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本文引用的文献

1
The influence of antisense oligonucleotide-induced RNA structure on Escherichia coli RNase H1 activity.反义寡核苷酸诱导的RNA结构对大肠杆菌核糖核酸酶H1活性的影响。
J Biol Chem. 1997 Jul 18;272(29):18191-9. doi: 10.1074/jbc.272.29.18191.
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Selecting effective antisense reagents on combinatorial oligonucleotide arrays.在组合寡核苷酸阵列上选择有效的反义试剂。
Nat Biotechnol. 1997 Jun;15(6):537-41. doi: 10.1038/nbt0697-537.
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Probing accessible sites for ribozymes on human acetylcholinesterase RNA.探究人乙酰胆碱酯酶RNA上核酶的可及位点。
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4
Secondary structure model of the RNA recognized by the reverse transcriptase from the R2 retrotransposable element.来自R2反转录转座元件的逆转录酶所识别的RNA的二级结构模型。
RNA. 1997 Jan;3(1):1-16.
5
Influence of substrate structure on cleavage by hammerhead ribozyme.底物结构对锤头状核酶切割的影响。
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6
Optimizing the cell efficacy of synthetic ribozymes. Site selection and chemical modifications of ribozymes targeting the proto-oncogene c-myb.优化合成核酶的细胞效能。靶向原癌基因c-myb的核酶的位点选择与化学修饰
J Biol Chem. 1996 Nov 15;271(46):29107-12. doi: 10.1074/jbc.271.46.29107.
7
Specificity of hammerhead ribozyme cleavage.锤头状核酶切割的特异性
EMBO J. 1996 Jul 15;15(14):3751-7.
8
Selection of hammerhead ribozymes for optimum cleavage of interleukin 6 mRNA.选择锤头状核酶以实现白细胞介素6信使核糖核酸的最佳切割
Biochem J. 1996 Mar 1;314 ( Pt 2)(Pt 2):655-61. doi: 10.1042/bj3140655.
9
Cleavage of full-length beta APP mRNA by hammerhead ribozymes.锤头状核酶对全长β淀粉样前体蛋白(βAPP)信使核糖核酸(mRNA)的切割
Nucleic Acids Res. 1993 Aug 25;21(17):4119-25. doi: 10.1093/nar/21.17.4119.
10
High activity and stability of hammerhead ribozymes containing 2'-modified pyrimidine nucleosides and phosphorothioates.含有2'-修饰嘧啶核苷和硫代磷酸酯的锤头状核酶具有高活性和稳定性。
J Biol Chem. 1994 Jan 21;269(3):2131-8.

长靶标RNA的结构对核酶切割效率的影响。

The effect of structure in a long target RNA on ribozyme cleavage efficiency.

作者信息

Campbell T B, McDonald C K, Hagen M

机构信息

Department of Medicine, University of Colorado Health Sciences Center, Denver, CO 80262, USA.

出版信息

Nucleic Acids Res. 1997 Dec 15;25(24):4985-93. doi: 10.1093/nar/25.24.4985.

DOI:10.1093/nar/25.24.4985
PMID:9396806
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC147166/
Abstract

Inhibition of gene expression by catalytic RNA (ribozymes) requires that ribozymes efficiently cleave specific sites within large target RNAs. However, the cleavage of long target RNAs by ribozymes is much less efficient than cleavage of short oligonucleotide substrates because of higher order structure in the long target RNA. To further study the effects of long target RNA structure on ribozyme cleavage efficiency, we determined the accessibility of seven hammerhead ribozyme cleavage sites in a target RNA that contained human immunodeficiency virus type 1 (HIV-1) vif - vpr . The base pairing-availability of individual nucleotides at each cleavage site was then assessed by chemical modification mapping. The ability of hammerhead ribozymes to cleave the long target RNA was most strongly correlated with the availability of nucleotides near the cleavage site for base pairing with the ribozyme. Moreover, the accessibility of the seven hammerhead ribozyme cleavage sites in the long target RNA varied by up to 400-fold but was directly determined by the availability of cleavage sites for base pairing with the ribozyme. It is therefore unlikely that steric interference affected hammerhead ribozyme cleavage. Chemical modification mapping of cleavage site structure may therefore provide a means to identify efficient hammerhead ribozyme cleavage sites in long target RNAs.

摘要

催化性RNA(核酶)对基因表达的抑制作用要求核酶能够高效切割大型靶RNA内的特定位点。然而,由于长靶RNA中存在高级结构,核酶对长靶RNA的切割效率远低于对短寡核苷酸底物的切割效率。为了进一步研究长靶RNA结构对核酶切割效率的影响,我们测定了包含人类免疫缺陷病毒1型(HIV-1)vif - vpr的靶RNA中7个锤头状核酶切割位点的可及性。然后通过化学修饰图谱分析评估每个切割位点单个核苷酸的碱基配对可用性。锤头状核酶切割长靶RNA的能力与切割位点附近核苷酸与核酶碱基配对的可用性最为密切相关。此外,长靶RNA中7个锤头状核酶切割位点的可及性差异高达400倍,但直接取决于与核酶碱基配对的切割位点的可用性。因此,空间位阻干扰不太可能影响锤头状核酶的切割。因此,切割位点结构的化学修饰图谱分析可能为鉴定长靶RNA中高效的锤头状核酶切割位点提供一种方法。