein 4.1 inserts an exon necessary for formation of the ternary complex with erythrocyte spectrin and F-actin.蛋白质4.1的组织特异性可变剪接插入了一个外显子,该外显子是与红细胞血影蛋白和F-肌动蛋白形成三元复合物所必需的。
Blood. 1993 Oct 15;82(8):2558-63.
4
Evidence that red blood cell protein p55 may participate in the skeleton-membrane linkage that involves protein 4.1 and glycophorin C.有证据表明红细胞蛋白p55可能参与涉及蛋白4.1和血型糖蛋白C的骨架-膜连接。
Blood. 1993 Aug 15;82(4):1323-7.
5
Absence of high-affinity band 4.1 binding sites from membranes of glycophorin C- and D-deficient (Leach phenotype) erythrocytes.缺乏血型糖蛋白C和D(利什表型)缺陷的红细胞膜上的高亲和力带4.1结合位点。
Blood. 1994 Feb 15;83(4):1102-8.
6
Characterization of an F-actin-binding domain in the cytoskeletal protein vinculin.细胞骨架蛋白纽蛋白中F-肌动蛋白结合结构域的特性分析。
J Cell Biol. 1994 Sep;126(5):1231-40. doi: 10.1083/jcb.126.5.1231.
7
Molecular maps of red cell deformation: hidden elasticity and in situ connectivity.红细胞变形的分子图谱:隐藏的弹性和原位连通性。
Science. 1994 Nov 11;266(5187):1032-5. doi: 10.1126/science.7973655.
8
Protein 4.1 deficiency associated with an altered binding to the spectrin-actin complex of the red cell membrane skeleton.与红细胞膜骨架的血影蛋白-肌动蛋白复合物结合改变相关的蛋白质4.1缺乏症。
J Clin Invest. 1994 Oct;94(4):1651-6. doi: 10.1172/JCI117508.
9
Mechanical properties of the red cell membrane in relation to molecular structure and genetic defects.红细胞膜的力学性质与分子结构及遗传缺陷的关系
Annu Rev Biophys Biomol Struct. 1994;23:787-818. doi: 10.1146/annurev.bb.23.060194.004035.
10
Purification of muscle actin.肌肉肌动蛋白的纯化
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