The establishment and transcripting of TIMP-1 ribozyme plasmids of human scar tissue in vitro
Zi-Hao Lin
Abstract
Zi-Hao Lin
Abstract
Objective To design the ribozymes which may cleave the mRNA of human TIMP-1. Establishing plasmids transcripting the ribozymes to produce abundant ribozymes. Methods The TIMP-1 mRNA was taken as the target RNA. Ribozymes were designed according to the hammerhead structure described by Symons. To establish clones of TIMP-1 ribozymes use P 1.5. Then obtain abundant ribozymes by transcripting. Results Three ribozymes targeting the nt 123, nt 299 and nt 353 on TIMP-1 mRNA were designed. The ribozyme gene has been synthesized, plasmids cloned and abundant ribozymes obtained. Conclusion Computer assisted design is indispensable in studying ribozyme. The establishment of plasmids transcripting ribozymes is the key step of studying their activity.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Objective To design the ribozymes which may cleave the mRNA of human TIMP-1. Establishing plasmids transcripting the ribozymes to produce abundant ribozymes. Methods The TIMP-1 mRNA was taken as the target RNA. Ribozymes were designed according to the hammerhead structure described by Symons. To establish clones of TIMP-1 ribozymes use P 1.5. Then obtain abundant ribozymes by transcripting. Results Three ribozymes targeting the nt 123, nt 299 and nt 353 on TIMP-1 mRNA were designed. The ribozyme gene has been synthesized, plasmids cloned and abundant ribozymes obtained. Conclusion Computer assisted design is indispensable in studying ribozyme. The establishment of plasmids transcripting ribozymes is the key step of studying their activity.
Key concepts: Ribozyme, Ligase ribozyme, Plasmid, Hammerhead ribozyme, Cleave, Mammalian CPEB3 ribozyme, RNA, Computational biology