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Atomic Structures of Low-complexity Protein Segments Reveal Kinked β Sheets That Assemble Networks

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Journal Science
Specialty Science
Date 2018 Feb 14
PMID 29439243
Citations 215
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Abstract

Subcellular membraneless assemblies are a reinvigorated area of study in biology, with spirited scientific discussions on the forces between the low-complexity protein domains within these assemblies. To illuminate these forces, we determined the atomic structures of five segments from protein low-complexity domains associated with membraneless assemblies. Their common structural feature is the stacking of segments into kinked β sheets that pair into protofilaments. Unlike steric zippers of amyloid fibrils, the kinked sheets interact weakly through polar atoms and aromatic side chains. By computationally threading the human proteome on our kinked structures, we identified hundreds of low-complexity segments potentially capable of forming such interactions. These segments are found in proteins as diverse as RNA binders, nuclear pore proteins, and keratins, which are known to form networks and localize to membraneless assemblies.

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References
1.
Murakami T, Qamar S, Lin J, Kaminski Schierle G, Rees E, Miyashita A . ALS/FTD Mutation-Induced Phase Transition of FUS Liquid Droplets and Reversible Hydrogels into Irreversible Hydrogels Impairs RNP Granule Function. Neuron. 2015; 88(4):678-90. PMC: 4660210. DOI: 10.1016/j.neuron.2015.10.030. View

2.
Uversky V, Oldfield C, Dunker A . Intrinsically disordered proteins in human diseases: introducing the D2 concept. Annu Rev Biophys. 2008; 37:215-46. DOI: 10.1146/annurev.biophys.37.032807.125924. View

3.
Emsley P, Lohkamp B, Scott W, Cowtan K . Features and development of Coot. Acta Crystallogr D Biol Crystallogr. 2010; 66(Pt 4):486-501. PMC: 2852313. DOI: 10.1107/S0907444910007493. View

4.
Toretsky J, Wright P . Assemblages: functional units formed by cellular phase separation. J Cell Biol. 2014; 206(5):579-88. PMC: 4151146. DOI: 10.1083/jcb.201404124. View

5.
Kumari B, Kumar R, Kumar M . Low complexity and disordered regions of proteins have different structural and amino acid preferences. Mol Biosyst. 2014; 11(2):585-94. DOI: 10.1039/c4mb00425f. View