Nanoparticles Associate with Intrinsically Disordered RNA-Binding Proteins.

Romashchenko, Alexander V; Kan, Tsung-Wai; Petrovski, Dmitry V; Gerlinskaya, Ludmila A; Moshkin, Mikhail P; Moshkin, Yuri M · ACS Nano · 2017

basic_science · Level V

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Abstract

Nanoparticles are capable of penetrating cells, but little is known about the way they interact with intracellular proteome. Here we show that inorganic nanoparticles associate with low-complexity, intrinsically disordered proteins from HeLa cytosolic protein extracts in nondenaturing in vitro nanoparticle pull-down assays. Intrinsic protein disorder associates with structural mobility, suggesting that side-chain flexibility plays an important role in the driving of a protein to nanoparticle absorption. Disordered protein domains are often found in a diverse group of RNA-binding proteins. Consequently, the nanoparticle-associated proteomes were enriched in subunits of RNA-processing protein complexes. In turn, this indicates that within a cell, nanoparticles might interfere with protein synthesis triggering a range of cellular responses.

Medical subject headings