Nucleic Acids Research, Vol 26, Issue 24 5655-5661, Copyright © 1998 by Oxford University Press
T Ohmichi, Y Okumoto and N Sugimoto
Leadzyme is a ribozyme that requires Pb2+. The catalytic sequence,
CUGGGAGUCC, binds to an RNA substrate, GGACC downward arrowGAGCCAG,
cleaving the RNA substrate at one site. We have investigated the effect of
the substrate sequence on the cleavage activity of leadzyme using mutant
substrates in order to structurally understand the RNA catalysis. The
results showed that leadzyme acted as a catalyst for single site cleavage
of a C5 deletion mutant substrate, GGAC downward arrowGAGCCAG, as well as
the wild-type substrate. However, a mutant substrate GGACCGACCAG, which had
G8 deleted from the wild-type substrate, was not cleaved. Kinetic studies
by surface plasmon resonance indicated that the difference between active
and inactive structures reflected the slow association and dissociation
rate constants of complex formation induced by Pb2+rather than differences
in complex stability. CD spectra showed that the active form of the
substrate-leadzyme complex was rearranged by Pb2+binding. The G8 of the
wild-type substrate, which was absent in the inactive complex, is not near
the cleavage site. Thus, these results show that the active
substrate-leadzyme complex has a Pb2+binding site at the junction between
the unpaired region (asymmetric internal loop) and the stem region, which
is distal to the cleavage site. Pb2+may play a role in rearranging the
bases in the asymmetric internal loop to the correct position for
catalysis.
ARTICLES
Effect of substrate RNA sequence on the cleavage reaction by a short ribozyme
Department of Chemistry, Faculty of Science, Konan University, 8-9-1 Okamoto, Higashinada-ku, Kobe 658-8501, Japan.
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