Sioud M
Institute of Immunology and Rheumatology, The National Hospital, Fr. Qvamsgt. 1, N-0172 Oslo, Norway.
Nucleic Acids Res. 1997 Jan 15;25(2):333-8. doi: 10.1093/nar/25.2.333.
The efficacy of intracellular binding of hammerhead ribozyme to its cleavage site in target RNA is a major requirement for its use as a therapeutic agent. Such efficacy can be influenced by several factors, such as the length of the ribozyme antisense arms and mRNA secondary structures. Analysis of various IL-2 hammerhead ribozymes having different antisense arms but directed to the same site predicts that the hammerhead ribozyme target site is present within a double-stranded region that is flanked by single-stranded loops. Extension of the low cleaving hammerhead ribozyme antisense arms by nucleotides that base pair with the single-stranded regions facilitated the hammerhead ribozyme binding to longer RNA substrates (e.g. mRNA). In addition, a correlation between the in vitro and intracellular results was also found. Thus, the present study would facilitate the design of hammerhead ribozymes directed against higher order structured sites. Further, it emphasises the importance of detailed structural investigations of hammerhead ribozyme full-length target RNAs.
锤头状核酶与靶RNA切割位点的细胞内结合效力是其作为治疗剂使用的主要要求。这种效力会受到多种因素的影响,例如核酶反义臂的长度和mRNA二级结构。对具有不同反义臂但靶向同一位点的各种IL-2锤头状核酶的分析预测,锤头状核酶靶位点存在于由单链环侧翼的双链区域内。通过与单链区域碱基配对的核苷酸延伸低切割锤头状核酶反义臂,促进了锤头状核酶与更长RNA底物(如mRNA)的结合。此外,还发现了体外和细胞内结果之间的相关性。因此,本研究将有助于设计针对高阶结构位点的锤头状核酶。此外,它强调了对锤头状核酶全长靶RNA进行详细结构研究的重要性。