Long D M, Uhlenbeck O C
Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215.
Proc Natl Acad Sci U S A. 1994 Jul 19;91(15):6977-81. doi: 10.1073/pnas.91.15.6977.
A method is described to obtain intramolecular cleavage rates for the hammerhead ribozyme during in vitro transcription. By avoiding RNA purification and renaturation, the potential for formation of inactive conformations of the RNA is minimized. By showing that an intramolecular hammerhead and a closely related intermolecular hammerhead cleave at the same rate under a given set of conditions, we confirm that both reactions probably have the same rate-limiting step. An in vitro selection strategy was used to isolate active hammerheads from a library of molecules where six randomized nucleotides replaced stem-loop II. The sequence and number of nucleotides which replace stem-loop II have large effects on hammerhead cleavage activity. The relative activities of three sequences selected from the intramolecular library are the same when the sequences are transferred into an intermolecular hammerhead background.
本文描述了一种在体外转录过程中获取锤头状核酶分子内切割速率的方法。通过避免RNA纯化和复性,RNA形成无活性构象的可能性被降至最低。通过证明在给定条件下分子内锤头状核酶和密切相关的分子间锤头状核酶以相同速率切割,我们证实这两种反应可能具有相同的限速步骤。采用体外筛选策略从一个分子文库中分离活性锤头状核酶,该文库中六个随机核苷酸取代了茎环II。取代茎环II的核苷酸序列和数量对锤头状核酶的切割活性有很大影响。当将从分子内文库中选出的三个序列转移到分子间锤头状核酶背景中时,它们的相对活性相同。