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Paraspeckle subnuclear bodies depend on dynamic heterodimerisation of DBHS RNA-binding proteins via their structured domains

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posted on 2023-07-10, 05:17 authored by PW Lee, AC Marshall, GJ Knott, S Kobelke, L Martelotto, E Cho, PJ McMillan, Mihwa LeeMihwa Lee, CS Bond, AH Fox
RNA-binding proteins of the DBHS (Drosophila Behavior Human Splicing) family, NONO, SFPQ, and PSPC1 have numerous roles in genome stability and transcriptional and posttranscriptional regulation. Critical to DBHS activity is their recruitment to distinct subnuclear locations, for example, paraspeckle condensates, where DBHS proteins bind to the long noncoding RNA NEAT1 in the first essential step in paraspeckle formation. To carry out their diverse roles, DBHS proteins form homodimers and heterodimers, but how this dimerization influences DBHS localization and function is unknown. Here, we present an inducible GFP-NONO stable cell line and use it for live-cell 3D-structured illumination microscopy, revealing paraspeckles with dynamic, twisted elongated structures. Using siRNA knockdowns, we show these labeled paraspeckles consist of GFP-NONO/endogenous SFPQ dimers and that GFP-NONO localization to paraspeckles depends on endogenous SFPQ. Using purified proteins, we confirm that partner swapping between NONO and SFPQ occurs readily in vitro. Crystallographic analysis of the NONO-SFPQ heterodimer reveals conformational differences to the other DBHS dimer structures, which may contribute to partner preference, RNA specificity, and subnuclear localization. Thus overall, our study suggests heterodimer partner availability is crucial for NONO subnuclear distribution and helps explain the complexity of both DBHS protein and paraspeckle dynamics through imaging and structural approaches.

Funding

This work was funded by the Australian Research Council (FT180100204 to A. H. F. and DP160102435 to C. S. B. and A H. F.) and the National Health and Medical Research Council of Australia (APP1147496 to C. S. B. and A. H. F.) . This research was made possible by the Clifford Bradley Robertson and Gwendoline Florence Anne Robertson Research Endowment Fund, established through Dr Glen Robertson's bequest to The University of Western Australia (to A. M.) .

History

Publication Date

2022-11-01

Journal

Journal of Biological Chemistry

Volume

298

Issue

11

Article Number

102563

Pagination

15p.

Publisher

Elsevier

ISSN

0021-9258

Rights Statement

© 2022 The Authors. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).