Inhibition of eukaryotic translation elongation by the antitumor natural product Mycalamide B
- Yongjun Dang1,5,
- Tilman Schneider-Poetsch1,5,6,
- Daniel E. Eyler2,
- John C. Jewett3,
- Shridhar Bhat1,
- Viresh H. Rawal3,
- Rachel Green2 and
- Jun O. Liu1,4,7
- 1Department of Pharmacology and Molecular Sciences, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA
- 2Department of Molecular Biology and Genetics, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA
- 3Department of Chemistry, The University of Chicago, Chicago, Illinois 60637, USA
- 4Department of Oncology, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA
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↵5 These two authors contributed equally to this work.
Abstract
Mycalamide B (MycB) is a marine sponge-derived natural product with potent antitumor activity. Although it has been shown to inhibit protein synthesis, the molecular mechanism of action by MycB remains incompletely understood. We verified the inhibition of translation elongation by in vitro HCV IRES dual luciferase assays, ribosome assembly, and in vivo [35S]methinione labeling experiments. Similar to cycloheximide (CHX), MycB inhibits translation elongation through blockade of eEF2-mediated translocation without affecting the eEF1A-mediated loading of tRNA onto the ribosome, AUG recognition, or dipeptide synthesis. Using chemical footprinting, we identified the MycB binding site proximal to the C3993 28S rRNA residue on the large ribosomal subunit. However, there are also subtle, but significant differences in the detailed mechanisms of action of MycB and CHX. First, MycB arrests the ribosome on the mRNA one codon ahead of CHX. Second, MycB specifically blocked tRNA binding to the E-site of the large ribosomal subunit. Moreover, they display different polysome profiles in vivo. Together, these observations shed new light on the mechanism of inhibition of translation elongation by MycB.
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Footnotes
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↵7 Corresponding author.
E-mail joliu{at}jhu.edu.
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Article published online ahead of print. Article and publication date are at http://www.rnajournal.org/cgi/doi/10.1261/rna.2624511.
- Received January 10, 2011.
- Accepted May 19, 2011.
- Copyright © 2011 RNA Society










