Structural basis of dimerization and nucleic acid binding of human DBHS proteins NONO and PSPC1

Author:

Knott Gavin J1ORCID,Chong Yee Seng1ORCID,Passon Daniel M1ORCID,Liang Xue-hai2ORCID,Deplazes Evelyne3ORCID,Conte Maria R4ORCID,Marshall Andrew C1ORCID,Lee Mihwa5ORCID,Fox Archa H16ORCID,Bond Charles S1ORCID

Affiliation:

1. School of Molecular Sciences, The University of Western Australia, Crawley, WA 6009, Australia

2. Department of Core Antisense Research, IONIS Pharmaceuticals Inc., 2855 Gazelle Court, Carlsbad, CA 92010, USA

3. School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Qld 4072, Australia

4. Randall Centre for Cell and Molecular Biophysics, King’s College London, New Hunt’s House, Guy’s Campus, London SE1 1UL, UK

5. Department of Biochemistry and Genetics, La Trobe Institute for Molecular Science, La Trobe University, Bundoora, Vic 3086, Australia

6. School of Human Sciences, The University of Western Australia, Crawley, WA 6009, Australia

Abstract

Abstract The Drosophila behaviour/human splicing (DBHS) proteins are a family of RNA/DNA binding cofactors liable for a range of cellular processes. DBHS proteins include the non-POU domain-containing octamer-binding protein (NONO) and paraspeckle protein component 1 (PSPC1), proteins capable of forming combinatorial dimers. Here, we describe the crystal structures of the human NONO and PSPC1 homodimers, representing uncharacterized DBHS dimerization states. The structures reveal a set of conserved contacts and structural plasticity within the dimerization interface that provide a rationale for dimer selectivity between DBHS paralogues. In addition, solution X-ray scattering and accompanying biochemical experiments describe a mechanism of cooperative RNA recognition by the NONO homodimer. Nucleic acid binding is reliant on RRM1, and appears to be affected by the orientation of RRM1, influenced by a newly identified ‘β-clasp’ structure. Our structures shed light on the molecular determinants for DBHS homo- and heterodimerization and provide a basis for understanding how DBHS proteins cooperatively recognize a broad spectrum of RNA targets.

Funder

National Health and Medical Research Council

Australian Research Council

University of Western Australia

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference77 articles.

1. The DBHS proteins SFPQ, NONO and PSPC1: a multipurpose molecular scaffold;Knott;Nucleic Acids Res.,2016

2. PSF: nuclear busy-body or nuclear facilitator?;Yarosh;Wiley Interdiscip. Rev. RNA,2015

3. Effects of a novel long noncoding RNA, lncUSMycN, on N-Myc expression and neuroblastoma progression;Liu;J. Natl. Cancer Inst.,2014

4. Pro-oncogenic roles of HLXB9 protein in insulinoma cells through interaction with Nono protein and down-regulation of the c-Met inhibitor Cblb (Casitas B-lineage lymphoma b);Desai,2015

5. p54/NONO regulates lipid metabolism and breast cancer growth through SREBP-1A;Zhu;Oncogene,2016

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