Diversification of Function by Different Isoforms of Conventionally Shared RNA Polymerase Subunits

Author:

Devaux Sara1,Kelly Steven2,Lecordier Laurence1,Wickstead Bill2,Perez-Morga David1,Pays Etienne1,Vanhamme Luc1,Gull Keith2

Affiliation:

1. *Institute for Molecular Biology and Medicine, Université Libre de Bruxelles, 6041 Gosselies, Belgium; and

2. Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, United Kingdom

Abstract

Eukaryotic nuclei contain three classes of multisubunit DNA-directed RNA polymerase. At the core of each complex is a set of 12 highly conserved subunits of which five—RPB5, RPB6, RPB8, RPB10, and RPB12—are thought to be common to all three polymerase classes. Here, we show that four distantly related eukaryotic lineages (the higher plant and three protistan) have independently expanded their repertoire of RPB5 and RPB6 subunits. Using the protozoan parasite Trypanosoma brucei as a model organism, we demonstrate that these distinct RPB5 and RPB6 subunits localize to discrete subnuclear compartments and form part of different polymerase complexes. We further show that RNA interference-mediated depletion of these discrete subunits abolishes class-specific transcription and hence demonstrates complex specialization and diversification of function by conventionally shared subunit groups.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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