Interaction of Eukaryotic Translation Initiation Factor 4G with the Nuclear Cap-Binding Complex Provides a Link between Nuclear and Cytoplasmic Functions of the m 7 Guanosine Cap

Author:

McKendrick Linda1,Thompson Elizabeth2,Ferreira Joao3,Morley Simon J.1,Lewis Joe D.2

Affiliation:

1. Department of Biochemistry, School of Biological Sciences, University of Sussex, Falmer, Brighton BN1 9QG, 1 and

2. Wellcome Trust Centre for Cell Biology, University of Edinburgh, Edinburgh EH9 3JR, 2 United Kingdom, and

3. Institute of Histology, Faculty of Medicine, 1649-028 Lisbon, Portugal3

Abstract

ABSTRACT In eukaryotes the majority of mRNAs have an m 7 G cap that is added cotranscriptionally and that plays an important role in many aspects of mRNA metabolism. The nuclear cap-binding complex (CBC; consisting of CBP20 and CBP80) mediates the stimulatory functions of the cap in pre-mRNA splicing, 3′ end formation, and U snRNA export. As little is known about how nuclear CBC mediates the effects of the cap in higher eukaryotes, we have characterized proteins that interact with CBC in HeLa cell nuclear extracts as potential mediators of its function. Using cross-linking and coimmunoprecipitation, we show that eukaryotic translation initiation factor 4G (eIF4G), in addition to its function in the cytoplasm, is a nuclear CBC-interacting protein. We demonstrate that eIF4G interacts with CBC in vitro and that, in addition to its cytoplasmic localization, there is a significant nuclear pool of eIF4G in mammalian cells in vivo. Immunoprecipitation experiments suggest that, in contrast to the cytoplasmic pool, much of the nuclear eIF4G is not associated with eIF4E (translation cap binding protein of eIF4F) but is associated with CBC. While eIF4G stably associates with spliceosomes in vitro and shows close association with spliceosomal snRNPs and splicing factors in vivo, depletion studies show that it does not participate directly in the splicing reaction. Taken together the data indicate that nuclear eIF4G may be recruited to pre-mRNAs via its interaction with CBC and accompanies the mRNA to the cytoplasm, facilitating the switching of CBC for eIF4F. This may provide a mechanism to couple nuclear and cytoplasmic functions of the mRNA cap structure.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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