Article ID Journal Published Year Pages File Type
8319393 Current Opinion in Structural Biology 2018 10 Pages PDF
Abstract
Conventional wisdom has it that proteins fold and assemble into definite structures, and that this defines their function. Glycosaminoglycans (GAGs) are different. In most cases the structures they form have a low degree of order, even when interacting with proteins. Here, we discuss how physical features common to all GAGs - hydrophilicity, charge, linearity and semi-flexibility - underpin the overall properties of GAG-rich matrices. By integrating soft matter physics concepts (e.g. polymer brushes and phase separation) with our molecular understanding of GAG-protein interactions, we can better comprehend how GAG-rich matrices assemble, what their properties are, and how they function. Taking perineuronal nets (PNNs) - a GAG-rich matrix enveloping neurons - as a relevant example, we propose that microphase separation determines the holey PNN anatomy that is pivotal to PNN functions.
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Life Sciences Biochemistry, Genetics and Molecular Biology Biochemistry
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