A three-nucleotide helix I is sufficient for full activity of a hammerhead ribozyme: advantages of an asymmetric design
- 1 January 1994
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 22 (19) , 3958-3965
- https://doi.org/10.1093/nar/22.19.3958
Abstract
Trans-cleaving hammerhead ribozymes with long target-specific antisense sequences flanking the catalytic domain share some features with conventional antisense RNA and are therefore termed 'catalytic antisense RNAs'. Sequences 5' to the catalytic domain form helix I and sequences 3' to it form helix III when complexed with the target RNA. A catalytic antisense RNA of more than 400 nucleotides, and specific for the human immunodeficiency virus type 1 (HIV-1), was systematically truncated within the arm that constituted originally a helix I of 128 base pairs. The resulting ribozymes formed helices I of 13, 8, 5, 3, 2, 1 and 0 nucleotides, respectively, and a helix III of about 280 nucleotides. When their in vitro cleavage activity was compared with the original catalytic antisense RNA, it was found that a helix I of as little as three nucleotides was sufficient for full endonucleolytic activity. The catalytically active constructs inhibited HIV-1 replication about four-fold more effectively than the inactive ones when tested in human cells. A conventional hammerhead ribozyme having helices of just 8 nucleotides on either side failed to cleave the target RNA in vitro when tested under the conditions for catalytic antisense RNA. Cleavage activity could only be detected after heat-treatment of the ribozyme substrate mixture which indicates that hammerhead ribozymes with short arms do not associate as efficiently to the target RNA as catalytic antisense RNA. The requirement of just a three-nucleotide helix I allows simple PCR-based generation strategies for asymmetric hammerhead ribozymes. Advantages of an asymmetric design will be discussed.Keywords
This publication has 32 references indexed in Scilit:
- A Kinetic and Thermodynamic Framework for the Hammerhead Ribozyme ReactionBiochemistry, 1994
- Complementary Large Loops Determine the Rate of RNA Duplex Formation in Vitro in the Case of an Effective Antisense RNA Directed Against the Human Immunodeficiency Virus Type 1Journal of Molecular Biology, 1993
- Attenuation of white gene expression in transgenic Drosophila melanogaster: Possible role of a catalytic antisense RNADevelopmental Genetics, 1993
- Catalytic antisense RNAs produced by incorporating ribozyme cassettes into cDNAGene, 1991
- Effects of phosphorothioate and 2-amino groups in hammerhead ribozymes on cleavage rates and magnesium bindingBiochemistry, 1991
- Specific inhibition of human immunodeficiency virus type 1 replication by RNA transcribed in sense and antisense orientation from the 5′-leader/gag regionBiochemical and Biophysical Research Communications, 1990
- Simple RNA enzymes with new and highly specific endoribonuclease activitiesNature, 1988
- Self-cleavage of virusoid RNA is performed by the proposed 55-nucleotide active siteCell, 1987
- Self-cleavage of plus and minus RNAs of a virusoid and a structural model for the active sitesCell, 1987
- Complete nucleotide sequence of the AIDS virus, HTLV-IIINature, 1985