Cookies

We use cookies to ensure that we give you the best experience on our website. By continuing to browse this repository, you give consent for essential cookies to be used. You can read more about our Privacy and Cookie Policy.


Durham Research Online
You are in:

Structure and mechanism of dimer-monomer transition of a plant poly(A)-binding protein upon RNA interaction : insights into its poly(A) tail assembly.

Domingues, M.N. and Sforça, M.L. and Soprano, A.S. and Lee, J. and Campos Brasil de Souza, T. de A. and Cassago, A. and Portugal, R.V. and de Mattos Zeri, A.C. and Murakami, M.T. and Sadanandom, A. and de Oliveira, P.S. and Benedetti, C.E. (2015) 'Structure and mechanism of dimer-monomer transition of a plant poly(A)-binding protein upon RNA interaction : insights into its poly(A) tail assembly.', Journal of molecular biology., 427 (15). pp. 2491-2506.

Abstract

Poly(A)-binding proteins (PABPs) play crucial roles in mRNA biogenesis, stability, transport and translational control in most eukaryotic cells. Although animal PABPs are well-studied proteins, the biological role, three-dimensional structure and RNA-binding mode of plant PABPs remain largely uncharacterized. Here, we report the structural features and RNA-binding mode of a Citrus sinensis PABP (CsPABPN1). CsPABPN1 has a domain architecture of nuclear PABPs (PABPNs) with a single RNA recognition motif (RRM) flanked by an acidic N-terminus and a GRPF-rich C-terminus. The RRM domain of CsPABPN1 displays virtually the same three-dimensional structure and poly(A)-binding mode of animal PABPNs. However, while the CsPABPN1 RRM domain specifically binds poly(A), the full-length protein also binds poly(U). CsPABPN1 localizes to the nucleus of plant cells and undergoes a dimer–monomer transition upon poly(A) interaction. We show that poly(A) binding by CsPABPN1 begins with the recognition of the RNA-binding sites RNP1 and RNP2, followed by interactions with residues of the β2 strands, which stabilize the dimer, thus leading to dimer dissociation. Like human PABPN1, CsPABPN1 also seems to form filaments in the presence of poly(A). Based on these data, we propose a structural model in which contiguous CsPABPN1 RRM monomers wrap around the RNA molecule creating a superhelical structure that could not only shield the poly(A) tail but also serve as a scaffold for the assembly of additional mRNA processing factors.

Item Type:Article
Keywords:CsPABPN1, Poly(A)-binding protein, RRM domain, Citrus sinensis, Dimer–monomer transition.
Full text:(AM) Accepted Manuscript
Available under License - Creative Commons Attribution Non-commercial No Derivatives.
Download PDF
(1594Kb)
Full text:(AM) Accepted Manuscript
Available under License - Creative Commons Attribution Non-commercial No Derivatives.
Download PDF (Supplementary information)
(1137Kb)
Status:Peer-reviewed
Publisher Web site:https://doi.org/10.1016/j.jmb.2015.05.017
Publisher statement:© 2015 This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/
Date accepted:19 May 2015
Date deposited:26 June 2019
Date of first online publication:31 July 2015
Date first made open access:No date available

Save or Share this output

Export:
Export
Look up in GoogleScholar