Npl3 functions in mRNP assembly by recruitment of mRNP components to the transcription site and their transfer onto the mRNA

Author:

Keil Philipp1,Wulf Alexander2,Kachariya Nitin34,Reuscher Samira5,Hühn Kristin1,Silbern Ivan2,Altmüller Janine67,Keller Mario5,Stehle Ralf34,Zarnack Kathi58ORCID,Sattler Michael34ORCID,Urlaub Henning2ORCID,Sträßer Katja18ORCID

Affiliation:

1. Institute of Biochemistry, FB08, Justus Liebig University Giessen , Heinrich-Buff-Ring 17, 35392  Giessen, Germany

2. Max Planck Institute for Multidisciplinary Sciences , Am Fassberg 11, 37077 Goettingen, University Medical Center Goettingen, Institute of Clinical Chemistry, Robert-Koch-Strasse 40, 37075  Goettingen, Germany

3. Bavarian NMR Center (BNMRZ), Department of Bioscience, School of Natural Sciences, Technical University of Munich , Lichtenbergstrasse 4, 85748  Garching, Germany

4. Institute of Structural Biology , Helmholtz Center Munich, Ingolstaedter Landstrasse 1, 85764  Neuherberg, Germany

5. Buchmann Institute for Molecular Life Sciences (BMLS) & Institute of Molecular Biosciences, Goethe University Frankfurt , Max-von-Laue-Strasse 15, 60438 Frankfurt a.M., Germany

6. Cologne Center for Genomics (CCG), University of Cologne , Weyertal 115b, 50931 Cologne, Germany

7. Technology platform genomics, Berlin Institute of Health at Charité - Universitätsmedizin Berlin and Max Delbrück Center for Molecular Medicine in the Helmholtz Association , Berlin, Germany

8. Cardio-Pulmonary Institute (CPI) , EXC 2026, 35392 Giessen, Germany

Abstract

Abstract RNA-binding proteins (RBPs) control every RNA metabolic process by multiple protein–RNA and protein–protein interactions. Their roles have largely been analyzed by crude mutations, which abrogate multiple functions at once and likely impact the structural integrity of the large ribonucleoprotein particles (RNPs) these proteins function in. Using UV-induced RNA–protein crosslinking of entire cells, protein complex purification and mass spectrometric analysis, we identified >100 in vivo RNA crosslinks in 16 nuclear mRNP components in Saccharomyces cerevisiae. For functional analysis, we chose Npl3, which displayed crosslinks in its two RNA recognition motifs (RRMs) and in the connecting flexible linker region. Both RRM domains and the linker uniquely contribute to RNA recognition as revealed by NMR and structural analyses. Interestingly, mutations in these regions cause different phenotypes, indicating distinct functions of the different RNA-binding domains. Notably, an npl3-Linker mutation strongly impairs recruitment of several mRNP components to chromatin and incorporation of other mRNP components into nuclear mRNPs, establishing a so far unknown function of Npl3 in nuclear mRNP assembly. Taken together, our integrative analysis uncovers a specific function of the RNA-binding activity of the nuclear mRNP component Npl3. This approach can be readily applied to RBPs in any RNA metabolic process.

Funder

DFG

EU

Publisher

Oxford University Press (OUP)

Subject

Genetics

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