Intrinsic disorder in scaffold proteins: Getting more from less

被引:230
作者
Cortese, Marc S. [1 ]
Uversky, Vladimir N. [1 ,2 ,3 ]
Dunker, A. Keith [1 ]
机构
[1] Indiana Univ, Sch Med, Dept Biochem & Mol Biol, Ctr Computat Biol & Bioinformat, Indianapolis, IN 46202 USA
[2] Russian Acad Sci, Inst Biol Instrumentat, Pushchino 142290, Moscow Region, Russia
[3] Indiana Univ, Sch Med, Inst Intrinsically Disordered Prot Res, Indianapolis, IN 46202 USA
基金
美国国家卫生研究院;
关键词
intrinsic disorder; scaffold; signaling;
D O I
10.1016/j.pbiomolbio.2008.05.007
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Regulation, recognition and cell signaling involve the coordinated actions of many players. Signaling scaffolds, with their ability to bring together proteins belonging to common and/or interlinked pathways, play crucial roles in orchestrating numerous events by coordinating specific interactions among signaling proteins. This review examines the roles of intrinsic disorder (11)) in signaling scaffold protein function. Several well-characterized scaffold Proteins With Structurally and functionally characterized ID regions are used here to illustrate the importance of ID for scaffolding function. These examples include scaffolds that are mostly disordered, only partially disordered or those in which the ID resides in a scaffold partner. Specific scaffolds discussed include RNase, voltage-activated potassium channels, axin, BRCA1, GSK-3 beta, p53, Ste5, titin, Fus3, BRCA1, MAP2, D-AKAP2 and AKAP250. Among the mechanisms discussed are: molecular recognition features, fly-casting, ease of encounter complex formation, structural isolation of partners, modulation of interactions between bound partners, masking of intramolecular interaction sites, maximized interaction Surface per residue, toleration of high evolutionary rates, binding site overlap, allosteric modification, palindromic binding, reduced constraints for alternative splicing, efficient regulation via posttranslational modification, efficient regulation via rapid degradation, protection of normally solvent-exposed sites, enhancing the plasticity of interaction and molecular crowding. We conclude that ID can enhance scaffold function by a diverse array of mechanisms. In other words, scaffold proteins utilize several ID-facilitated mechanisms to enhance function, and by doing so, get more functionality from less Structure. (c) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:85 / 106
页数:22
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