Nucleic Acids Research, Vol 26, Issue 13 3242-3246, Copyright © 1998 by Oxford University Press
N Licis, J van Duin, Z Balklava and V Berzins
In coliphage MS2 RNA a long-distance interaction (LDI) between an internal
segment of the upstream coat gene and the start region of the replicase
gene prevents initiation of replicase synthesis in the absence of coat gene
translation. Elongating ribosomes break up the repressor LDI and thus
activate the hidden initiation site. Expression studies on partial MS2 cDNA
clones identified base pairing between 1427- 1433 and 1738-1744, the
so-called Min Jou (MJ) interaction, as the molecular basis for the
long-range coupling mechanism. Here, we examine the biological significance
of this interaction for the control of replicase gene translation. The LDI
was disrupted by mutations in the 3'-side and the evolutionary adaptation
was monitored upon phage passaging. Two categories of pseudorevertants
emerged. The first type had restored the MJ interaction but not necessarily
the native sequence. The pseudorevertants of the second type acquired a
compensatory substitution some 80 nt downstream of the MJ interaction that
stabilizes an adjacent LDI. In one examined case we confirmed that the
second site mutations had restored coat-replicase translational coupling.
Our results show the importance of translational control for fitness of the
phage. They also reveal that the structure that buries the replicase start
extends to structure elements bordering the MJ interaction.
ARTICLES
Long-range translational coupling in single-stranded RNA bacteriophages: an evolutionary analysis
Biomedical Research and Study Centre, University of Latvia, Ratsupites 1, LV1067 Riga, Latvia. licis@biomed.lu.lv
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