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      Caenorhabditis elegans NONO‐1: Insights into DBHS protein structure, architecture, and function

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          Abstract

          Members of the Drosophila behavior/human splicing (DBHS) protein family have been characterized in the vertebrates Homo sapiens and Mus musculus, and the invertebrates Drosophila melanogaster and Chironomus tentans. Collectively, both vertebrate and invertebrate DBHS proteins function throughout gene regulation, largely but not always, within the nucleus. In this study, we report a structural and bioinformatic analysis of the DBHS protein family to guide future studies into DBHS protein function. To explore the structural plasticity of the family, we describe the 2.4 Å crystal structure of Caenorhabditis elegans non‐POU domain‐containing octamer‐binding protein 1 (NONO‐1). The structure is dimeric, with a domain arrangement consistent with mammalian DBHS proteins. Comparison with the DBHS structures available from H. sapiens reveals that there is inherent domain flexibility within the homologous DBHS region. Mapping amino acid similarity within the family to the NONO‐1 dimer highlights the dimer interface, coiled‐coil oligomerization motif, and putative RNA binding surfaces. Surprisingly, the interior surface of RNA recognition motif 2 (RRM2) that faces a large internal void is highly variable, but the external β2–β3 loops of RRM2 show remarkable preservation. Overall, the DBHS region is under strong purifying selection, whereas the sequences N‐ and C‐terminal to the DBHS region are less constrained. The findings described in this study provide a molecular basis for further investigation into the mechanistic function of the DBHS protein family in biology.

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          Author and article information

          Journal
          Protein Sci
          Protein Sci
          10.1002/(ISSN)1469-896X
          PRO
          Protein Science : A Publication of the Protein Society
          John Wiley and Sons Inc. (Hoboken )
          0961-8368
          1469-896X
          29 October 2015
          December 2015
          : 24
          : 12 ( doiID: 10.1002/pro.v24.12 )
          : 2033-2043
          Affiliations
          [ 1 ] School of Chemistry and Biochemistry The University of Western Australia Crawley Western Australia 6009 Australia
          [ 2 ] Department of Biochemistry and Genetics La Trobe University Melbourne Victoria Australia
          [ 3 ] European Molecular Biology Laboratories Hamburg 22761 Germany
          [ 4 ] Harry Perkins Institute of Medical Research, QEII Medical Centre, Nedlands and Centre for Medical Research The University of Western Australia Crawley Western Australia 6009 Australia
          Author notes
          [*] [* ]Correspondence to: Charles S. Bond, School of Chemistry and Biochemistry, The University of Western Australia, 35 Stirling Highway, Crawley, Perth, Western Australia 6009, Australia. E‐mail: charles.bond@ 123456uwa.edu.au
          Article
          PMC4815227 PMC4815227 4815227 PRO2816
          10.1002/pro.2816
          4815227
          26435036
          9d06cf53-8bb6-4c68-b63c-0453540b322a
          © 2015 The Protein Society
          History
          : 27 August 2015
          : 24 September 2015
          Page count
          Pages: 11
          Funding
          Funded by: National Health and Medical Research Council of Australia
          Award ID: 513880, 1048659, 1050585
          Funded by: Cancer Council of Western Australia, University of Western Australia
          Categories
          Article
          Articles
          Custom metadata
          2.0
          pro2816
          December 2015
          Converter:WILEY_ML3GV2_TO_NLMPMC version:4.7.2 mode:remove_FC converted:22.12.2015

          protein structure,dimerization,RNA binding,amino acid similarity,selection pressure,DBHS protein family,NONO‐1

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