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嵌合核酶基因的表达导致靶mRNA的内切核酸酶切割,并伴随体内基因表达的降低。

Expression of a chimeric ribozyme gene results in endonucleolytic cleavage of target mRNA and a concomitant reduction of gene expression in vivo.

作者信息

Steinecke P, Herget T, Schreier P H

机构信息

Max-Planck-Institut für Züchtungsforschung, Köln, FRG.

出版信息

EMBO J. 1992 Apr;11(4):1525-30. doi: 10.1002/j.1460-2075.1992.tb05197.x.

Abstract

The subclass of catalytic RNAs termed ribozymes cleave specific target RNA sequences in vitro. Only circumstantial evidence supports the idea that ribozymes may also act in vivo. In this study, ribozymes with a hammerhead motif directed against a target sequence within the mRNA of the neomycin phosphotransferase gene (npt) were embedded into a functional chimeric gene. Two genes, one containing the ribozyme and the other producing the target, were cotransfected into plant protoplasts. Following in vivo expression, a predefined cleavage product of the target mRNA was detected by ribonuclease protection. Expression of both the ribozyme gene and the target gene was driven by the CaMV 35S promoter. Concomitant with the endonucleolytic cleavage of the target mRNA, a complete reduction of NPT activity was observed. An A to G substitution within the ribozyme domain completely inactivates ribozyme-mediated hydrolysis but still shows a reduction in NPT activity, albeit less pronounced. Therefore, the reduction of NPT activity produced by the active ribozyme is best explained by both hydrolytic cleavage and an antisense effect. However, the mutant ribozyme--target complex was more stable than the wildtype ribozyme--target complex. This may result in an overestimation of the antisense effect contributing to the overall reduction of gene expression.

摘要

被称为核酶的催化RNA亚类在体外可切割特定的靶RNA序列。仅有间接证据支持核酶可能也在体内发挥作用这一观点。在本研究中,针对新霉素磷酸转移酶基因(npt)mRNA内靶序列的具有锤头基序的核酶被嵌入到一个功能性嵌合基因中。将两个基因,一个含有核酶,另一个产生靶标,共转染到植物原生质体中。在体内表达后,通过核糖核酸酶保护检测到靶mRNA的预定义切割产物。核酶基因和靶基因的表达均由花椰菜花叶病毒35S启动子驱动。伴随着靶mRNA的内切核酸酶切割,观察到NPT活性完全降低。核酶结构域内的A到G替换完全使核酶介导的水解失活,但仍显示NPT活性降低,尽管不太明显。因此,活性核酶产生的NPT活性降低最好通过水解切割和反义效应来解释。然而,突变型核酶 - 靶标复合物比野生型核酶 - 靶标复合物更稳定。这可能导致对反义效应的高估,而反义效应有助于基因表达的总体降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5739/556601/e0a36e2d047f/emboj00089-0297-a.jpg

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