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KMID : 0578319960060020209
Molecules and Cells
1996 Volume.6 No. 2 p.209 ~ p.214
Site-specific Cleavage of RNA Encoding Garlic Latent Virus Coat Protein by a Hairpin Type Ribozyme
Shin, Chanseok
Choi, Jin Nam/Song, Sang Ik/Song, Jong Tae/Ahn, Ji Hoon/Lee, Jong Seob/Choi, Yang Do
Abstract
To test the possibility of producing virus resistant garlic plants, we have designed a hairpin type ribozyme to cleave at the middle of the RNA encoding the coat protein of garlic latent virus (GLV). It is known that the hairpin ribozyme derived from the negative strand of satellite RNA of tobacco ringspot virus [(-)sTRSVl cleaves RNA at 5¢¥-phosphodiester bond of the non-base paired -N^(¡é) GUC- bulge flanked by the basepaired region next to the hairpin domain. The -N^(¡é)GUC- containing target site was selected from the region which was predicted open by the secondary structure analysis. The ribozyme cleaved two different sizes of RNA substrates, V9S (148 nucleotides) and V9 RNA (1,361 nucleotides) in vitro at the predicted site. The cleavage reaction was optimal in 4 mM MgCl©ü, 2 mM spermidine and 40 mM Tris-HCl (pH 8.0), at 50¡É. Magnesium and calcium ions enhanced RNA cleavage whereas limited cleavage was observed with other divalent cationas such as Mn^(2+), Zn^(2+) and Ni^(2+). The k_(cat)/K_(M) value with V9S was 0.22 ¥ìM^(-1) min^(-1), which is lower than that of the Hampel and Tritz (1989) system of 70 ¥ìM^(-1) min^(-1) , probably due to the size difference of the substrate.
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