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不完全配对的螺旋I和III对锤头状核酶催化活性的影响。

The influence of imperfectly paired helices I and III on the catalytic activity of hammerhead ribozymes.

作者信息

Zoumadakis M, Neubert W J, Tabler M

机构信息

Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology Hellas, Heraklion, Crete, Greece.

出版信息

Nucleic Acids Res. 1994 Dec 11;22(24):5271-8. doi: 10.1093/nar/22.24.5271.

Abstract

Several catalytic antisense RNAs directed against different regions of the genomic or antigenomic RNA of Sendai virus were constructed. All RNAs contained the same catalytic domain based on hammerhead ribozymes but some had deletions or mutations resulting in imperfect helices I and III. Pre-annealed substrate/ribozyme complexes were used to determine the rates of the cleavage process for the different ribozymes under single-turnover conditions. It was found that the sequence context surrounding the cleavable motif influenced the cleavage efficiencies. Deletions or mutations of nucleotides 2.1 or 15.1 and 15.2 according to the numbering system for hammerhead ribozymes of Hertel et al. destroyed catalytic activity. Deletions of nucleotide 2.2 or additional nucleotides in the helix I-forming region of the ribozyme did not destruct, but only reduced the cleavage efficiencies. Similar results were observed for a deletion of nucleotide 15.3. Simultaneous deletions within helices I and III resulted in alternative cleavage sites. The potential consequences for the specificity of the ribozyme reaction are discussed.

摘要

构建了几种针对仙台病毒基因组或反基因组RNA不同区域的催化性反义RNA。所有RNA都含有基于锤头状核酶的相同催化结构域,但有些存在缺失或突变,导致螺旋I和III不完美。预退火的底物/核酶复合物用于确定不同核酶在单轮反应条件下的切割过程速率。发现可切割基序周围的序列环境影响切割效率。根据Hertel等人的锤头状核酶编号系统,核苷酸2.1或15.1和15.2的缺失或突变破坏了催化活性。核酶螺旋I形成区域中核苷酸2.2或其他核苷酸的缺失并未破坏,但仅降低了切割效率。核苷酸15.3的缺失也观察到类似结果。螺旋I和III内的同时缺失导致了替代切割位点。讨论了核酶反应特异性的潜在后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d94e/332071/76b4abe53981/nar00048-0136-a.jpg

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