Molecular interactions contributing to FUS SYGQ LC-RGG phase separation and co-partitioning with RNA polymerase II heptads.

Publication Type Academic Article
Authors Murthy A, Tang W, Jovic N, Janke A, Seo D, Perdikari T, Mittal J, Fawzi N
Journal Nat Struct Mol Biol
Volume 28
Issue 11
Pagination 923-935
Date Published 11/10/2021
ISSN 1545-9985
Keywords Biomolecular Condensates, RNA Polymerase II, RNA-Binding Protein FUS
Abstract The RNA-binding protein FUS (Fused in Sarcoma) mediates phase separation in biomolecular condensates and functions in transcription by clustering with RNA polymerase II. Specific contact residues and interaction modes formed by FUS and the C-terminal heptad repeats of RNA polymerase II (CTD) have been suggested but not probed directly. Here we show how RGG domains contribute to phase separation with the FUS N-terminal low-complexity domain (SYGQ LC) and RNA polymerase II CTD. Using NMR spectroscopy and molecular simulations, we demonstrate that many residue types, not solely arginine-tyrosine pairs, form condensed-phase contacts via several interaction modes including, but not only sp2-π and cation-π interactions. In phases also containing RNA polymerase II CTD, many residue types form contacts, including both cation-π and hydrogen-bonding interactions formed by the conserved human CTD lysines. Hence, our data suggest a surprisingly broad array of residue types and modes explain co-phase separation of FUS and RNA polymerase II.
DOI 10.1038/s41594-021-00677-4
PubMed ID 34759379
PubMed Central ID PMC8654040
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